首页> 美国卫生研究院文献>International Journal of Molecular Medicine >Evaluation of the peroxynitrite decomposition catalyst Fe(III) tetra-mesitylporphyrin octasulfonate on peripheral neuropathy in a mouse model of type 1 diabetes
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Evaluation of the peroxynitrite decomposition catalyst Fe(III) tetra-mesitylporphyrin octasulfonate on peripheral neuropathy in a mouse model of type 1 diabetes

机译:过氧亚硝酸盐分解催化剂四甲磺酸卟啉八磺酸盐对1型糖尿病小鼠模型周围神经病变的评估

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摘要

Whereas the important role of free radicals in diabetes-associated complications is well established, the contributions of the highly reactive oxidant peroxynitrite have not been properly explored. The present study used a pharmacological approach to evaluate the role of peroxynitrite in peripheral diabetic neuropathy. Control and STZ-diabetic mice were maintained with or without treatment with the potent peroxynitrite decomposition catalyst Fe(III) tetra-mesitylporphyrin octasulfonate (FeTMPS), at doses of 5 or 10 mg/kg/day in the drinking water for 3 weeks after an initial 3 weeks without treatment. Mice with a 6-week duration of diabetes developed clearly manifest motor (MNCV) and sensory nerve conduction velocity (SNCV) deficits, thermal hypoalgesia (paw withdrawal, tail-flick, and hot plate tests), mechanical hypoalgesia (tail pressure Randall-Sellito test), tactile allodynia (flexible von Frey filament test), and ~44% loss of intraepidermal nerve fibers. They also had increased nitrotyrosine and poly(ADP-ribose) immunofluorescence in sciatic nerve, grey matter of the spinal cord, and dorsal root ganglion neurons. FeTMPS treatment alleviated or essentially corrected (at a dose of 10 mg/kg/day) MNCV and SNCV deficits, and was associated with less severe small sensory nerve fiber dysfunction and degeneration. Nitrotyrosine and poly(ADP-ribose) immunofluorescence in sciatic nerve, spinal cord, and dorsal root ganglion neurons in peroxynitrite decomposition catalyst-treated diabetic mice was markedly reduced. In conclusion, peroxynitrite contributes to large motor, large sensory, and small sensory fiber neuropathy in streptozotocin-diabetic mice. The findings provide rationale for development of potent peroxynitrite decomposition catalysts for the treatment of diabetic neuropathy.
机译:尽管自由基在糖尿病相关并发症中的重要作用已得到充分确立,但高反应性氧化剂过氧亚硝酸盐的贡献尚未得到适当的研究。本研究使用药理学方法评估过氧亚硝酸盐在周围型糖尿病神经病中的作用。对照组和STZ糖尿病小鼠经5次或10 mg / kg / day剂量的强效过氧亚硝酸盐分解催化剂四甲磺酸卟啉八磺酸盐(FeTMPS)处理后,在有或没有治疗的情况下维持3周。最初3周未经治疗。糖尿病持续6周的小鼠明显表现出运动(MNCV)和感觉神经传导速度(SNCV)缺陷,热痛觉过敏(爪子退缩,甩尾和热板试验),机械性痛觉过敏(尾压Randall-Sellito)测试),触觉性异常性疼痛(柔韧性von Frey细丝测试)和约44%的表皮内神经纤维丢失。他们还增加了坐骨神经,脊髓灰质和背根神经节神经元的硝基酪氨酸和聚(ADP-核糖)免疫荧光。 FeTMPS治疗可减轻或基本纠正MNCV和SNCV缺陷(剂量为10 mg / kg /天),并伴有较轻的小感觉神经纤维功能障碍和变性。过氧亚硝酸盐分解催化剂处理的糖尿病小鼠坐骨神经,脊髓和背根神经节神经元中的硝基酪氨酸和聚(ADP-核糖)免疫荧光明显降低。总之,过氧亚硝酸盐有助于链脲佐菌素-糖尿病小鼠的大运动,大感觉和小感觉纤维神经病变。该发现为开发有效的过氧亚硝酸盐分解催化剂用于治疗糖尿病性神经病提供了理论依据。

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