Dr.ZhihongYang - Fisheries subsidies- Best Researcher Award
National Institutes of Health | United States
Author Profile
Early Academic Pursuits
His academic pursuits were marked by a keen interest in marine lipid science, driven by a desire to unravel the complexities of dietary omega fatty acids. His undergraduate and graduate studies laid the groundwork for his future endeavors, providing him with a solid understanding of chemistry, biochemistry, and molecular biology.
Professional Endeavors
Following his academic achievements, He transitioned into the professional realm, where he made significant contributions to both industry and academia. From 2007 to 2014, he served at Nissui Corporation, one of the world's top seafood suppliers, focusing on the development of functional food ingredients from natural resources. During this time, he demonstrated exemplary project management skills, overseeing the generation of project proposals, project scopes, and the execution of investigative protocols.
In 2014, He joined the National Institutes of Health (NIH), USA, where he currently serves as a Research Scientist in the Lipoprotein Metabolism Laboratory at the National Heart, Lung, and Blood Institute (NHLBI). Here, he has been instrumental in discovering novel bioactive dietary omega-3, omega-7, and omega-11 fatty acids, shedding light on their potential impact on cardiometabolic and retinal health. His role also involves translating basic scientific discoveries into clinical trials, bridging the gap between bench and bedside.
Contributions and Research Focus In Fisheries subsidies
His research focus encompasses a wide range of disciplines, including chemistry, biochemistry, molecular and cellular biology, and animal models and biology. His groundbreaking studies have revealed a novel link between new species of dietary omega fatty acids and their effects on metabolic pathways in the liver and retina. Through meticulous experimentation and analysis, he has advanced our understanding of the role of dietary lipids in human health and disease.
Accolades and Recognition
Throughout his career, He has received numerous accolades and recognition for his outstanding contributions to the field of marine lipid science. He has been awarded prestigious grants, including the NIH Office of Dietary Supplements (ODS) Scholar Program, underscoring the significance of his research endeavors. Moreover, his publications have garnered widespread acclaim, with a high number of citations and an impressive H index.
Impact and Influence
His research has had a profound impact on the scientific community, shaping our understanding of dietary lipids and their implications for human health. His findings have not only expanded the boundaries of scientific knowledge but also paved the way for translational applications, potentially revolutionizing clinical practice. Through his leadership and expertise, He has inspired fellow scientists and catalyzed further exploration into the therapeutic potential of marine-derived compounds.
Legacy and Future Contributions
As a leading marine lipid scientist, His legacy is defined by his unwavering commitment to excellence and innovation. He continues to push the boundaries of scientific inquiry, leveraging emerging technologies and interdisciplinary collaborations to address pressing health challenges. Looking ahead, He remains dedicated to advancing scientific knowledge and making meaningful contributions to the field of marine lipid science, leaving an indelible mark on the scientific landscape for generations to come.
Citations
Citations 1800
h-index 22
i10-index 26
- Chronic administration of palmitoleic acid reduces insulin resistance and hepatic lipid accumulation in KK-Ay Mice with genetic type 2 diabetes
- Diet high in fat and sucrose induces rapid onset of obesity-related metabolic syndrome partly through rapid response of genes involved in lipogenesis, insulin signalling and …
- COVID‐19—Associated dyslipidemia: Implications for mechanism of impaired resolution and novel therapeutic approaches
- Hyaluronic acid and its derivative as a multi-functional gene expression enhancer: protection from non-specific interactions, adhesion to targeted cells, and transcriptional …
- Myeloid-specific deletion of peptidylarginine deiminase 4 mitigates atherosclerosis