Polygonatum cyrtonema Hua Polysaccharide Alleviates Fatigue by Modulating Osteocalcin-Mediated Crosstalk between Bones and Muscles

骨钙素 内分泌学 内科学 运行x2 化学 骨桥蛋白 骨重建 细胞生物学 体外 生物 成骨细胞 生物化学 医学 碱性磷酸酶
作者
Xueying Li,Chao‐Li Jiang,Chao Zheng,Cheng-Zhi Hong,Li‐Hua Pan,Qiang-Ming Li,Jian‐Ping Luo,Xue‐Qiang Zha
出处
期刊:Journal of Agricultural and Food Chemistry [American Chemical Society]
卷期号:71 (16): 6468-6479 被引量:34
标识
DOI:10.1021/acs.jafc.2c08192
摘要

Osteocalcin was reported to regulate muscle energy metabolism, thus fighting fatigue during exercise. The current work aimed to investigate the anti-fatigue effect and the underlying mechanism of a homogeneous polysaccharide (PCPY-1) from Polgonatum cyrtonema after structure characterization. In the exhaustive swimming mouse model and the co-culture system of BMSCs/C2C12 cells, PCPY-1 significantly stimulated BMSC differentiation into osteoblasts as determined by ALP activity, matrix mineralization, and the protein expressions of osteogenic markers BMP-2, phosphor-Smad1, RUNX2, and osteocalcin. Meanwhile, PCPY-1 remarkably enhanced myoblast energy metabolism by upregulating osteocalcin release and GPRC6A protein expression; the phosphorylation levels of CREB and HSL; the mRNA levels of GLUT4, CD36, FATP1, and CPT1B; and ATP production in vitro and in vivo. Accordingly, PCPY-1 exhibited good anti-fatigue capacity in mice as confirmed by fatigue-related indicators. Our findings indicated PCPY-1 could enhance osteocalcin-mediated communication between bones and muscles, which was conducive to muscle energy metabolism and ATP generation, thus alleviating fatigue in exhausted swimming mice.
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