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首页> 外文期刊>Toxicology and Applied Pharmacology >From topical antidote against skin irritants to a novel counter-irritating and anti-inflammatory peptide.
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From topical antidote against skin irritants to a novel counter-irritating and anti-inflammatory peptide.

机译:从针对皮肤刺激性的局部解毒剂到新型的抗刺激性和抗炎肽。

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摘要

The primary purpose of the present study was to investigate the mechanism of the counter-irritating activity of topical iodine against skin lesions induced by chemical and thermal stimuli. The hypothesis that iodine exerts its activity by inducing an endogenous anti-inflammatory factor was confirmed by exposing guinea pig skin to heat stimulus followed by topical iodine treatment and skin extraction. Injection of the extract into naive guinea pigs reduced heat-induced irritation by 69%. The protective factor, identified as a new nonapeptide (histone H2A 36-44, H-Lys-Gly-Asn-Tyr-Ala-Glu-Arg-Ileu-Ala-OH), caused reduction of 40% in irritation score in heat-exposed guinea pigs. The murine analog (H-Lys-Gly-His-Tyr-Ala-Glu-Arg-Val-Gly-OH, termed IIIM1) reduced sulfur mustard (SM)-induced ear swelling at a dose-dependent bell-shape manner reaching peak activity of 1 mg/kg. Cultured keratinocytes transfected with the peptide were more resistant towards SM than the control cells. The peptide suppressed oxidative burst in activated neutrophils in a concentration-dependent manner. In addition, the peptide reduced glucose oxidase-induced skin edema in mice at a dose-dependent bell-shape manner. Apart from thermal and chemical-induced skin irritation this novel peptide might be of potential use in chronic dermal disorders such as psoriasis and pemphigus as well as non-dermal inflammatory diseases like multiple sclerosis, arthritis and colitis.
机译:本研究的主要目的是研究局部碘对抗由化学和热刺激引起的皮肤损伤的抗刺激活性的机制。碘通过诱导内源性抗炎因子发挥其活性的假设已通过将豚鼠皮肤置于热刺激下,然后进行局部碘治疗和皮肤提取而得到证实。将提取物注射到幼稚的豚鼠中,可将热刺激减少69%。保护因子被识别为新的九肽(组蛋白H2A 36-44,H-Lys-Gly-Asn-Tyr-Ala-Glu-Arg-Ileu-Ala-OH),导致热刺激的刺激评分降低了40%裸露的豚鼠。鼠类类似物(H-Lys-Gly-His-Tyr-Ala-Glu-Arg-Val-Gly-OH,称为IIIM1)以剂量依赖的钟形方式减少了硫芥子(SM)引起的耳肿,达到峰值活性为1 mg / kg。用该肽转染的培养的角质形成细胞对SM的抗性强于对照细胞。该肽以浓度依赖性方式抑制活化的中性粒细胞中的氧化爆发。另外,该肽以剂量依赖的钟形方式减少了小鼠中的葡萄糖氧化酶诱导的皮肤水肿。除了热和化学诱导的皮肤刺激外,这种新型肽还可能在慢性皮肤疾病(如牛皮癣和天疱疮)以及非皮肤炎性疾病(如多发性硬化症,关节炎和结肠炎)中潜在使用。

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