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Blockade of early and late retinal biochemical alterations associated with diabetes development by the selective bradykinin B 1 receptor antagonist R-954

机译:选择性缓激肽B 1受体拮抗剂R-954阻断与糖尿病发展相关的早期和晚期视网膜生化改变

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The chronic hyperglycemia measured alongside diabetes development is associated with significant long-term damage and failure of various organs. In the present study it was shown that hyperglycemia induced early and long term increases in nitric oxide (NO) levels, kallikrein activity and vascular capillary permeability measured as plasma extravasation, and decreases of Na/K ATPase activity in diabetic rat retina 4 and 12 weeks after streptozotocin (STZ) injection. Treatment of the animals for 5 consecutive days with a novel selective bradykinin B 1 receptor (BKB 1-R) antagonist R-954 (2 mg/kg s.c) at the end of the 4 and 12 week periods highly reduced NO, kallikrein and capillary permeability and increased Na/K ATPase activity in the retina. These results suggest that the BKB 1-R receptor subtype is over-expressed during the streptozotocin-induced development of diabetes in rat retina as evidenced by the inhibitory effects of the BKB 1-R antagonist R-954 on NO, kallikrein and vascular permeability increases as well as Na/K ATPase decreases. The beneficial role of the BKB 1-R antagonist R-954 for the treatment of the diabetic retinopathy is also suggested.
机译:与糖尿病发展同时发生的慢性高血糖与各种器官的长期严重损害和衰竭有关。在本研究中,研究表明,高血糖症可导致糖尿病大鼠视网膜中一氧化氮(NO)水平,激肽释放酶活性和血管毛细血管通透性的早期和长期升高,并通过血浆外渗测定,而Na / K ATPase活性降低注射链脲佐菌素(STZ)后。在第4周和第12周结束时,使用新型选择性缓激肽B 1受体(BKB 1-R)拮抗剂R-954(2 mg / kg sc)连续5天治疗动物,可显着降低NO,激肽释放酶和毛细管透性和视网膜中Na / K ATPase活性增加。这些结果表明,在链脲佐菌素诱导的大鼠视网膜糖尿病发展过程中,BKB 1-R受体亚型过表达,BKB 1-R拮抗剂R-954对NO,激肽释放酶和血管通透性的抑制作用证明了这一点以及Na / K ATPase降低。还提出了BKB 1-R拮抗剂R-954在糖尿病性视网膜病的治疗中的有益作用。

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