Gastric inhibitory polypeptide receptor antagonism suppresses intramuscular adipose tissue accumulation and ameliorates sarcopenia

Author:

Takahashi Yuya1,Fujita Hiroki1ORCID,Seino Yusuke23,Hattori Satoko4,Hidaka Shihomi2,Miyakawa Tsuyoshi4,Suzuki Atsushi2,Waki Hironori1,Yabe Daisuke356,Seino Yutaka37,Yamada Yuichiro37

Affiliation:

1. Department of Metabolism and Endocrinology Akita University Graduate School of Medicine Akita Japan

2. Department of Endocrinology, Diabetes and Metabolism Fujita Health University Toyoake Japan

3. Yutaka Seino Distinguished Center for Diabetes Research Kansai Electric Power Medical Research Institute Kyoto Japan

4. Division of Systems Medical Science, Center for Medical Science Fujita Health University Toyoake Japan

5. Department of Diabetes, Endocrinology and Metabolism/Department of Rheumatology and Clinical Immunology Gifu University Graduate School of Medicine Gifu Japan

6. Center for One Medicine Innovative Translational Research Gifu University Gifu Japan

7. Center for Diabetes, Endocrinology and Metabolism Kansai Electric Power Hospital Osaka Japan

Abstract

AbstractBackgroundIntramuscular adipose tissue (IMAT) formation derived from muscle fibro‐adipogenic progenitors (FAPs) has been recognized as a pathological feature of sarcopenia. This study aimed to explore whether genetic and pharmacological gastric inhibitory polypeptide (GIP) receptor antagonism suppresses IMAT accumulation and ameliorates sarcopenia in mice.MethodsWhole body composition, grip strength, skeletal muscle weight, tibialis anterior (TA) muscle fibre cross‐sectional area (CSA) and TA muscle IMAT area were measured in young and aged male C57BL/6 strain GIP receptor (Gipr)‐knockout (Gipr−/−) and wild‐type (Gipr+/+) mice. FAPs isolated from lower limb muscles of 12‐week‐old Gipr+/+ mice were cultured with GIP, and their differentiation into mature adipocytes was examined. Furthermore, TA muscle IMAT area and fibre CSA were measured in untreated Gipr−/− mice and GIP receptor antagonist‐treated Gipr+/+ mice after glycerol injection into the TA muscles.ResultsBody composition analysis revealed that 104‐week‐old Gipr−/− mice had a greater proportion of lean tissue mass (73.7 ± 1.2% vs. 66.5 ± 2.7%, P < 0.05 vs. 104‐week‐old Gipr+/+ mice) and less adipose tissue mass (13.1 ± 1.3% vs. 19.4 ± 2.6%, P < 0.05 vs. 104‐week‐old Gipr+/+ mice). Eighty‐four‐week‐old Gipr−/− mice exhibited increases in grip strength (P < 0.05), weights of TA (P < 0.05), soleus (P < 0.01), gastrocnemius (P < 0.05) and quadriceps femoris (P < 0.01) muscles, and average TA muscle fibre CSA (P < 0.05) along with a reduction in TA muscle IMAT area assessed by the number of perilipin‐positive cells (P < 0.0001) compared with 84‐week‐old Gipr+/+ mice. Oil Red O staining analysis revealed 1.6‐ and 1.7‐fold increased adipogenesis in muscle FAPs cultured with 10 and 100 nM of GIP (P < 0.01 and P < 0.001 vs. 0 nM of GIP, respectively). Furthermore, both untreated Gipr−/− mice and GIP receptor antagonist‐treated Gipr+/+ mice for 14 days after glycerol injection into the TA muscles at 12 weeks of age showed reduced TA muscle IMAT area (1.39 ± 0.38% and 2.65 ± 0.36% vs. 6.54 ± 1.30%, P < 0.001 and P < 0.01 vs. untreated Gipr+/+ mice, respectively) and increased average TA muscle fibre CSA (P < 0.01 and P < 0.05 vs. untreated Gipr+/+ mice, respectively).ConclusionsGIP promotes the differentiation of muscle FAPs into adipocytes and its receptor antagonism suppresses IMAT accumulation and promotes muscle regeneration. Pharmacological GIP receptor antagonism may serve as a novel therapeutic approach for sarcopenia.

Funder

Japan Agency for Medical Research and Development

Suzuken Memorial Foundation

Japan Society for the Promotion of Science

Publisher

Wiley

Subject

Physiology (medical),Orthopedics and Sports Medicine

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