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Citations to this article

PAHSAs enhance hepatic and systemic insulin sensitivity through direct and indirect mechanisms
Peng Zhou, … , Dionicio Siegel, Barbara B. Kahn
Peng Zhou, … , Dionicio Siegel, Barbara B. Kahn
Published August 26, 2019
Citation Information: J Clin Invest. 2019;129(10):4138-4150. https://doi.org/10.1172/JCI127092.
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Research Article Endocrinology Metabolism Article has an altmetric score of 10

PAHSAs enhance hepatic and systemic insulin sensitivity through direct and indirect mechanisms

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Abstract

Palmitic acid esters of hydroxy stearic acids (PAHSAs) are bioactive lipids with antiinflammatory and antidiabetic effects. PAHSAs reduce ambient glycemia and improve glucose tolerance and insulin sensitivity in insulin-resistant aged chow- and high-fat diet–fed (HFD-fed) mice. Here, we aimed to determine the mechanisms by which PAHSAs improve insulin sensitivity. Both acute and chronic PAHSA treatment enhanced the action of insulin to suppress endogenous glucose production (EGP) in chow- and HFD-fed mice. Moreover, chronic PAHSA treatment augmented insulin-stimulated glucose uptake in glycolytic muscle and heart in HFD-fed mice. The mechanisms by which PAHSAs enhanced hepatic insulin sensitivity included direct and indirect actions involving intertissue communication between adipose tissue and liver. PAHSAs inhibited lipolysis directly in WAT explants and enhanced the action of insulin to suppress lipolysis during the clamp in vivo. Preventing the reduction of free fatty acids during the clamp with Intralipid infusion reduced PAHSAs’ effects on EGP in HFD-fed mice but not in chow-fed mice. Direct hepatic actions of PAHSAs may also be important, as PAHSAs inhibited basal and glucagon-stimulated EGP directly in isolated hepatocytes through a cAMP-dependent pathway involving Gαi protein–coupled receptors. Thus, this study advances our understanding of PAHSA biology and the physiologic mechanisms by which PAHSAs exert beneficial metabolic effects.

Authors

Peng Zhou, Anna Santoro, Odile D. Peroni, Andrew T. Nelson, Alan Saghatelian, Dionicio Siegel, Barbara B. Kahn

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 Total
Citations: 8 9 5 10 11 9 2 54
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article in year 2021 (11)

Title and authors Publication Year
The Insulin Centennial—100 years of milestones in biochemistry
AD Attie, QQ Tang, KE Bornfeldt
The Journal of biological chemistry 2021
The Insulin Centennial—100 years of milestones in biochemistry
AD Attie, QQ Tang, KE Bornfeldt
Journal of lipid research 2021
A novel palmitic acid hydroxy stearic acid (5‐PAHSA) plays a neuroprotective role by inhibiting phosphorylation of the m‐TOR‐ULK1 pathway and regulating autophagy
J Wang, Z Yu, Y Tao, Y Liu, Y Wang, Q Guo, J Xue, X Wen, Q Zhang, X Xu, C He, W Xue, J Guo, H Zhou
CNS Neuroscience & Therapeutics 2021
Lipid metabolism in sickness and in health: Emerging regulators of lipotoxicity
H Yoon, JL Shaw, MC Haigis, A Greka
Molecular Cell 2021
Lipid and glucose metabolism in white adipocytes: pathways, dysfunction and therapeutics
P Morigny, J Boucher, P Arner, D Langin
Nature Reviews Endocrinology 2021
Insulin action in adipocytes, adipose remodeling, and systemic effects
A Santoro, TE McGraw, BB Kahn
Cell Metabolism 2021
The Roles of Carbohydrate Response Element Binding Protein in the Relationship between Carbohydrate Intake and Diseases
K Iizuka
International journal of molecular sciences 2021
Sympathetic Innervation of White Adipose Tissue: to Beige or Not to Beige?
H Münzberg, E Floyd, JS Chang
Physiology (Bethesda, Md.) 2021
Distinct Biological Activities of Isomers from Different Families of Branched Fatty Acid Esters of Hydroxy Fatty Acids (FAHFAs)
P Aryal, I Syed, J Lee, R Patel, AT Nelson, D Siegel, A Saghatelian, BB Kahn
Journal of lipid research 2021
Fatty Acid Esters of Hydroxy Fatty Acids (FAHFAs) Are Associated With Diet, BMI, and Age
T Kellerer, K Kleigrewe, B Brandl, T Hofmann, H Hauner, T Skurk
Frontiers in Nutrition 2021
Docosahexaenoic Acid Esters of Hydroxy Fatty Acid Is a Novel Activator of NRF2
SG Gowda, T Tsukui, H Fuda, Y Minami, D Gowda, H Chiba, SP Hui
International journal of molecular sciences 2021

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