USU Lecturers Receive Patent for Self-Care Invention

Two lecturers of Universitas Sumatera Utara, Reni Asmara Ariga, S.Kp., MARS, from the Faculty of Nursing and Dr. Edy Ikhsan, S.H., M.A., from the Faculty of Law, collaborated as inventors of Patent IDS000005334 WEB-BASED SELF-CARE METHOD. The Ministry of Law and Human Rights granted the patent on 12 December 2022 for the invention of the website ariganursingselfcare.com.

This patent holder is Universitas Sumatera Utara, as a manifestation of the inventors’ dedication to the advancement of USU in education and service for the community. The website seeks to address various health-care-related issues in North Sumatra, such as those caused by the increasing population, the long distance between patients and health service centers, the cost and time that patients have to spend to get services, the lack of professional nurses, and the increasing number of degenerative diseases. Its accessibility to the public benefits the downstream of care innovation products. The invention relates to a self-care method that provides nursing care information and consultation services based on a website implemented through a smartphone or a computer.

The ariganursingselfcare.com website invention is intended to improve individual and the public’s ability to access information on and perform self-care, especially in health promotion methods. Self-care is conducted by consulting the website’s information database for health, quality of life, and recovery improvement. Continuously maintained and updated, the website contains the latest nursing care information such as injury care, maternity care, diabetes care, respiratory care, general examination (hypertension, hypotension, hyperuricemia, hypouricemia, hypercholesterolemia, hypocholesterolemia), nutritional care for toddlers, dental care, COVID-19 care, and common diseases usually found in community health centers (PUSKESMAS), providing a comprehensive nursing care consultation services starting from the assessment to the evaluation stage.

In the era of revolution 5.0, humans will live alongside technology in all aspects of life through digital devices, including nursing. The inventors hope the website can offer the public access to health services, expanding the outreach of hospitals and nurses in providing nursing care services.

Virtual reality laboratory opens with support of Porsche at Satbayev University

On September 22, Satbayev University hosted the grand opening of a VR laboratory that allows students to visually study high technologies owing to virtual reality systems. The project was implemented within the framework of cooperation between Satbayev University and the official importer of Porsche in Kazakhstan. German manufacturer representatives noted that the support of education and culture is a long tradition of Porsche.

Equipped with the support of auto brand specialists, the virtual reality laboratory was named Porsche Learning Centre. Students of the “Transport Engineering” degree program are already studying the practical aspects of modern mechanical engineering technologies here. Now, wearing virtual reality glasses, students can use the example of Porsche cars to study the entire process of creating the car – from design and testing to the assembly of serial samples. Training takes place directly in the classroom due to the same VR laboratory: wearing virtual reality glasses, university students can hone their skills in car maintenance and repair. Virtual reality technologies allow each student to fully immerse themselves in the learning process, and in the most realistic conditions, directly interacting with 3D objects: for instance, to look inside the assembled engine or gearbox, to examine all the details up close from all sides, to understand the device and principles of operation of all the main components of the car.

At the opening ceremony of the laboratory, the University’s Rector, Meiram Begentayev, noted that within the framework of cooperation with the automaker, the University receives valuable opportunities both for effective technical practice and for real “immersion” of students in the high technologies world.

— Last year, together with Satbayev University’s teachers, we developed and introduced into the educational process a digital laboratory for the repair and maintenance of electric vehicles and cars with internal combustion engines. In turn, the official importer of Porsche in Kazakhstan supported the idea and provided the University with a platform and its specialists for shooting the training videos used in the VR laboratory. To date, more than 110 students have already been trained in these modern technologies at Satbayev University. In addition, using virtual reality technologies, we held an Olympiad among college and university students. About 80 students are scheduled to study using the digital VR laboratory for the current academic year, — Meiram Begentayev said.

University talked about the advantages of mastering technical knowledge using virtual reality. According to the teachers, within the framework of cooperation with Porsche, the University got the opportunity to hold regular joint seminars and scientific and practical conferences with the German enterprise. Such a format significantly increases the value of students’ research work and also forms a stable interest among young people in the application of theoretical knowledge in practice.

In turn, the company director – the official importer of Porsche in Kazakhstan Gauhar Gabdrakhimova noted that the importer will continue to provide all the opportunities for filming the training videos in the car center’s workshops. According to her, new 3D videos are needed to ensure that the base of training material in the University’s VR laboratory is always relevant and that students’ knowledge corresponds to the most advanced trends in the global automotive industry. Thanks to the constant updating of information, Kazakhstani students can now study not on archival materials, but on the latest and modern technological achievements of the global automotive industry, being aware of the most relevant innovative solutions.

– The company is pleased to contribute to improving the training of Kazakhstani students in technical specialties. This is a long-standing principle of Porsche – to support innovation, to develop the desire for modern knowledge in society, and to stimulate scientific and research activities. Porsche Kazakhstan always supports talented young people and encourages the introduction of innovative technologies in education. The company does this to improve the quality and practical value of the knowledge received by young people. Internship at the enterprise is also very important, and assist in the further employment of specialists who show the best results. We are happy to help such a prestigious Kazakh University with a remarkable history and deep academic traditions as Satbayev University to improve the training base of specialists. We are focused on long-term cooperation for the sake of the technological development of Kazakhstan, — said Gauhar Gabdrakhimova, director of the official importer of Porsche in Kazakhstan.

It is noteworthy that as a sign of long-term cooperation, the Company placed a life-size model of the Porsche Taycan electric sports car on the main facade of the university. According to Gauhar Gabdrakhimova, this has become one of the symbols of the University’s cooperation with the famous world automobile brand, as well as an additional inspiration for university students. “Life is a road, and the road should lead us to our innermost dreams. No wonder Porsche’s slogan sounds like “Driven by Dreams”. There is a deeply symbolic and philosophical connection here: for many young people, the university is actually the beginning of their life path, which symbolizes the road to the future. Every journey begins with a dream, and everything must be done to make it come true,” said the head of Porsche in Kazakhstan.

UMY Alumni Opens Coffee Shop after Obtaining Funding from BSI

An economic growth that prioritizes the sharia system is a concern that Universitas Muhammadiyah Yogyakarta (UMY) and Bank Syariah Indonesia (BSI) are trying to realize. UMY has been providing funding assistance for entrepreneurial development to students by collaborating with BSI through the BSI Maslahat Sociopreneur program, This is where Ahmad Syaoqi Fuadi, who is an alumni of the Management Study Program, Faculty of Economics and Business (FEB) UMY, succeeded in getting funding for the coffee shop business he owns, Calma Brewhouse.

At the opening of Calma Brewhouse on Thursday (21/9), Budi Abdiriva as Area Manager of BSI Yogyakarta said that BSI is very open to continuing to collaborate with students who have businesses and are interested in developing their businesses. According to him, the funding given to Syaoqi is a real form of collaboration between BSI and UMY to drive the sharia economy.

BSI Maslahat Sociopreneur is a business incubation program for students who have the desire to become socially oriented Muslim entrepreneurs. It is not only aimed at developing financial entrepreneurial competence, but also the attitude, mentality and character of entrepreneurs that can be fostered through this program.

This is in accordance with what was conveyed by the LIKES & Education Group Manager of BSI Maslahat, Aprilia Eviyanti. “A business owner is a leader. In contrast to applying for a job and immediately getting a salary, in business we must be able to restrain our own ego and interests. That kind of entrepreneurial spirit is what we are trying to develop, not just guidance in business material,” she said.

In relation to this, Syaoqi explained the process he had gone through to obtain funding from BSI. According to him, the stages that must be passed are not easy, especially when it comes to increasing sales turnover. “One of the criteria used for assessment is the average turnover at a predetermined nominal value. Back then, I was still selling my coffee online, so my ability to increase turnover was limited,” he said when contacted on Saturday (23/9).

He also gave a few tips for becoming a good entrepreneur based on the experience he has gone through, namely being consistent and loving his own product.

When contacted, Head of the UMY Startup & Business Incubator (SEBI) Division Dr. Siti Nur Aisyah, SP added that another important factor behind success in developing a business is the person behind the business. He said that Syaoqi is someone who continues to learn and has wide connections thanks to his social skills. However, thanks to his hard work and enthusiasm to continue learning, he was able to realize his dreams and was able to expand his coffee shop.

More than half of COVID-19 patients have post-disease syndrome: HKBU study

The School of Chinese Medicine at Hong Kong Baptist University (HKBU) found that 55% of the patients who sought medical treatment from the “HKBU Chinese Medicine Telemedicine Centre Against COVID-19” during the fifth wave of the COVID-19 pandemic continued to experience at least one long COVID symptom for six months to a year after diagnosed with an infection. The most common symptoms are fatigue, brain fog and cough.

The study also revealed that patients who took Chinese medicine after COVID-19 infection took a shorter time to test negative in rapid tests, and experienced significant symptom relief compared to patients who did not take Chinese medicine.

The research findings have been published in a number of papers in international academic journals including the Journal of Medical Virology and The American Journal of Chinese Medicine.

HKBU established the “HKBU Chinese Medicine Telemedicine Centre Against COVID-19” in 2021 during the fifth wave of the COVID-19 pandemic in Hong Kong to provide free telemedical services for COVID-19 patients. Making reference to the treatment protocols and clinical experiences in Mainland China, the expert team of HKBU’s School of Chinese Medicine formulated the “Chinese Medicine Clinical Guidelines for COVID-19 in Hong Kong” as the University’s clinical diagnosis and treatment standards for COVID-19. The Telemedicine Centre follows the guidelines to provide diagnosis, treatment, and prevention services to COVID-19 patients, close contacts, and caregivers.

Coughing is the most common early symptom of infection

The HKBU research team led by Professor Bian Zhaoxiang, Director of the Clinical Division at the School of Chinese Medicine, conducted a retrospective study using patient statistics collected by the Telemedicine Centre during the fifth wave of the pandemic. The team analysed the symptoms in the first four weeks of about 13,000 patients who were infected with COVID-19 from mid-March to early May in 2022 and underwent home isolation.

The results showed that 93% of patients experienced at least one symptom. The most common symptoms during the first week of infection were cough (91%), sputum (75%), dry throat (50%) and sore throat (44%). 17% of patients still had these symptoms four weeks after infection. Although the symptoms gradually subsided over time, the prevalence of fatigue increased.

Chinese medicine accelerates viral clearance

Among this batch of patients, the research team selected 311 patients who had taken Chinese medicine for five days within 10 days after diagnosis, and another 311 patients who had not taken any Chine medicine during the same period to evaluate the efficacy of Chinese medicine.

The results showed that patients who took Chinese medicine within 10 days after COVID-19 infection needed an average of seven days to test negative in rapid tests, and experienced an average of four symptoms, which were significantly milder compared to patients who didn’t take Chinese medicine. The average time to test negative for patients who did not take Chinese medicine was eight days, and they experienced an average of 11 symptoms. The results show that Chinese medicine is an effective treatment for COVID-19 infection.

Over half of the patients experience long COVID after six months

The research team conducted a follow-up telephone survey from November 2022 to January 2023 with 6,242 COVID-19 patients who sought medical consultation at the Telemedicine Centre between December 2021 and May 2022 to understand their symptoms and risk factors after six months to a year of infection.

The study found that 55% of patients still experienced at least one long-term symptom, i.e. “long COVID” or “post-COVID syndrome”. The most common symptoms were fatigue (36%), brain fog (34%) and cough (31%). Furthermore, females, middle-aged persons, obese people, those with comorbidities such as ophthalmology or otorhinolaryngology diseases, digestive system diseases, respiratory diseases, hyperlipidemia and cardiovascular diseases, and patients with more initial symptoms were more likely to develop long COVID. However, there was no significant correlation between taking three or more doses of vaccine and the occurrence of long COVID.

Professor Bian said: “HKBU established the Telemedicine Centre during the COVID-19 outbreak to provide free treatments for COVID-19 patients. We analysed the Centre’s data to deepen the medical community’s understanding of the symptoms during the early and middle stages of COVID-19 infection as well as the post-COVID syndrome. It allows the public to understand the effectiveness of Chinese medicine in treating COVID-19. The study also shows that the tele-services of Chinese medicine can be an important component of Hong Kong’s healthcare and disease prevention system.”

Kazakh entrepreneurs, scientists agree to implement joint projects

RK Science and Higher Education Ministry represented by Science Foundation, together with Satbayev University and Autonomous Cluster Fund “Park of Innovative Technologies” – Tech Garden, organized a dialogue platform on integrating the science and business “Reactor of Technology Commercialization.”

Within the framework of the platform, Kazakh scientists presented 10 projects in subsoil use field. Each participant’s task was to convey the commercial value of their scientific development to potential business partners and investors in 3 minutes.

Among the submitted projects – technology of enhanced oil recovery for hard-to-recover reserves, installations for processing hydrocarbon-containing waste, a system for forecasting deposits and sediments, the introduction of devices for cleaning the geo-technological and oil wells, monitoring of the flooding front of oil and gas fields “NOAH”, bio-meliorant based on industrial waste, a highly efficient mill for fine and ultrafine grinding of ore materials, cry-adsorbent for metal extraction, technology for treating the wastewater contaminated by subsurface use, method of complex processing of large data arrays of areal and borehole geophysics “Pollok”.

The event was attended by representatives of Association of Organizations of oil-gas and energy complex “Kazenergy”, “Kazmunaygas”, Republican Association of Mining and Metallurgical Enterprises, Association of producers and consumers of petrochemical products, experts, scientists, inventors and business representatives.

In his welcoming speech, Chairman of Board of Science Foundation Abdilda Shamenov noted the practical effect of holding such meetings – “according to the results of the commercialization Reactors conducted earlier, 31 out of 63 scientific projects have found their potential business partners for joint implementation.”

Satbayev University’s Rector Meiram Begentayev noted in his speech: “Currently the whole world is promoting sustainable development goals and in this regard Satbayev University is no exception. The commercialization reactor, which is carried out within the walls of University, is also an indicator of SDG achievement, the unification of business and science, the topic of environmentally friendly subsoil use is one of the active goals of sustainable development and ESG.”

By the way, Satbayev University, today, is implementing 24 projects through Science Foundation. Among them are the serial production of charging stations for electric vehicles with the improved characteristics, intelligent unmanned lethal systems, the production of modules for solar electric panels, as well as other projects in the agro-industrial and mining sectors, construction and pharmaceuticals.

In turn, Autonomous Cluster Fund “Park of Innovative Technologies” – Tech Garden has the potential for active development and implementation of innovations in digital technologies and industrial solutions sphere. “Technology Commercialization Reactor” was another step in achieving the given goal.

Following the results of the event, an agreement was reached on joint activities between business enterprises and scientific organizations.

Cultivating Euglena in Tomato Juice

Euglena (Euglena gracilis) is a microalga containing chloroplasts and producing organic matter through photosynthesis in a well-lit environment, while taking in organic matter from outside in an unlit environment. It is known to be rich in nutrients like vitamins, minerals, amino acids, and essential fatty acids, such as DHA and EPA. Owing to the lack of cell walls, Euglena has a high digestion and absorption rate, making it attractive as a new source of nutritious and health enhancing food.

Moreover, Euglena protein is rich in methionine, a characteristic of animal protein, and its nutritional value is comparable to casein found in milk. Therefore, it is expected to be one of the solutions to the shortage of animal protein due to the effects of climate change and population growth, as well as one of the production technologies for space exploration, which is flourishing these days. In addition, Euglena also contains a high percentage of a special type of beta-1,3-glucan called paramylon, known for its immunomodulatory and hepatoprotective effects. Paramylon may also be effective in reducing atopic dermatitis, influenza, and arthritis symptoms, as well as in preventing colon cancer. However, the existing methods for food-grade manufacturing of Euglena are quite complicated.

Currently, Euglena can be propagated using both autotrophic as well as heterotrophic culture mediums. Conventionally, the Koren–Hutner (KH) medium, a higher yielding heterotrophic medium, is used for its culture. But it requires measuring and mixing 26 different chemicals. Moreover, after the microalgae has reproduced to high densities in large pools, it must be extracted, washed, concentrated, and dried to foods or nutritional supplements. The energy required for these processes accounts for about 30% of the total production cost, and other costs such as cultivation land and transportation costs are also incurred in the production of Euglena as a food ingredient.

Aimed at improving the efficiency of existing production processes, a team of researchers from Japan conducted experiments to find a promising method to grow Euglena in large quantities. As explained in their latest paper, the team examined several beverages to find a suitable growing medium for Euglena. This paper was made available online on August 14, 2023 and was published in Issue 5 of the journal Sustainable Food Technology on September 1st, 2023. The study was led by Assistant Professor Kyohei Yamashita from Tokyo University of Science (TUS) and co-authored by Dr. Kengo Suzuki and Dr. Koji Yamada from Euglena Co., Ltd. and Professor Eiji Tokunaga from TUS.

Interestingly, this study is a part of follow-up research for which a patent was filed by Dr. Yamashita during his doctoral course in 2017. Dr. Yamashita explains, “We had previously confirmed that E. gracilis can grow even when foods such as seaweed, dried sardines, and boiled rice are used as a source of essential vitamins.”

The researchers first cultured Euglena with initial cell density of 4.2 x 103 cells/mL statically under aerobic conditions for about 10 days. For this, they used either Cramers–Myers (CM) medium, an independent nutrient medium, or KH medium, a heterotrophic medium. The cell density increased to 106 cells/mL and 107 cells/mL, respectively. Next, they incubated Euglena with initial cell density of 1.6 x 104 cells/mL in 13 different beverages, including diluted grape juice (with juice-to-water ratio of 3:7 or 7:3), pineapple juice, apple juice, sweet wine, diluted carrot juice (with juice-to-water ratio of 3:7 or 7:3), tomato juice, orange juice, grapefruit juice, prune juice, coconut water, and maple water, and culture medium supplemented with essential vitamins B1 and B12 under aerobic conditions. The cells were cultured under ‘light’ (26 °C, white light irradiation) or ‘dark’ (23 °C, no light irradiation) conditions.

Interestingly, the researchers found that the cell density of Euglena cells reached a maximum when cultured in tomato juice, especially under light conditions, and increased to 107 cells/mL, the same level as in KH medium. This also resulted in a change in the appearance of the culture medium from red to green after incubation (as shown in Image 1). The bright green chloroplasts in Euglena cultured in tomato juice were observed to be tightly packed inside the cells. On the other hand, in the non-tomato juice, the number of chloroplasts was low, and the green color was lighter. These findings suggest that tomato juice is more suitable for the growth of Euglena than other beverages.

Furthermore, on culturing Euglena under aerobic conditions using tomato juice diluted with water (in a ratio of 3:7, 4:6, or 5:5) and without essential vitamins, it grew to approximately 100 times of its initial cell density to 106 cells/mL under all dilution conditions. This revealed that the nutrient composition of tomato juice itself is suitable for Euglena growth.

“During static incubation, tomato juice diluted with water separated into a solid sediment layer and an upper aqueous solution layer in the container, and Euglena proliferated actively near the boundary of these layers. Therefore, when cultured under aerobic conditions using ‘tomato (filtered) medium,’ in which solid components were removed from tomato juice, Euglena were distributed throughout the entire culture medium,” points out Dr. Yamashita. Notably, the cell density was greater than that in the unfiltered tomato juice medium. This indicates that the removal of solid components may mitigate the effects of density, including growth space, light and nutrient acquisition, and waste accumulation.

Finally, the team cultured Euglena in CM medium with glutamic acid, a nutrient characteristic of tomato juice. The cell density reached two to three times that of the CM medium, but only about half that of the tomato juice medium. These findings suggest that components other than glutamic acid contained in tomato juice also contribute to the good growth of Euglena.

“Euglena is rich in nutrients and functional ingredients, so it is possible to easily fortify foods by converting some of the nutrients in the food into Euglena. Being simple and economically feasible, we expect this method to be useful for carbon-neutral and sustainable food production. It could also contribute to the achievement of sustainable development goals related to food and hunger and has the potential to contribute as a food production technology in space exploration,” concludes Dr. Yamashita, expressing his hopes for the future development of this research.

Thailand’s Silver Workforce: Tapping into Untapped Potential

In recent years, the labor market in Thailand has experienced a major “demographic disruption” that has affected the employment dynamics among the senior population (we will focus on individuals aged 55 and above in this article as this reflects the typical “early retirement age” in the country). Data from the National Statistical Office (NSO) spanning from 2011 to 2021 reveals a significant increase in the senior population, a rise from 12 million to 18 million people.1 This shift is not only significant in numerical terms but also has far-reaching implications for various aspects of the country’s social and economic structure.

1. However, it is important to note that the data from the National Statistical Office (NSO) that we used does not cover informal workers and sectors and this omission highlights the complexity of the situation, as many seniors might engage in informal work that is not reflected in these statistics. Moreover, it’s worth noting that the NSO data is collected during the fourth quarter of each year, mirroring the data collection practice of the Department of Employment. As such, the analysis may not comprehensively capture seasonal fluctuations or shifts that transpire over the course of the year, which could conceivably impact the employment statistics concerning senior citizens.

Despite these limitations, the employment rate within the senior age group has not shown a corresponding upward trend. According to the data from the National Statistical Office, from 2011 to 2021, the number of senior employment (individuals aged 55 and above that have a job) had increased by only 600,000 while the number of senior populations in this age range had increased by 6 million people. In other words, only 10 percent of the senior population had participated in the labor market. This disparity between the growth of the senior population and the employment of senior individuals indicates a substantial “untapped” potential within this demographic group that demands attention from policymakers, businesses, and society as a whole.

Furthermore, our analysis also reveals that the impact of demographic disruption on the labor market was unevenly distributed across various occupations. Some occupations such as sales workers and agricultural workers experienced a significant drop in the employment of senior individuals (decrease by 20 percent and 30 percent respectively). Potentially these are occupations in which senior individuals have lost their attractiveness (or being perceived to have lost their attractiveness) as productive workers when competing against younger individuals.

Still, some occupations saw a significant increase in senior workers. For example, senior refuse workers (i.e., people who collect garbage for work) increased by 230 percent while senior cleaners and helpers increased by 120 percent. Why did we see an increase in senior employment in these occupations? A potential hypothesis is that these are occupations that younger individuals are not interested and thus lead to reduced competition for senior individuals.

Another interesting insight is that our research highlights a significant difference in employment growth between senior individuals working in routine jobs and those in non-routine jobs. Senior individuals engaged in routine jobs, such as machine operators and laborers, experienced slower employment growth than those in non-routine jobs, like healthcare professionals and legal experts. Potentially, routine jobs often require physical abilities that deteriorate with age. Additionally, these jobs are more susceptible to replacement by automation technologies. This illustrates another potential channel through which technological disruption can impact senior employment.

Over the past three years (2018-2021), there were approximately 1 million individuals who became senior citizens per year. If we use the above information that we can absorb only 10 percent of senior citizens into the labor market, this implies that we are losing an “untapped” potential of at least 900,000 individuals per year. Five years from now, we will lose around 4.5 million individuals cumulatively. Ten years from now, we could lose up to 9 million individuals cumulatively. And the longer these senior individuals have left the labor market, the harder it is to bring them back into the labor market.

So, what should we do? We think it is critical to rethink how we value the so-called “silver workforce”. Commonly, many people and organizations do not recognize the great potential from this group of people. This suggests the enormous opportunity to leverage the potential of this expanding group. Policymakers and businesses should respond proactively by implementing strategies such as offering incentives for hiring older workers, investing in customized skill development programs, and recognizing the substantial economic contributions these individuals can bring. These actions can be crucial for unlocking the benefits of this demographic shift and boosting the performance of Thai economy.

With the substantial increase in the senior population and the relatively modest growth in the number of seniors employed, it becomes evident that a reservoir of untapped potential exists. This potential, if strategically harnessed, holds the promise of bolstering the nation’s economic growth, amplifying productivity, and ensuring the continued engagement of older individuals in meaningful and fulfilling roles. Moreover, by nurturing the well-being of senior workers and providing opportunities for skill enhancement, they can excel in specific vocations such as teaching, legal practice, and managerial roles that people become more productive by age. Furthermore, with the assistance of technology, senior workers can be augmented through innovative tools like virtual reality (VR) and augmented reality (AR) or even physical augmentation, enabling them to perform tasks with enhanced efficiency and adaptability.

To unlock this untapped potential, a multi-faceted approach is essential. This approach should encompass tailored skill development programs that align with emerging technologies and allow for flexible work arrangements that cater to the unique needs and preferences of senior workers. Furthermore, fostering an age-inclusive work environment and championing age-diverse teams can further optimize the utilization of this underutilized labor force. In addition to their contributions to the workforce, senior workers can play a pivotal role in addressing various social issues, including environmental concerns or volunteering to help in various areas. Their wealth of experience and expertise can be valuable in tackling complex challenges and finding sustainable solutions for the betterment of society as a whole.

In summary, by embracing this untapped potential, Thailand can better position itself to navigate the evolving dynamics of its labor market, creating a win-win scenario that benefits individuals, businesses, and society at large.

This article is written by

1. Assoc.Prof. Piyachart Phiromswad, Ph.D., Deputy Director, Sasin School of Management

2. Asst.Prof. Pattarake Sarajoti, Ph.D., Assistant Director, Sasin School of Management

3. Prof. Kua Wongboonsin, Ph.D., Demographer and Advisor to the National Innovation Board of Thailand

4. Mr. Pitichai Rajatawipat, Research Assistant

HKBU-led research discovers therapeutic potential of hyodeoxycholic acid for non-alcoholic fatty liver disease

A research led by Hong Kong Baptist University (HKBU) has discovered that hyodeoxycholic acid (HDCA), a bile acid generated in human intestine, can reduce fat accumulation and inflammation in the liver, demonstrating its strong therapeutic potential for non-alcoholic fatty liver disease (NAFLD). The research also found that HDCA’s intervention in NAFLD works by reshaping the population of beneficial gut bacteria, which affects the metabolic interactions between the gut and the liver. The result highlighted the critical role of gut health in liver disease.

The research findings have been published in the renowned scientific journal Cell Metabolism. HKBU researchers will coordinate a phase I and II clinical trial in the Mainland to evaluate the safety and efficacy of HDCA for patients with fatty liver disease and type 2 diabetes.

32% of adults suffer from NAFLD

NAFLD is a leading cause of chronic liver disease, characterised by the build-up of excessive fat in liver cells that is not caused by alcohol consumption. Its global prevalence has been increasing over time. A meta-analysis in 2022 estimated that 32% of the adult population is affected by NAFLD. Some people with NAFLD can develop non-alcoholic steatohepatitis, which is marked by liver inflammation and may progress to cirrhosis and liver failure. Currently, there are no therapeutic drugs available for sale on the market for non-alcoholic steatohepatitis.

A research led by Professor Jia Wei, Acting Dean and Chair Professor in Chinese Medicine and Systems Biology of the School of Chinese Medicine at HKBU, discovered that HDCA offers promising potential as a pharmaceutical intervention for NAFLD. “Our research is a significant stride forward in understanding the pathophysiology of NAFLD, and it offers a potential new avenue for therapeutic intervention,” he said.

Therapeutic effects of HDCA

Professor Jia’s team found that individuals with NAFLD have lower levels of HDCA compared to those without NAFLD. In a cohort consisting of 178 patients with NAFLD and 73 healthy individuals, hyocholic acid species, including HDCA and its major metabolite glycohyodeoxycholic acid, comprises 0.5% of the bile acids in NAFLD patients, which is significantly lower than the 2% in healthy individuals. This observation led the team to explore HDCA’s potential therapeutic role.

A series of controlled experiments were conducted to evaluate the therapeutic effect of HDCA. The team orally fed HDCA to mouse models with NAFLD for eight weeks. The results showed that HDCA markedly reduced excessive lipid droplets, and improved hepatic inflammation, oral glucose tolerance (i.e. the blood glucose level after oral intake of glucose), and insulin sensitivity (i.e. the sensitivity of the body to the effects of insulin which helps the glucose to enter into the cells for use) compared to the control group. The results revealed that HDCA alleviated NAFLD conditions and the risk factors of NAFLD such as type 2 diabetes and insulin resistance.

Interestingly, the researchers found that HDCA did not exert its therapeutic effects on NAFLD by directly targeting liver cells. They evaluated the potential direct effect of HDCA on lipid accumulation in a mouse model. The results showed that lipid accumulation was barely affected by the HDCA. They hypothesised that HDCA induced gut microbiota alterations, which might contribute to the alleviation of NAFLD.

HDCA reshapes gut microbiota

The researchers observed that HDCA could improve the population of beneficial gut bacteria. Parabacteroides distasonis (P. distasonis), a member of the core microbiome in the human gut, sharply increased in the mouse model fed with high-fat food and administered with HDCA, compared with the control group fed with high-fat food only. The results revealed that HDCA provided a favorable environment for the thriving of P. distasonis, which regulates fatty acid metabolism as well as the hepatic bile acid synthesis pathways.

“The study underscores the crucial role of the gut-liver metabolic axis in disease management. We hope that the research findings on HDCA and the clinical trial to be conducted in the Mainland will provide more insights into the treatment of fatty liver disease and non-alcoholic steatohepatitis,” said Professor Jia.

Professor Jia has also led a research project investigating the molecular connections between metabolic-associated fatty liver disease and type 2 diabetes mellitus, with a specific focus on host-gut microbiota interactions. The project has been awarded over HK$7.2 million in research funding from the Theme-based Research Scheme (13th round) under the Research Grants Council.

LAT Wins The Global 100 Award For 4th Consecutive Year

The London Academy of Trading has won the ‘Most Outstanding Trading Courses Provider – 2024’ for the fourth year in a row from The Global 100.

With its global readership of more than 376,000, The Global 100 does not follow the usual process of many publishers. Instead, they use a very specific, comprehensive evaluation process. After the closure of the voting period, which involves a strict format of self-submission and third-party nomination, firms are shortlisted and then the winners are selected. For each category, a propriety method of analysis ranks winners based on their domestic and international work.

Paddy Osborn, MD and Academic Dean of LAT, said: “This is a challenging award to win, so we are delighted to have been chosen as the Most Outstanding Trading Courses Provider for 2024. It is flattering to be recognised for our achievements, but our aim is simply to do everything in our power to help students achieve their personal goals.”

Earlier this year, LAT launched a bespoke one-on-one mentoring service to help traders fine-tune their skills and achieve consistent profitability. These personalised sessions with LAT specialists are completely bespoke, covering goal setting, trading psychology, strategy development, risk management and much more.

“This service is available to everyone, including LAT alumni as well as individuals who haven’t studied with us before,” says Paddy Osborn. “Many retail traders think they have the knowledge and skills to trade but many lack the final ingredients to be consistently successful. Having specific advice and guidance from our trading experts can give them what they need to get fully on track with their trading.”

The Global 100 consists of only 100 of the world’s leading firms and individuals.

Template for Success: Shaping Hard Carbon Electrodes for Next-Generation Batteries

Sodium- and potassium-ion batteries are promising next-generation alternatives to the ubiquitous lithium-ion batteries (LIBs). However, their energy density still lags behind that of LIBs. To tackle this issue, researchers from Japan explored an innovative strategy to turn hard carbon into an excellent negative electrode material. Using inorganic zinc-based compounds as a template during synthesis, they prepared nanostructured hard carbon, which exhibits excellent performance in both alternative batteries.

Lithium-ion batteries (LIBs) are, by far, the most widely used type of rechargeable batteries, spanning numerous applications. These include consumer electronics, electric vehicles (e.g., Tesla cars), renewable energy systems, and spacecrafts. Although LIBs deliver the best performance in many aspects when compared to other rechargeable batteries, they have their fair share of disadvantages. Lithium is a rather scarce resource, and its price will rise quickly with its availability going down in the future. Moreover, lithium extraction and improperly discarded LIBs pose huge environmental challenges as the liquid electrolytes commonly used in them are toxic and flammable.

The shortcomings of LIBs have motivated researchers worldwide to look for alternative energy storage technologies. Sodium (Na)-ion batteries (NIBs) and potassium-ion batteries (KIBs) are two rapidly emerging options that are cost-efficient as well as sustainable. Both NIBs and KIBs are projected to be billion-dollar industries by the end of the decade. Governments across the world, including that of the US, Austria, Hong Kong, Germany, and Australia, are promoting research and innovation in this field. Moreover, companies such as Faradion Limited, TIAMAT SAS, and HiNa Battery Technology Co. Ltd., are investing heavily in this technology. Both Contemporary Amperex Technology Co. Limited and Build Your Dreams are expected to introduce electric vehicle battery packs with NIBs soon.

Unfortunately, however, the capacity of the electrode materials used in NIBs and KIBs still lags behind that of LIBs. Against this backdrop, a research team led by Professor Shinichi Komaba from Tokyo University Science (TUS), Japan, has been working to develop groundbreaking high-capacity electrode materials for NIBs and KIBs. In their latest study, published in Advanced Energy Materials on November 9, 2023, they report a new synthesis strategy for nanostructured “hard carbon” (HC) electrodes that deliver unprecedented performance. The study was co-authored by Mr. Daisuke Igarashi, Ms. Yoko Tanaka, and Junior Associate Professor Ryoichi Tatara from TUS, and Dr. Kei Kubota from the National Institute for Materials Science (NIMS), Japan.

But what is HC and why is it useful for NIBs and KIBs? Unlike other forms of carbon, such as graphene or diamond, HC is amorphous; it lacks a well-defined crystalline structure. Additionally, it is strong and resistant. In an earlier 2021 study, Prof. Komaba and his colleagues had found a way to use magnesium oxide (MgO) as a template during the synthesis of HC electrodes for NIBs, altering their final nanostructure. The process had led to the formation of nanopores within the electrodes upon MgO removal, which, in turn, had vastly increased their capacity to store Na+ ions.

Motivated by their previous findings, the researchers explored whether compounds made from zinc (Zn) and calcium (Ca) could also be useful as nano-templates for HC electrodes. To this end, they systematically investigated different HC samples made using zinc oxide (ZnO) and calcium carbonate (CaCO3) and compared their performance with the ones synthesized using magnesium oxide (MgO).

Preliminary experiments showed that ZnO was particularly promising for the negative electrode of NIBs. Accordingly, the researchers optimized the concentration of ZnO embedded in the HC matrix during synthesis, demonstrating a reversible capacity of 464 mAh g–1 (corresponding to NaC4.8) with a high initial Coulombic efficiency of 91.7% and a low average potential of 0.18 V vs. Na+/Na.

The team achieved remarkable results by incorporating this powerful electrode material into an actual battery. “The NIB fabricated using the optimized ZnO-templated HC as the negative electrode exhibited an energy density of 312 Wh kg–1,” highlights Prof. Komaba. “This value is equivalent to the energy density of certain types of currently commercialized LIBs with LiFePO4 and graphite and is more than 1.6 times the energy density of the first NIBs (192 Wh kg–1), which our laboratory reported back in 2011.” Notably, the ZnO-templated HC also exhibited a significant capacity of 381 mAh g–1 when incorporated into a KIB, further showcasing its potential.

Taken together, the results of this study show that using inorganic nanoparticles as a template to control the pore structure may provide an effective guideline for the development of HC electrodes. “Our findings prove that HCs are promising candidates for negative electrodes as an alternative to graphite,” concludes Prof. Komaba.

In turn, this could make NIBs viable for practical applications, such as the development of sustainable consumer electronics and electric vehicles as well as low carbon footprint energy storage systems for storing energy from solar and wind farms.