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羟基红花黄色素 A 通过激活心肌细胞中的 PPARδ 通路来改变燃料选择,从葡萄糖转向脂肪。

Hydroxysafflor Yellow A Alters Fuel Selection From Glucose to Fat by Activating the PPARδ Pathway in Myocytes.

机构信息

State Key Laboratory of Food Science and Technology, School of Food Science and Technology, Jiangnan University, Wuxi 214122, China.

COFCO Aerocean Oils & Grain Industrial Co., Ltd, Shawan, NO.1 West Park Road, West Urumqi Road, Shawan County, Tacheng District, Xinjiang Province 832100, China.

出版信息

J Agric Food Chem. 2021 Nov 24;69(46):13838-13848. doi: 10.1021/acs.jafc.1c06034. Epub 2021 Nov 10.

Abstract

Modulation of fuel selection is critical in skeletal muscle function. Hydroxysafflor yellow A (HSYA) is the major bioactive component in safflower ( L.) and, in our previous study, has been demonstrated to promote a shift from fast to slow myofiber. However, the effects of HSYA on fuel selection in skeletal muscle and its underlying mechanisms remain unclear. In this study, the in vitro experiments found that water extracts of safflower, rich in HSYA, significantly suppressed the expressions of the genes related to glucose utilization and activated the expressions of the lipolysis genes. Furthermore, HSYA resulted in a shift in substrate utilization toward fat relative to carbohydrates in C2C12 myotubes. Animal tests showed HSYA could significantly reduce the respiratory exchange ratio and prolonge endurance performance in mice and also trigger a switch in intramuscular fuel selection preference from carbohydrates to fat at rest and during exercise. Mechanistic studies revealed that HSYA converted this fuel selection by activating peroxisome proliferator activated receptor δ (PPARδ), and these effects of HSYA could be reversed by specific suppression of PPARδ by PPARδ siRNA. Collectively, our study demonstrated that HSYA can switch substrate utilization from glucose to fat in myocytes by activating PPARδ signaling, resulting in prolonged endurance performance. These findings provided direct evidence for the endurance performance enhancement effect of HSYA and explored new perspectives for the innovation and application of HSYA in the health care industry.

摘要

燃料选择的调节在骨骼肌功能中至关重要。羟基红花黄色素 A(HSYA)是红花(L.)中的主要生物活性成分,在我们之前的研究中已证明其可促进从快肌纤维向慢肌纤维的转变。然而,HSYA 对骨骼肌中燃料选择的影响及其潜在机制仍不清楚。在这项研究中,体外实验发现富含 HSYA 的红花水提取物可显著抑制与葡萄糖利用相关的基因表达,并激活脂肪分解基因的表达。此外,HSYA 导致 C2C12 肌管中底物利用向脂肪而非碳水化合物的转变。动物实验表明,HSYA 可显著降低呼吸交换率并延长小鼠的耐力表现,同时在休息和运动期间引发肌肉内燃料选择偏好从碳水化合物向脂肪的转变。机制研究表明,HSYA 通过激活过氧化物酶体增殖物激活受体 δ(PPARδ)来转换这种燃料选择,而通过 PPARδ siRNA 特异性抑制 PPARδ 可逆转 HSYA 的这些作用。总之,我们的研究表明,HSYA 可以通过激活 PPARδ 信号通路将葡萄糖转化为脂肪,从而使肌细胞的耐力表现延长。这些发现为 HSYA 增强耐力表现的效果提供了直接证据,并为 HSYA 在保健行业的创新和应用探索了新的视角。

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