首页> 外文期刊>American Journal of Physiology >CD44 contributes to hyaluronan-mediated insulin resistance in skeletal muscle of high-fat-fed C57BL/6 mice.
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CD44 contributes to hyaluronan-mediated insulin resistance in skeletal muscle of high-fat-fed C57BL/6 mice.

机译:CD44有助于高脂肪喂养C57BL / 6小鼠的骨骼肌中透明质植物介导的胰岛素抵抗力。

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摘要

Extracellular matrix hyalu-ronan is increased in skeletal muscle of high-fat-fed insulin-resistant mice, and reduction of hyaluronan by PEGPH20 hyaluronidase ameliorates diet-induced insulin resistance (IR). CD44, the main hyaluronan receptor, is positively correlated with type 2 diabetes. This study determines the role of CD44 in skeletal muscle IR. Global CD44-deficient (cd44-/-) mice and wild-type littermates (cd44+/+) were fed a chow diet or 60% high-fat diet for 16 wk. High-fat-fed cd44-/- mice were also treated with PEGPH20 to evaluate its CD44-dependent action. Insulin sensitivity was measured by hyper-insulinemic-euglycemic clamp (ICv). High-fat feeding increased muscle CD44 protein expression. In the absence of differences in body weight and composition, despite lower clamp insulin during ICv, the cd44-/- mice had sustained glucose infusion rate (GIR) regardless of diet. High-fat diet-induced muscle IR as evidenced by decreased muscle glucose uptake (Rg) was exhibited in cd44+/+ mice but absent in cd44-/- mice. Moreover, gastrocnemius Rg remained unchanged between genotypes on chow diet but was increased in high-fat-fed cd44-/- compared with cd44+/+ when normalized to clamp insulin concentrations. Ameliorated muscle IR in high-fat-fed cd44-/- mice was associated with increased vascularization. In contrast to previously observed increases in wild-type mice, PEGPH20 treatment in high-fat-fed cd44-/- mice did not change GIR or muscle Rg during ICv, suggesting a CD44-dependent action. In conclusion, genetic CD44 deletion improves muscle IR, and the beneficial effects of PEGPH20 are CD44-dependent. These results suggest a critical role ol CD44 in promoting hyaluronan-mediated muscle IR, therefore representing a potential therapeutic target for diabetes.
机译:细胞外基质Hyalu-Ronan在高脂喂养胰岛素抗性小鼠的骨骼肌中增加,并通过PEGPH20透明质酸酶的透明质酸的还原改善饮食诱导的胰岛素抵抗(IR)。 CD44是主要的透明质酸受体,与2型糖尿病呈正相关。本研究决定了CD44在骨骼肌中的作用。全局CD44缺陷(CD44 - / - )小鼠和野生型凋落物(CD44 + / +)喂养味道饮食或60%的高脂饮食16周。还用PEGPH20处理高脂喂养的CD44 - / - 小鼠以评估其CD44依赖性作用。通过超胰岛素 - Euglycexclamp(ICV)测量胰岛素敏感性。高脂肪饲料增加肌肉CD44蛋白表达。在没有体重和组成的差异的情况下,尽管ICV期间夹层胰岛素较低,但无论饮食如何,CD44 - / - 小鼠持续葡萄糖输注速率(GIR)。在CD44 + / +小鼠中,在CD44 + / +小鼠中展示了高脂肪饮食诱导的肌肉IR,但在CD44 + / +小鼠中表现出缺席。此外,腓肠肌RG在味道饮食中的基因型之间保持不变,但在高脂肪的CD44中增加,与CD44 + / +相比,当归一化以夹紧胰岛素浓度时。高脂肪喂养CD44 - / - 小鼠的改善肌肉IR与血管化增加有关。与先前观察到的野生型小鼠的增加,高脂肪喂养的CD44 - / - 小鼠中的PEGPH20处理在ICV期间没有改变GIR或肌肉RG,表明CD44依赖性作用。总之,遗传CD44缺失改善了肌肉IR,PEGPH20的有益作用是CD44依赖性。这些结果表明了促进透明质酸介导的肌肉IR的关键作用OL CD44,因此代表糖尿病的潜在治疗靶标。

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