脑缺血再灌注和实验性糖尿病大鼠海马p53 -促凋亡与bcl-2抗凋亡活性的比值。

T M Boychuk, O M Nika, S S Tkachuk
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引用次数: 1

摘要

研究了实验性糖尿病(DM)完全性脑缺血再灌注大鼠海马中pro-和p53- Bcl-2抗凋亡过程指标平衡的动态变化。结果表明,非糖尿病动物在缺血20分钟/ 1小时再灌注后,海马各脑区的p53促凋亡过程被激活,其背景是Bcl-2在CAl、CA2、CA4脑区的抗凋亡过程增加,而在CA3脑区的p53 -抑制。在糖尿病大鼠缺血后早期,CAl、CA3、CA4区p53-促凋亡过程的活性显著高于非糖尿病大鼠(p53- IRM面积分别增加了110%、60%和27%),且显著低于CA2区。缺血后第12天,在惰性抗凋亡过程的背景下,在非糖尿病动物和糖尿病大鼠中,场CAl的凋亡激活发生,但糖尿病大鼠的凋亡活性指标更高(p53蛋白的特异性含量和p53 -IRM的面积分别增加了38%和43%)。在此期间,在非糖尿病动物的CA2区,检测到抗凋亡过程的一些抑制和促凋亡过程的轻微优势。在非糖尿病大鼠的CA3区,显示了促凋亡过程活性的保留和抗凋亡过程抑制动力学的加深。在糖尿病大鼠中,观察到这两种机制都受到抑制,抗凋亡过程明显抑制。在CA4实验第12天,非糖尿病大鼠和糖尿病大鼠的平行和单向变化过程之间的关系最为平衡,结果表明糖尿病对海马缺血再灌注损伤易感性的调节作用。
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THE RATIO OF P53-PROAPOPTOTIC AND BCL-2 ANTIAPOPTOTIC ACTIVITY IN THE HIPPOCAMPUS OF RATS WITH BRAIN ISCHEMIA-REPERFUSION AND EXPERIMENTAL DIABETES.

The dynamics of the balance of indices of pro- and p53- Bcl-2 anti-apoptotic processes in the hippocampus of rats with experimental diabetes mellitus (DM) complicated by incomplete global cerebral ischemia-reperfusion was investigated. It is shown that p53 proapoptotic processes in animals without diabetes after 20 minutes of ischemia/l hour reperfusion in all fields of the hippocampus are activated in the background of increasing Bcl-2 antiapoptotic processes in the fields CAl, CA2, CA4 and depression of it - in the CA3 field. In the early postischemic period in rats with DM activity of the p53-proapoptotic processes in fields CAl, CA3, CA4 significantly exceeds that in non-diabetic rats (area of p53- IRM increases on 110, 60 and 27 %), and was significantly lower than that detected in CA2 field. On the 12th day of post-ischemic period, activation of apoptosis in field CAl occurs in the background of inert antiapoptotic processes, in animals without diabetes, as well as in diabetic rats, but the indicators characterizing of apoptotic activity in rats with diabetes were higher (specific contents of p53 protein and area ofp53 -IRM increases on 38 and 43 %). During this period, in the CA2 region of the non-diabetic animals, some depression of the antiapoptotic processes with a slight predominance of proapoptotic processes was detected. In the field of CA3 region of rats without diabetes, the retention of activity of proapoptotic processes and the deepening in the dynamics of depression of antiapoptotic processes were showed. In rats with DM, the oppression of both mechanisms with a significant depression of antiapoptotic processes was observed. On the 12th day of experiment in the field CA4, the most balanced relationship were detected between the studied of the processes due to their parallel and unidirectional changes both in the rats without diabetes as well as with DM. The results point on the modifying effect ofDM on susceptibility ofhippocampal fields to ischemic-reperfusion injury.

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