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首页> 外文期刊>Molecular Metabolism >Maternal high-fat diet exaggerates diet-induced insulin resistance in adult offspring by enhancing inflammasome activation through noncanonical pathway of caspase-11
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Maternal high-fat diet exaggerates diet-induced insulin resistance in adult offspring by enhancing inflammasome activation through noncanonical pathway of caspase-11

机译:母体高脂饮食通过Caspase-11的非甘露糖途径提高炎症激活来夸大成人后代的饮食诱导的胰岛素抵抗力

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Objective Maternal high-fat diet (HFD) has been shown to promote the development of insulin resistance (IR) in adult offspring; however, the underlying mechanisms remain unclear. Methods Eight-week-old female wild-type mice (C57BL/6) were fed either an HFD or a normal diet (ND), one week prior to mating, and the diet was continued throughout gestation and lactation. Eight-week-old male offspring of both groups were fed an HFD for 8 weeks. Results Offspring of HFD-fed dams (O-HFD) exhibited significantly impaired insulin sensitivity compared with the offspring of ND-fed dams (O-ND). The adipocyte size of the eWAT increased significantly in O-HFD and was accompanied by abundant crown-like structures (CLSs), as well as a higher concentration of interleukin 1β (IL-1β) in the eWAT. Treatment with an inflammasome inhibitor, MCC950, completely abrogated the enhanced IR in O-HFD. However, ex?vivo caspase-1 activity in eWAT revealed no difference between the two groups. In contrast, noncanonical inflammasome activation of caspase-11 was significantly augmented in O-HFD compared with O-ND, suggesting that membrane pore formation, but not cleavage of pro-IL-1β by caspase-1, is augmented in O-HFD. To examine the membrane pore formation, we performed metabolic activation of bone marrow-derived macrophages (BMDMs). The percentage of pore formation assessed by ethidium bromide staining was significantly higher in BMDMs of O-HFD, accompanied by an enhanced active caspase-11 expression. Consistently, the concentration of IL-1β in culture supernatants was significantly higher in the BMDMs from O-HFD than those from O-ND. Conclusions These findings demonstrate that maternal HFD exaggerates diet-induced IR in adult offspring by enhancing noncanonical caspase-11-mediated inflammasome activation.
机译:目的母体高脂饮食(HFD)已被证明促进成人后代胰岛素抵抗(IR)的发展;但是,潜在机制仍然不清楚。方法在交配前一周内喂养8周龄雌性野生型小鼠(C57BL / 6),喂养HFD或正常饮食(ND),在妊娠和泌乳中持续饮食。两组八周的男性后代两组都被喂养了8周的HFD。结果HFD喂养坝(O-HFD)的后代与ND-Fed水坝(O-Nd)的后代相比,胰岛素敏感性显着受损。 EWAT的脂肪细胞尺寸在O-HFD中显着增加,并且伴随着丰富的冠状结构(CLS),以及EWAT中的更高浓度的白细胞介素1β(IL-1β)。用炎症抑制剂MCC950治疗,在O-HFD中完全消除了增强的IR。然而,EX?体内Caspase-1活性在eWAT中显示出两组之间没有差异。相比之下,与O-Nd相比,在O-HFD上显着增强了Caspase-11的非甘露出的炎症活化,表明膜孔形成,但是通过Caspase-1的Pro-IL-1β的切割,在O-HFD中增加。为了检查膜孔隙形成,我们进行了骨髓衍生的巨噬细胞(BMDMS)的代谢活化。通过增强的活性半胱天冬酶-11表达,溴化乙锭染色评估的孔形成的孔形成的百分比显着高。始终如一地,培养上清液中IL-1β的浓度在O-HFD的BMDM中显着高于O-Nd。结论这些研究结果表明,母体HFD通过增强非碳胱天冬酶-11介导的炎性炎症体活化来夸大成人后代中的饮食诱导的IR。

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