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Tiangang Li, PhD
Physiology

Tiangang Li, PhD

Professor of Physiology

Harold Hamm Chair for Adult Diabetes Research

Member, Harold Hamm Diabetes Center

405-271-8000, Ext: 36007

tiangang-li@ouhsc.edu


Diabetes and non-alcoholic fatty liver disease (NAFLD) are closely associated with hepatic fat and cholesterol accumulation, hepatocyte organelle dysfunction, low grade inflammation, and dyslipidemia. Patients with diabetes and NAFLD have significantly higher risk of cardiovascular disease, which remains the leading cause of death worldwide. Bile acids are synthesized from cholesterol only in the liver. Hepatic bile acid synthesis is the only major cholesterol catabolic elimination mechanism in the body, and bile acids act as physiological detergents to facilitate dietary lipid and fat-soluble vitamin absorption in the small intestine. Furthermore, bile acids are signaling molecules that critically regulate metabolic homeostasis and inflammatory response by activating nuclear receptors and intracellular signaling pathways. Different therapeutic approaches targeting the bile acid signaling pathways have shown great promise for treating metabolic and chronic liver diseases including cholestasis, dyslipidemia, diabetes, and fatty liver disease. A major focus of the lab is to investigate how modulating the enterohepatic bile acid signaling impacts the complex metabolic network via distinct mechanism of actions. Through these studies, we hope to better understand the pathophysiological function of bile acids and to help establish the molecular basis for developing effective bile acid-based therapies. Current ongoing projects include:

  1. Bile acid signaling crosstalk with Transcriptional Factor EB (TFEB), a nutrient sensing master regulator of lysosomal biogenesis and autophagy, in the regulation of cholesterol and bile acid metabolism.
  2. Bile acid regulation of amino acid metabolism in control of hepatic glucose metabolism, insulin sensitivity and obesity development.
  3. Pharmacological modulation of hepatic insulin resistance in fatty liver disease.
  4. Bile acid signaling in aging-associated hepatic oxidative stress and drug-induced liver injury.

We address these questions by employing experimental mouse models through viral vector-mediated liver-specific gene delivery, tissue-specific genetic knockout, and pharmacological treatment approaches and a combination of physiological, molecular cell biology techniques and unbiased transcriptomics and metabolomics approaches.


Education:

  • PhD, Kent State University, Ohio, US
  • Postdoc, Northeast Ohio Medical University, Ohio, US


Clinical/Research Interests:

  • Cholesterol and bile acid signaling in metabolic diseases
  • Regulation of insulin sensitivity in Type-II diabetes
  • Mechanisms of liver injury


Select Publications:

  1. Mohammad Nazmul Hasan, Jianglei Chen, Huaiwen Wang, Yanhong Du, Yung Dai Clayton, Lijie Gu, Tiangang Li. Glycine-β-Muricholic Acid Improves Liver Fibrosis and Gut Barrier Function by Reducing Bile Acid Pool Size and Hydrophobicity in Male Cyp2c70 Knockout Mice. Cells. (2023) May 12;12(10):1371.  doi: 10.3390/cells12101371. PMID: 37408204; PMCID: PMC10216635

  2. Mohammad Nazmul Hasan, Jianglei Chen, David Matye, Huaiwen Wang, Wenyi Luo, Lijie Gu, Yung Dai Clayton, Yanhong Du, Tiangang Li. Combining ASBT inhibitor and FGF15 treatments enhances therapeutic efficacy against cholangiopathy in female but not male Cyp2c70 KO mice. J Lipid Res. 2023 Mar;64(3):100340. Doi: 10.1016/j.jlr.2023.100340. Epub 2023 Feb 3. PubMed PMID: 36737039; PubMed Central PMCID: PMC9986646

  3. David Matye, Sumedha Gunewardena, Jianglei Chen, Huaiwen Wang, Yifeng Wang, Mohammad Nazmul Hasan, Lijie Gu, Yung Dai Clayton, Yanhong Du, Cheng Chen, Jacob E Friedman, Shelly C Lu, Wen-Xing Ding, Tiangang Li (2022). TFEB regulates sulfur amino acid and coenzyme A metabolism to support hepatic metabolic adaptation and redox homeostasis. Nature Communications, 13(1), 5696. PMID: 36171419. DOI: 10.1038/s41467-022-33465-9

  4. Cheng Chen, Lijie Gu, David J Matye, Yung-Dai Clayton, Mohammad Nazmul Hasan, Yifeng Wang, Jacob E Friedman, Tiangang Li. Cullin neddylation inhibitor attenuates hyperglycemia by enhancing hepatic insulin signaling through insulin receptor substrate stabilization. Proc Natl Acad Sci U S A. 2022 Feb 8;119(6): e2111737119.  PMID: 35115401

  5. David J. Matye, Huaiwen Wang, Wenyi Luo, Rachel R. Sharp, Cheng Chen, Lijie Gu, Kenneth L. Jones, Wen-Xing Ding, Jacob E. Friedman, Tiangang Li. Combined ASBT inhibitor and FGF15 treatment improve therapeutic efficacy in experimental non-alcoholic steatohepatitis. Cellular and Molecular Gastroenterology and Hepatology (2021) April 26. PMID: 33965587

  6. Yifeng Wang, Sumedha Gunewardena, Feng Li, David J. Matye, Cheng Chen, Xiaojuan Chao, Taeyoon Jung, Yuxia Zhang, Maciej Czerwiński, Hong-Min Ni, Wen-Xing Ding, Tiangang Li. An FGF15/19-TFEB regulatory loop controls hepatic cholesterol and bile acid homeostasis. Nature Communications. (2020) Jul 17;11(1):3612. PMID: 32681035; PMCID: PMC7368063.

  7. Cheng Chen, Jibiao Li, David Matye, Yifeng Wang, Tiangang Li. Hepatocyte Sortilin 1 knockout and treatment with a Sortilin 1 inhibitor reduced plasma cholesterol in Western diet-fed mice. J Lipid Res. (2019) Mar; 60(3):539-549. PMID: 30670473

  8. Yifeng Wang, Jibiao Li, David Matye, Yuxia Zhang, Katie Dennis, Wen-Xing Ding, Tiangang Li. Bile acids regulate cysteine catabolism and glutathione regeneration to modulate hepatic sensitivity to oxidative injury. (2018) JCI Insight. 3(8). PMID: 29669937; PMCID: PMC5931126

  9. Jibiao Li, Yifeng Wang, David J. Matye, Hemantkumar Chavan, Partha Krishnamurthy, Feng Li, Tiangang Li. Sortilin 1 modulates hepatic cholesterol lipotoxicity in mice via functional interaction with liver carboxylesterase 1. J Biol Chem. (2017) 292(1):146-160. PMID: 27881673; PMCID: PMC5217674 (Selected article in the Special Issue: Diabetes, obesity and the metabolic syndrome by JBC, Sept 2019)

  10. Yifeng Wang, Yifeng Ding, Jibiao Li, Hemantkumar Chavan, David Matye, Hong-Min Ni, John YL. Chiang, Partha Krishnamurthy, Wen-Xing Ding, Tiangang Li. Targeting the enterohepatic bile acid signaling induces hepatic autophagy via a CYP7A1 - AKT - mTOR axis in mice. Cell Mol Gastroenterol Hepatol. (2016) 3(2):245-260. PMID: 28275691; PMCID: PMC5331786 (Selected as the Cover story)

Link to Li Publications: https://www.ncbi.nlm.nih.gov/myncbi/tiangang.li.1/bibliography/public/