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Anti-arthritic effects of microneedling with bee venom gel

机译:蜂毒凝胶微针的抗关节炎作用

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Objective To combine with transdermal drug delivery using microneedle to simulate the bee venom therapy to evaluate the permeation of bee venom gel. Methods In this study, the sodium urate and LPS were used on rats and mice to construct the model. Bee venom gel–microneedle combination effect on the model is to determine the role of microneedle gel permeation by observing inflammation factors. Results Compared with the model group, the bee venom gel–microneedle combination group can reduce the level of serum nitric oxide of the acute gouty inflammation model caused by sodium urate, and on LPS induced mouse model of acute inflammation effect and the micro. Conclusions Bee venom can significantly suppress the occurrence of gouty arthritis inflammation in rats and mice LPS inflammatory reaction. Choose the 750?μm microneedle with 10N force on skin about 3?minutes, bee venom can play the optimal role, and the anti-inflammatory effect is obvious. Microneedles can promote the percutaneous absorption of the active macromolecules bee venom gel.
机译:目的结合微针透皮给药模拟蜂毒疗法,评价蜂毒凝胶的渗透性。方法采用尿酸钠和脂多糖对大鼠和小鼠建立模型。蜂毒凝胶-微针组合对模型的作用是通过观察炎症因子来确定微针凝胶渗透的作用。结果与模型组相比,蜂毒凝胶-微针联合组可以降低尿酸钠引起的急性痛风性炎症模型的血清一氧化氮水平,对LPS诱导的小鼠急性炎症效应和微量模型均具有降低作用。结论蜂毒能明显抑制大鼠和小鼠痛风性关节炎炎症的发生。选择10N力的750?μm微针在皮肤上作用3?分钟,蜂毒可以发挥最佳作用,抗炎作用明显。微针可以促进活性大分子蜂毒凝胶的经皮吸收。

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