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Loss of Sodium/Hydrogen Exchanger NHA2 Exacerbates Obesity- and Aging-Induced Glucose Intolerance in Mice.

机译:钠/氢交换剂NHA2的损失加剧了肥胖和衰老引起的小鼠对葡萄糖的不耐受性。

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摘要

We previously demonstrated that the sodium/hydrogen exchanger NHA2, also known as NHEDC2 or SLC9B2, is critical for insulin secretion by β-cells. To gain more insights into the role of NHA2 on systemic glucose homeostasis, we studied the impact of loss of NHA2 during the physiological aging process and in the setting of diet-induced obesity. While glucose tolerance was normal at 2 months of age, NHA2 KO mice displayed a significant glucose intolerance at 5 and 12 months of age, respectively. An obesogenic high fat diet further exacerbated the glucose intolerance of NHA2 KO mice. Insulin levels remained similar in NHA2 KO and WT mice during aging and high fat diet, but fasting insulin/glucose ratios were significantly lower in NHA2 KO mice. Peripheral insulin sensitivity, measured by insulin tolerance tests and hyperinsulinemic euglycemic clamps, was unaffected by loss of NHA2 during aging and high fat diet. High fat diet diminished insulin secretion capacity in both WT and NHA2 KO islets and reduced expression of NHA2 in WT islets. In contrast, aging was characterized by a gradual increase of NHA2 expression in islets, paralleled by an increasing difference in insulin secretion between WT and NHA2 KO islets. In summary, our results demonstrate that loss of the sodium/hydrogen exchanger NHA2 exacerbates obesity- and aging-induced glucose intolerance in mice. Furthermore, our data reveal a close link between NHA2 expression and insulin secretion capacity in islets.
机译:我们先前证明,钠/氢交换剂NHA2(也称为NHEDC2或SLC9B2)对于β细胞分泌胰岛素至关重要。为了更深入地了解NHA2在系统性葡萄糖体内稳态中的作用,我们研究了生理老化过程中和饮食引起的肥胖中NHA2丢失的影响。虽然葡萄糖耐量在2个月大时是正常的,但NHA2 KO小鼠分别在5个月和12个月大时表现出明显的葡萄糖不耐性。致肥胖的高脂饮食进一步加剧了NHA2 KO小鼠的葡萄糖耐受不良。在衰老和高脂饮食中,NHA2 KO和WT小鼠的胰岛素水平仍然相似,但NHA2 KO小鼠的空腹胰岛素/葡萄糖比率却明显降低。通过胰岛素耐受性测试和高胰岛素正常血糖钳夹测量的外周胰岛素敏感性不受衰老和高脂饮食过程中NHA2损失的影响。高脂饮食减少了野生型和NHA2 KO胰岛中的胰岛素分泌能力,减少了野生型NHT2在胰岛中的表达。相反,衰老的特征是胰岛中NHA2表达的逐渐增加,与此同时,WT和NHA2 KO胰岛之间的胰岛素分泌差异也越来越大。总而言之,我们的研究结果表明,钠/氢交换剂NHA2的丧失会加剧肥胖和衰老引起的小鼠葡萄糖不耐症。此外,我们的数据揭示了NHA2表达与胰岛中胰岛素分泌能力之间的紧密联系。

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