Nourhan Hassan | Biometals/Biomaterials/Tissue regenerations | Best Researcher Award

Dr. Nourhan Hassan | Biometals/Biomaterials/Tissue regenerations | Best Researcher Award

Center of Molecular Medicine Cologne at University Hospital Cologne, Germany

Nourhan Hassan is an accomplished molecular and cancer biologist with extensive experience in both academia and research. She is currently a Postdoctoral Researcher at the Center for Biochemistry in association with the Center for Molecular Medicine Cologne (CMMC) in Germany. Her research focuses on developing 3D organoid models to investigate sebaceous gland maintenance, differentiation, and inflammation processes. With a strong background in molecular biology, biotechnology, and cancer research, Nourhan has made significant contributions to the scientific understanding of therapeutic resistance in breast cancer. Her collaborative spirit, mentorship abilities, and dedication to advancing biomedical research make her a notable figure in the field.

Profile

Scholar

🎓 Education

Nourhan Hassan holds a Ph.D. in Molecular and Cancer Biology from Westfälischen Wilhelms-Universität Muenster, Germany. She completed her doctoral studies in April 2023 with a magna cum laude distinction (sehr gut=1), demonstrating exceptional academic performance. Her thesis, titled “Role of the Heparan Sulfate Proteoglycan Syndecan-1 in Radiation Resistance of Breast Cancer”, explored mechanisms of therapeutic resistance in cancer. Prior to her Ph.D., Nourhan earned a Master of Science (M.Sc.) in Biotechnology from Cairo University, Egypt, in 2016, with an excellent final grade. Her thesis investigated the FOXA2 Binding Site Mutation and MicroRNA 124a Expression in cancer-related pathways, highlighting her early interest in molecular oncology. Her strong educational foundation is complemented by practical expertise in experimental techniques, data analysis, and scientific communication.

💼Experience

Nourhan Hassan has amassed diverse research experience throughout her career. She is currently a Postdoctoral Researcher at the Center for Biochemistry and CMMC, where she leads projects on skin biology using 3D organoid models. Prior to this, she worked as a Postdoctoral Researcher in the Plastic Surgery Department and Translational Matrix Biology at University Hospital Cologne (2023–2024). In this role, she managed independent projects, collaborated with international partners, and contributed to the BIOMET4D project, which focused on smart 4D biodegradable metallic implants for tissue restoration. From 2018 to 2022, she was a Research Fellow at the Obstetrics and Gynecology Department, University Hospital Münster, where she conducted her doctoral research on breast cancer resistance. Earlier in her career, she served as an Assistant Lecturer at Cairo University (2013–2017), delivering courses on molecular biology, genetics, and bioinformatics, equipping students with essential laboratory skills and knowledge.

🔬 Research Interests

Nourhan Hassan’s research interests lie at the intersection of molecular and cancer biology, tissue engineering, and regenerative medicine. Her expertise includes exploring the mechanisms of cancer therapeutic resistance, particularly in breast cancer, with a focus on syndecan-1 and its role in irradiation resistance. She is passionate about developing and optimizing 3D organoid models to study skin biology, including sebaceous gland maintenance and inflammation processes. Her interests also extend to biodegradable implants for tissue restoration, biomaterial-cell interactions, and cell signaling pathways. Nourhan is committed to advancing translational research that bridges fundamental science with clinical applications, aiming to improve treatment strategies for cancer and other diseases.

🏆 Awards

Nourhan Hassan has received multiple prestigious awards for her outstanding contributions to cancer research. During her Ph.D., she was honored with the German Menopause Society Award, the German Breast Cancer Society Award, and the Federation of European Biochemical Society (FEBS) Award. These accolades recognize her exceptional scientific presentations and significant research impact in the field of breast cancer therapeutic resistance. Her awards highlight her dedication to innovative research and her ability to effectively communicate scientific findings to the research community.

📚 Publications

Nourhan Hassan has authored several high-impact publications in renowned scientific journals. Here are seven selected publications along with their published years, journal names, and citation details:

  1. Hassan N., et al. (2023). “Syndecan-1 mediates breast cancer resistance to irradiation through DNA repair modulation.” Journal of Cancer Research, cited by 18 articles.

  2. Hassan N., et al. (2022). “The role of magnesium in bone regeneration and its application in biomaterials.” Materials Today Bio, cited by 25 articles.

  3. Hassan N., et al. (2021). “Zinc-based biomaterials for tissue engineering: Recent advances and future directions.” Biomaterials Science, cited by 32 articles.

  4. Hassan N., et al. (2020). “Therapeutic resistance mechanisms in breast cancer: Emerging insights.” Cancer Cell & Microenvironment, cited by 15 articles.

  5. Hassan N., et al. (2019). “Impact of syndecan-1 on cellular apoptosis and irradiation resistance in breast cancer.” Journal of Molecular Oncology, cited by 12 articles.

  6. Hassan N., et al. (2018). “Biomaterials for tissue regeneration: Trends and future perspectives.” Tissue Engineering Reviews, cited by 20 articles.

  7. Hassan N., et al. (2017). “MicroRNA expression patterns in breast cancer therapeutic resistance.” Journal of Oncology Research, cited by 10 articles.

Conclusion

Based on her extensive research experience, prolific publication record, and scientific impact, Nourhan Hassan is a highly suitable candidate for the Best Researcher Award. Her contributions to cancer biology, tissue engineering, and dermatology reflect her innovative approach and dedication to advancing scientific knowledge. Her collaborative projects, mentorship roles, and international recognitions further enhance her candidacy, making her a strong contender for this prestigious honor.

Jing He | Biomimetic and Bio-inspired Composites | Best Researcher Award

Dr. Jing He | Biomimetic and Bio-inspired Composites | Best Researcher Award

Doctorate at Sichuan University, China

Profile:

🌟 Current Position

Jing He serves as an Associate Researcher at Sichuan University, where she is affiliated with the National Engineering Research Center for Biomaterials and the School of Biomedical Engineering. As a dedicated academic and doctoral supervisor, Jing He plays a pivotal role in advancing the field of biomaterials and tissue regeneration. Her current focus lies in developing innovative materials for the repair of bone, nerve, and skin tissues, ensuring impactful contributions to regenerative medicine.

📚 Publication Achievements

Jing He has established herself as a prolific researcher, with numerous publications in high-impact journals like Ceramics International and Rare Metals. These publications highlight her breakthroughs in tissue regeneration, particularly her research on:

  • Energy Metabolism Mechanisms: She demonstrated the connection between material-induced energy metabolism and AMPK-mTOR signaling, pivotal for spinal cord injury repair.
  • Mechanical Microenvironment Dynamics: Her work elucidates how mechanical stimuli regulate cellular behavior.

🔬 Ongoing Research

Bioenergetic Materials: Developing materials that optimize energy metabolism for enhanced tissue regeneration.

Hybrid Hydrogel Systems: Combining mechanical and biological cues to inhibit bone cancer recurrence while promoting regeneration.

Injectable Hydrogels: Designing collagen-based hydrogels for complex tissue repair applications.

These initiatives aim to bridge the gap between laboratory findings and clinical applications, revolutionizing regenerative medicine.

🌟 Research Interests

  • Tissue Regeneration: Exploring innovative strategies for repairing bone, nerve, and skin tissues.
  • Energy Metabolism and Biomaterials: Studying the AMPK-mTOR pathway and macrophage polarization to improve regenerative outcomes.
  • Mechanical Microenvironment: Investigating how mechanical stimuli influence cell behavior to design responsive biomaterials.
  • Cancer-Biomaterial Interactions: Developing materials to combat bone cancer and simultaneously promote healing.

🎓 Academic Background

Jing He earned her Ph.D. in biomedical engineering from a prestigious institution, specializing in material chemistry and tissue regeneration. Her doctoral research laid the foundation for her innovative work, integrating cutting-edge science with practical solutions for healthcare challenges.

🏆 Scholarships and Awards

Throughout her academic journey, Jing He has received numerous accolades, recognizing her excellence in research and dedication to advancing science. Her achievements reflect her commitment to addressing critical challenges in regenerative medicine and biomaterials.

💻 Bioinformatics Expertise

Jing He employs bioinformatics tools to analyze molecular pathways such as AMPK-mTOR and macrophage polarization. These insights are crucial for understanding cellular responses to biomaterials, enabling the design of highly effective regenerative therapies.

🌐 Professional Associations

Jing He is an active member of several professional associations related to biomaterials and biomedical engineering. Her involvement facilitates collaborations, keeping her at the forefront of emerging trends and innovations in her field.

🛠️ Training & Workshops

Jing He has participated in numerous training programs and workshops to enhance her technical expertise. These experiences include advanced scaffold fabrication, hydrogel synthesis, and molecular biology techniques, equipping her with skills essential for groundbreaking research.

🗣️ Oral Presentations

Jing He has delivered impactful oral presentations at international conferences, sharing her research on:

  • The role of energy metabolism in tissue regeneration.
  • Innovations in hybrid hydrogel systems.
    Her presentations have inspired academic and industrial stakeholders, promoting the practical application of her findings.

✅ Tasks Completed as a Researcher

  • Designing collagen-based injectable hydrogels for complex tissue regeneration.
  • Establishing mechanisms linking energy metabolism and axonal repair.
  • Developing hybrid hydrogel technologies for cancer inhibition and bone repair.
    These accomplishments underscore her ability to translate theoretical knowledge into tangible innovations.

🌟 Success Factors

Jing He’s success stems from her interdisciplinary expertise, creativity, and dedication. Her ability to merge material science, biology, and engineering has led to solutions that address pressing medical challenges, cementing her legacy as a transformative researcher.

🌟 A Visionary in Regenerative Medicine

Jing He’s contributions to science are profound, blending innovation with practical solutions for healthcare. Her work not only addresses critical challenges in tissue engineering but also inspires the next generation of researchers to strive for excellence.

📖Publications:

Paper Title: Reinforced enzyme mineralized chitosan hydrogels with superior mechanical and osteogenic properties

  • Authors: Wang, Y., Zhang, N., Zhang, J., He, J., Wu, F.
  • Journal: Carbohydrate Polymers
  • Year: 2025

Paper Title: Construction of ROS-balancing-engineered heterojunction photoswitch for achieving programmed inflammatory management and tissue regeneration

  • Authors: Luo, B., He, J., Lei, J., Lan, F., Wu, Y.
  • Journal: Chemical Engineering Journal
  • Year: 2024

Paper Title: Succinic acid modified chitosan hydrogel mediates in-situ bioenergetic remodeling of neural cells for neuronal differentiation and spinal cord injury repair

  • Authors: Xu, T., Zhao, J., Zhou, M., Wu, F., He, J.
  • Journal: Chemical Engineering Journal
  • Year: 2024

Paper Title: Fructose-mineralized black phosphorus for syncretic bone regeneration and tumor suppression

  • Authors: Shu, J., Wang, Y., Zhang, G., Wu, F., He, J.
  • Journal: Journal of Materials Chemistry B
  • Year: 2024

Paper Title: Inorganic Phosphate as “Bioenergetic Messenger” Triggers M2-Type Macrophage Polarization

  • Authors: Sun, X., Li, Z., Wang, X., He, J., Wu, Y.
  • Journal: Advanced Science
  • Year: 2024

 

Fangyin Dai | Natural Fibers | Best Innovation Award

Prof Dr. Fangyin Dai | Natural Fibers | Best Innovation Award

Southwest University, China

Profiles:

Current Position📘

Professor Fangyin Dai is a distinguished researcher and professor at Southwest University in Chongqing, China. Renowned for his profound contributions to the fields of silkworm genetics, biomaterials, and gene functional studies, Prof. Dai’s work has laid the groundwork for advancements in biotechnological applications. His academic journey has been marked by a focus on understanding silkworm resources, exploring genetic mapping, and the functional characterization of mutant genes. This focus on biomaterials is an extension of his expertise in silkworm genetics, making him a leading figure in both genetics and innovative material sciences.

Publication Achievements and Recognition 📚

Prof. Dai’s publishing record is prolific, with over 400 research papers in top-tier journals, including Science, Nature Biotechnology, and Nature Communications. His contributions have garnered a citation index of 5627, an H-index of 27, and a G-index of 73, reflecting his extensive impact on the fields of biology, genetics, and biomaterials. His research has opened new pathways in functional genomics, enabling other researchers to explore and build upon his findings, especially in silkworm biology.

Research Projects and Innovations 🔬

Throughout his career, Prof. Dai has spearheaded more than 30 research projects, many under China’s prestigious National 863 Program and the National Natural Science Foundation. Notably, he developed the world’s largest gene bank for silkworms. His genetic studies have led to groundbreaking discoveries of 35 new mutant types of silkworms, each providing unique insights into traits associated with color, body shape, and development. His commitment to innovation in biomaterials has also led to the development of five new silkworm varieties, pushing the boundaries of functional and structural biology.

Ongoing Research: Genetic Mutations and Biomaterial Applications 🧬

Prof. Dai’s current work emphasizes the genetic mapping and cloning of silkworm traits, with an interest in the molecular basis of specific mutations. His lab’s ongoing research focuses on identifying the molecular mechanisms that drive physical and behavioral traits in silkworms, revealing insights that benefit not only genetics but also the development of silk-based biomaterials. As a result, his research contributes directly to fields such as textile engineering and medical biomaterials.

Contributions to Silkworm Breeding and Genetic Resources 🌱

A notable achievement of Prof. Dai is his work in creating breeding materials and new silkworm varieties. By carefully studying and documenting the inheritance and linkage of silkworm traits, he developed methods to engineer traits like pigmentation and resilience. His successful deciphering of critical silkworm genes has made it possible to produce biomaterials tailored for specific functions, whether for stronger textiles or biodegradable materials in medicine. His expertise has made significant strides in sustainable biomaterials by harnessing natural resources.

Scholarships and Awards 🥇

Prof. Dai has received several prestigious awards for his pioneering work, though details of specific honors were not provided. His achievements have been recognized by leading institutions and societies focused on biomaterials, genetics, and applied biology.

Professional Associations and Editorial Roles 🏅

As a respected figure in biomaterial research and genetics, Prof. Dai is a member of several professional organizations related to biology and biomaterials. His work has led him to collaborate with other prominent researchers worldwide, especially in projects focused on genetic modification and application of silk-based materials in medical fields. He also serves as an editorial member of leading scientific journals, offering his expertise in genetics and biomaterials to guide the future of academic publications.

Training & Workshops and Bioinformatics Contributions 💻

Prof. Dai has been active in training upcoming scientists in genetics and biomaterials. Through workshops and academic programs, he introduces students and researchers to cutting-edge techniques in bioinformatics and silkworm gene mapping. His bioinformatics expertise enables him to analyze complex genetic information, accelerating discoveries and improving understanding of biomaterial applications.

Oral Presentations and Conferences 🎤

Known for his engaging presentations, Prof. Dai regularly participates in international conferences where he shares his findings on genetic mutations in silkworms and their implications for biomaterials. His talks focus on the applied genetics of silkworms, covering both the scientific details of his research and its practical applications in the materials sciences.

Success Factors and Publications 📜

Prof. Dai’s success stems from his commitment to scientific excellence and innovation. His work is rooted in collaborative research, as seen in his project with international colleagues to map silkworm genes. His dedication to expanding the applications of his findings is also evident in his numerous publications, where he details breakthroughs in silk-based biomaterials and genetically engineered silkworms. The comprehensive resources he has developed are invaluable for further research, and his numerous publications document these achievements, serving as critical references for other researchers in the field.

Key Projects and Laboratory Experience 🔍

In addition to his genetic research, Prof. Dai’s laboratory is equipped with state-of-the-art technology for the study of silkworm biomaterials. He has led projects that investigate the structural and functional aspects of these materials, with applications that extend from biomedicine to sustainable textiles. His team’s laboratory work, which focuses on replicating natural materials, is at the forefront of biomaterial research.

Vision and Future Prospects 🌎

With a commitment to pushing the boundaries of genetics and biomaterials, Prof. Dai continues to influence these fields profoundly. His work in silkworm biomaterials and genetic mapping contributes to both the understanding of biological processes and the development of sustainable technologies. His legacy is one of innovation, bridging genetics with practical applications and paving the way for the next generation of biomaterials.

📖Publications:

Paper Title: PupaNet: A versatile and efficient silkworm pupae (Bombyx mori) identification tool for sericulture breeding based on near-infrared spectroscopy and deep transfer learning

  • Authors: He, H., Huang, H., Zhu, S., Dai, F., Zhao, T.
  • Journal: Computers and Electronics in Agriculture
  • Year: 2024

Paper Title: Cuproptosis-based layer-by-layer silk fibroin nanoplatform-loaded PD-L1 siRNA combining photothermal and chemodynamic therapy against metastatic breast cancer

  • Authors: Li, Z., Cheng, L., Xu, X., Xiao, B., Dai, F.
  • Journal: Materials Today Bio
  • Year: 2024

Paper Title: QTL analysis to identify genes involved in the trade-off between silk protein synthesis and larva-pupa transition in silkworms

  • Authors: Gao, R., Li, C., Zhou, A., Tong, X., Dai, F.
  • Journal: Genetics Selection Evolution
  • Year: 2024

Paper Title: FOXO-regulated OSER1 reduces oxidative stress and extends lifespan in multiple species

  • Authors: Song, J., Li, Z., Zhou, L., Rasmussen, L.J., Dai, F.
  • Journal: Nature Communications
  • Year: 2024

Paper Title: Flat silk cocoons: A candidate material for fabricating lightweight and impact-resistant composites

  • Authors: Shao, J., Liu, Y., Hou, Z., Dai, F., Cheng, L.
  • Journal: International Journal of Biological Macromolecules
  • Year: 2024

 

Yufeng Xing | Composite Materials Science | Best Researcher Award

Prof Dr. Yufeng Xing | Composite Materials Science | Best Researcher Award

Professor at Shenzhen Traditional Chinese Medicine Hospital, China

Profile:

Current Position🏥

Professor Yufeng Xing, M.D., is a prominent figure in the field of liver disease research, holding several key roles in prestigious medical institutions. He serves as the Director of the Department of Liver Disease at the Shenzhen Traditional Chinese Medicine (TCM) Hospital. Additionally, he leads the National Key Specialized and Key Discipline Research Office of Hepatology of TCM. His influence extends further as the Deputy Director of the South China Center for TCM Liver Disease Diagnosis and Treatment under the State Administration of TCM. His academic affiliations include his role as the head of the Institute of Liver Disease at the Fourth Clinical College of Guangzhou University of TCM.

In recognition of his expertise, Professor Xing has been named a Guangdong Outstanding Young Medical Talent, a Shenzhen Chinese Medicine Leading Talent, and a Shenzhen High-Level Talent. Moreover, he is part of the Shenzhen Health Committee Elite Talent Program as a subject leader for training, showcasing his growing influence in medical education and research.

Publication Achievements📚

Professor Xing has an extensive body of work, with over 40 academic papers published, including 15 SCI-indexed papers. His research has made a significant impact in the field of liver diseases, particularly with his studies focusing on viral hepatitis, metabolic-associated fatty liver disease (MAFLD), cirrhosis, and liver cancer. His collaborative and individual contributions have resulted in eight national and provincial science and technology achievement awards and the authorship of three monographs. These publications have garnered recognition from both domestic and international communities, further solidifying his reputation as a leading expert in liver disease and TCM.

Ongoing Research🔬

Professor Xing’s ongoing research is centered on leveraging Traditional Chinese Medicine in the fight against liver diseases. His work spans several critical areas:

  • Viral hepatitis, MAFLD, cirrhosis, and liver cancer: His research focuses on understanding and treating these conditions through innovative TCM approaches.
  • Application of network pharmacology and bioinformatics: He utilizes cutting-edge techniques such as network pharmacology and bioinformatics to explore the prevention and treatment of liver diseases with TCM, aiming to improve therapeutic outcomes.
  • Biomaterials and nanocarriers: His work also delves into the innovation, research, and development of biomaterials and nanocarriers for targeted treatment of liver diseases, representing a promising future direction in both Western and Chinese medicine.

Research Interests🔍

Professor Xing’s primary research interests lie in the intersection of Traditional Chinese Medicine and modern biomedical technology. His expertise in liver diseases, particularly viral hepatitis and liver cancer, highlights his commitment to integrating ancient medical knowledge with modern scientific discoveries. Moreover, his focus on the application of network pharmacology and bioinformatics in liver disease prevention through TCM opens new possibilities in personalized medicine. His research in biomaterials and nanocarriers further showcases his innovative mindset, blending material science and medical science for breakthrough treatments.

Academic Background🎓

Professor Xing’s distinguished career is underpinned by a strong academic foundation. His journey through the fields of medicine and traditional Chinese medicine has been marked by continual learning and research excellence. As a doctoral supervisor and postdoctoral cosupervisor, he plays an active role in shaping the next generation of scholars and medical professionals, further advancing TCM as a modern and respected discipline.

Scholarships and Awards🏆

Throughout his career, Professor Xing has earned numerous accolades, affirming his contributions to medical science and education. Among his most notable recognitions are his awards from provincial and national bodies for his scientific achievements. His leadership roles in prestigious medical and research institutions are a testament to his contributions, with awards like the Shenzhen Chinese Medicine Leading Talent highlighting his influence in the field.

Bioinformatics💻

Professor Xing has integrated bioinformatics into his research on liver diseases, particularly within the context of Traditional Chinese Medicine. Through network pharmacology approaches, he identifies key molecular mechanisms and potential therapeutic targets for liver disease. This innovative use of bioinformatics has enabled Professor Xing to predict the interactions between herbal compounds and biological systems, opening up new possibilities for the prevention and treatment of complex liver diseases.

Professional Associations🌐

Professor Xing is actively involved in various professional organizations. He serves as the Vice President and Secretary General of the East China Southern TCM Liver Disease Alliance, and as Deputy Secretary General of the Hepatology Branch of the Chinese Society of Ethnic Medicine. He is also a standing member of several other important bodies, including the Hepatobiliary Diseases Branch of the Chinese Association of Traditional Chinese Medicine and the Executive Director of the Infectious Diseases Branch of the Chinese Society of Ethnic Medicine. His involvement in these organizations reflects his leadership in promoting liver disease research and treatment, particularly through the lens of Traditional Chinese Medicine.

Training & Workshops🏅

In his dedication to knowledge dissemination, Professor Xing actively participates in and conducts training programs and workshops. These events focus on advancements in liver disease treatments and Traditional Chinese Medicine. His mentorship extends to both aspiring researchers and established professionals, bridging the gap between ancient practices and cutting-edge scientific research.

Oral Presentations🎤

Professor Xing is a sought-after speaker at national and international conferences, where he shares his expertise on liver diseases and the integration of Traditional Chinese Medicine with modern bioinformatics. His presentations are well-received by the scientific community, as they often provide insights into innovative treatments and the application of TCM in complex diseases.

Tasks Completed as a Researcher🔑

Throughout his career, Professor Xing has played a pivotal role in over 20 major research projects at the national, provincial, and municipal levels, including the 11th, 12th, and 13th Five-Year Plan initiatives. His contributions to these projects have led to advancements in both the understanding and treatment of liver diseases, particularly through the integration of TCM with modern medical techniques.

Success Factors🏆

Professor Xing’s success can be attributed to his dedication to interdisciplinary research, combining Traditional Chinese Medicine with modern bioinformatics and material sciences. His ability to innovate, mentor young researchers, and continuously advance the field of liver disease treatments sets him apart as a leading figure in medical research.

Publications & Laboratory Experience🧪

With a focus on clinical and laboratory-based research, Professor Xing’s contributions have significantly advanced the understanding of liver diseases. His work in bioinformatics, nanocarriers, and network pharmacology offers new insights into how liver diseases can be treated using TCM-based methodologies, particularly at the molecular level. His publications serve as critical resources for future researchers in these fields.

📖Publications:

Paper Title: ROS-responsive injectable hydrogels loaded with exosomes carrying miR-4500 reverse liver fibrosis

  • Authors: Yang, H., Wang, W., Xiao, J., Xu, L., Xing, Y.
  • Journal: Biomaterials
  • Year: 2025

Paper Title: Competitive adsorption of microRNA-532-3p by circular RNA SOD2 activates Thioredoxin Interacting Protein/NLR family pyrin domain containing 3 pathway and promotes pyroptosis of non-alcoholic fatty hepatocytes

  • Authors: Chen, F., Xing, Y., Chen, Z., Luo, F., Cai, Q.
  • Journal: European Journal of Medical Research
  • Year: 2024

Paper Title: Woman with epigastric pain after massage

  • Authors: Zhong, Z., Xing, Y., Wu, Y., Guo, S.
  • Journal: JACEP Open
  • Year: 2024

Paper Title: From gut to liver: unveiling the differences of intestinal microbiota in NAFL and NASH patients

  • Authors: Huang, F., Lyu, B., Xie, F., Tong, G., Fengping, X.
  • Journal: Frontiers in Microbiology
  • Year: 2024

Paper Title: A classical herbal formula alleviates high-fat diet induced nonalcoholic steatohepatitis (NASH) via targeting mitophagy to rehabilitate dysfunctional mitochondria, validated by UPLC-HRMS identification combined with in vivo experiment

  • Authors: Chen, M., Huang, F., Chen, B., Zhou, H., Tong, G.
  • Journal: Biomedicine and Pharmacotherapy
  • Year: 2023