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首页> 外文期刊>American Journal of Physiology >Short-term high-fat feeding induces islet macrophage infiltration and beta-cell replication independently of insulin resistance in mice
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Short-term high-fat feeding induces islet macrophage infiltration and beta-cell replication independently of insulin resistance in mice

机译:短期高脂肪饲料诱导胰岛巨噬细胞渗透和β细胞复制,独立于小鼠胰岛素抗性

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Short-term high-fat consumption stimulates mouse islet beta-cell replication through unknown mechanisms. Resident macrophages (МФs) are capable of secreting various factors involved in islet development and tissue remodeling. We hypothesized that a short-term high-fat diet (HFD) promotes МФ infiltration in pancreatic islets and that MФs serve as a regulator of beta-cell replication. To test these hypotheses and dissect mechanisms involved in HFD-induced beta-cell replication, adult C57BL/6J mice were fed a HFD for 7 days with or without administration of clodronate-containing liposomes, an MФ-depleting agent. Mouse body and epididymal fat pad weights, and nonfasting blood glucose and fasting serum insulin levels were measured, and pancreatic islet beta-cell replication, oxidative stress, and МФ infiltration were examined. Short-term HFD promoted an increase in body and epididymal fat pad weight and blood glucose levels, along with an increased fasting serum insulin concentration. beta-Cell replication, islet МФ infiltration, and the percentage of inducible NO synthase positive MФs in the islets increased significantly in mice fed the HFD. Immunofluorescence staining for 8-oxo-2'-deoxyguanosine or activated caspase-3 revealed no significant induction of DNA damage or apoptosis, respectively. In addition, no change in stromal-derived factor 1-expressing cells was found induced by HFD. Despite continuous elevation of nonfasting blood glucose and fasting serum insulin levels, depletion of MФs through treatments of clodronate abrogated HFD-induced beta-cell replication. These findings demonstrated that HFD-induced МФ infiltration is responsible for beta-cell replication. This study suggests the existence of МФ-mediated mechanisms in beta-cell replication that are independent of insulin resistance.
机译:短期高脂肪消耗通过未知机制刺激小鼠胰岛β细胞复制。常规巨噬细胞(МФs)能够分泌涉及胰岛发育和组织重塑的各种因素。我们假设短期高脂饮食(HFD)促进胰岛中的Мф浸润,并且MoФ作为β细胞复制的调节剂。为了测试这些假设和涉及HFD诱导的β细胞复制的解剖机制,将成人C57BL / 6J小鼠用或不施用含Clodronate的脂质体,MoP耗尽剂进料HFD 7天。测量小鼠体和附睾脂肪垫重量,并测量无快速的血糖和禁食血清胰岛素水平,并检查胰岛胰岛β细胞复制,氧化应激和мф浸润。短期HFD促进了身体和附睾脂肪垫重量和血糖水平的增加,以及禁食血清胰岛素浓度增加。饲喂HFD小鼠的β细胞复制,胰岛мф渗透和诱导型没有合酶阳性M百分比的百分比显着增加。 8-氧代-2'-脱氧核苷酸或活性Caspase-3的免疫荧光染色显示,分别没有显着诱导DNA损伤或凋亡。此外,发现由HFD诱导的基质衍生因子1表达细胞的变化。尽管持续高度血糖和禁食血清胰岛素水平,但通过治疗克莱膦酸盐废除HFD诱导的β细胞复制耗尽。这些研究结果表明,HFD诱导的Мф浸润负责β细胞复制。本研究表明,存在于β细胞复制中的МФ介导机制,其与胰岛素抵抗无关。

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