Suppr超能文献

酸敏离子通道阻断减轻治疗糖尿病大鼠反复低血糖诱导的缺血性脑损伤增强。

Blockade of Acid-Sensing Ion Channels Attenuates Recurrent Hypoglycemia-Induced Potentiation of Ischemic Brain Damage in Treated Diabetic Rats.

机构信息

Peritz Scheinberg Cerebral Vascular Disease Research Laboratories, University of Miami Miller School of Medicine, Miami, FL, 33136, USA.

Department of Neurology (D4-5), University of Miami Miller School of Medicine, 1420 NW 9th Ave, NRB / 203E, Miami, FL, 33136, USA.

出版信息

Neuromolecular Med. 2019 Dec;21(4):454-466. doi: 10.1007/s12017-019-08546-6. Epub 2019 May 27.

Abstract

Diabetes is a chronic metabolic disease and cerebral ischemia is a serious complication of diabetes. Anti-diabetic therapy mitigates this complication but increases the risk of exposure to recurrent hypoglycemia (RH). We showed previously that RH exposure increases ischemic brain damage in insulin-treated diabetic (ITD) rats. The present study evaluated the hypothesis that increased intra-ischemic acidosis in RH-exposed ITD rats leads to pronounced post-ischemic hypoperfusion via activation of acid-sensing (proton-gated) ion channels (ASICs). Streptozotocin-diabetic rats treated with insulin were considered ITD rats. ITD rats were exposed to RH for 5 days and were randomized into Psalmotoxin1 (PcTx1, ASIC1a inhibitor), APETx2 (ASIC3 inhibitor), or vehicle groups. Transient global cerebral ischemia was induced overnight after RH. Cerebral blood flow was measured using laser Doppler flowmetry. Ischemic brain injury in hippocampus was evaluated using histopathology. Post-ischemic hypoperfusion in RH-exposed rats was of greater extent than that in control rats. Inhibition of ASICs prevented RH-induced increase in the extent of post-ischemic hypoperfusion and ischemic brain injury. Since ASIC activation-induced store-operated calcium entry (SOCE) plays a role in vascular tone, next we tested if acidosis activates SOCE via activating ASICs in vascular smooth muscle cells (VSMCs). We observed that SOCE in VSMCs at lower pH is ASIC3 dependent. The results show the role of ASIC in post-ischemic hypoperfusion and increased ischemic damage in RH-exposed ITD rats. Understanding the pathways mediating exacerbated ischemic brain injury in RH-exposed ITD rats may help lower diabetic aggravation of ischemic brain damage.

摘要

糖尿病是一种慢性代谢疾病,脑缺血是糖尿病的严重并发症。抗糖尿病治疗可以减轻这种并发症,但会增加反复低血糖(RH)暴露的风险。我们之前表明,RH 暴露会增加胰岛素治疗的糖尿病(ITD)大鼠的缺血性脑损伤。本研究评估了以下假设,即在 RH 暴露的 ITD 大鼠中,增加的缺血性酸中毒会通过激活酸感应(质子门控)离子通道(ASICs)导致明显的缺血后低灌注。用胰岛素治疗的链脲佐菌素糖尿病大鼠被认为是 ITD 大鼠。ITD 大鼠接受 RH 治疗 5 天,并随机分为 Psalmotoxin1(PcTx1,ASIC1a 抑制剂)、APETx2(ASIC3 抑制剂)或载体组。RH 后过夜诱导短暂全脑缺血。使用激光多普勒血流仪测量脑血流。使用组织病理学评估海马缺血性脑损伤。RH 暴露大鼠的缺血后低灌注程度大于对照大鼠。ASICs 的抑制可防止 RH 诱导的缺血后低灌注和缺血性脑损伤程度增加。由于 ASIC 激活诱导的储存操作钙内流(SOCE)在血管张力中起作用,因此我们接下来测试酸中毒是否通过激活血管平滑肌细胞(VSMCs)中的 ASIC 来激活 SOCE。我们观察到,在较低 pH 值下,VSMCs 中的 SOCE 依赖于 ASIC3。结果表明 ASIC 在 RH 暴露的 ITD 大鼠缺血后低灌注和缺血性损伤增加中的作用。了解介导 RH 暴露的 ITD 大鼠加重缺血性脑损伤的途径可能有助于降低糖尿病对缺血性脑损伤的加重。

相似文献

本文引用的文献

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验