نقش کانالهای پتاسیم حساس به ATP (KATP) در آسیب ناشی از ایسکمی و برقراری مجدد جریان خون در کلیه موش صحرایی
Authors
Abstract:
The precise mechanism of ischemia reperfusion (IR) injury is not fully understood. Recent studies on Rat myocardium revealed that activation of the K ATP channels inhibits this process. The goal of this study is finding the same effect of K ATP channels on IR injury, in rat kidney. In this study the effects of K ATP agonist (Diazoxide) and K ATP antagonist (Glibenclamide) plus a K ATP independent vasodilator (Hydralazin) on ischemia reperfusion injury examined. Female rats of 200-250 g were anesthesized and used for study. Different doses of Diazoxide (1, 5, 15mg/kg) and Glibenclamid (1, 5, 10mg/kg) and hydralazin (1, 3, 15mg/kg) were used (SC) 120 minutes prior to the initiation of IR. Kidneys were removed and checked histologically for the grading of injury. Diazoxide (5mg/kg) prevented these lesions. Different doses of Glibenclamide and hydralazine failed to prevent IR injury. Diazoxide is also a vasodilator agent but failure of hydralazine to prevent the injury revealed that vasodilation was not the exact mechanism of action of Diazoxide.
similar resources
نقش کانالهای پتاسیم حساس به atp (katp) در آسیب ناشی از ایسکمی و برقراری مجدد جریان خون در کلیه موش صحرایی
آسیب ناشی از ایسکمی و برقراری مجدد جریان خون (ischemia reperfusion injury=ir injury) از جمله مباحثی است که مکانیسم ایجاد آن بطور دقیـق مشخــص نشده است. مطالعات اخیر نشان داده اند که فعال شدن کانالهای k atp، آسیب مذکور را در میوکارد موش صحرایی به خوبی مهار می کند. هدف از این مطالعه بررسی تاثیر کانالهای katp در جریان ir injury در کلیه موش صحرایی نظیر آنچه در میوکارد دیده می شود بوده است.در این مط...
full textاثرات وابسته به دوز سولفیدهیدروژن بر آسیب حاد کلیوی ناشی از ایسکمی-پرفیوژن مجدد کلیه در موش صحرایی
Background: Renal ischemia reperfusion (RIR) injury is a common clinical syndrome that affects renal function and significantly increases morbidity and mortality. Hydrogen sulfide (H2S) is an endogenously gaseous mediator that exhibits many cytoprotective effects. Recently, studies have shown that H2S have opposite effects in different doses. Therefore, in the current study we investigated the ...
full textبررسی آسیب ناشی از ایسکمی و برقراری مجدد خون رسانی عصب
Background and Objective: Ischemia plays a major role in development of pathological changes in various neuropathies. Reperfusion amplifies physiological and pathological abnormalities in ischemic nerves. In this research, we studied ischemic-reperfusion (IR) injury of sciatic nerve up to 14 days of reperfusion. Materials & Methods: IR was produced by ligation and release of nooses around suppl...
full textاثر بربرین در تنظیم آستروسیتهای Gfap+ ناحیه هیپوکمپ موشهای صحرایی دیابتی شده با استرپتوزوتوسین
Background: Diabetes mellitus increases the risk of central nervous system (CNS) disorders such as stroke, seizures, dementia, and cognitive impairment. Berberine, a natural isoquinolne alkaloid, is reported to exhibit beneficial effect in various neurodegenerative and neuropsychiatric disorders. Moreover astrocytes are proving critical for normal CNS function, and alterations in their activity...
full textاثر بربرین در تنظیم آستروسیتهای Gfap+ ناحیه هیپوکمپ موشهای صحرایی دیابتی شده با استرپتوزوتوسین
Background: Diabetes mellitus increases the risk of central nervous system (CNS) disorders such as stroke, seizures, dementia, and cognitive impairment. Berberine, a natural isoquinolne alkaloid, is reported to exhibit beneficial effect in various neurodegenerative and neuropsychiatric disorders. Moreover astrocytes are proving critical for normal CNS function, and alterations in their activity...
full textاثر حفاظتی سیمواستاتین در آسیب ناشی از ایسکمی – رپرفیوژن کلیه و نقش کانالهای پتاسیمی حساس به آدنوزین تری فسفات
Background & Aim: Renal dysfunction due to ischemia-reperfusion (I/R) injury is a common problem following renovascular surgery or kidney transplantation. There is a lot of emerging evidence that statins, which are HMG-COA reductase inhibitors, have renal protective effects against ischemia-reperfusion injury,but the exact mechanism of their protective effect has not been detected properly....
full textMy Resources
Journal title
volume 10 issue 34
pages 195- 201
publication date 2003-09
By following a journal you will be notified via email when a new issue of this journal is published.
No Keywords
Hosted on Doprax cloud platform doprax.com
copyright © 2015-2023