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Nanogel for dermal application of the triterpenoids isolated from Ganoderma lucidum (GLT) for frostbite treatment

机译:纳米凝胶用于皮肤应用从灵芝(GLT)中分离的三萜类化合物用于冻疮治疗

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Abstract Objective: The purpose of this study was to formulate stable Ganoderma lucidum (GLT) nanogels suitable for topical delivery with a view to improve the therapeutic effect for frostbite. Methods: GLT nanosuspensions were formulated using the high-pressure homogenization technique and then suitably gelled for characterized. In order to confirm the advantages of GLT nanogel for dermal application, skin permeation studies in vitro and pharmacodynamic evaluation in vivo were studied and compared with GLT–carbopol gel. Results: The particle size analysis and SEM studies revealed that GLT nanosuspensions were still stably kept their particle size after suitably gelled by carbopol preparation. The drug content, pH, and spreadability of the GLT nanogel was found to be 99.23?±?1.8%, 6.07?±?0.1, and 26.42 (g·cm)/s, which were within acceptable limits. In vitro permeation studies through rat skin indicated that the amount of GLT permeated through skin of GLT nanogel after 24?h was higher than GLT–carbopol gel, and GLT nanogel increased the accumulative amount of GLT in epidermis five times than GLT–carbopol gel. No oedema and erythema were observed after administration of GLT nanogel on the rabbits' skin. Pharmacodynamic study showed that GLT nanogel was more effective than GLT–carbopol gel in treatment of frostbite. Conclusion: The GLT nanogel possess superior therapeutic effect for frostbite compared with the GLT–carbopol gel, which indicates that nanogels are eligible for the use as a suitable nanomedicine for dermal delivery of poorly soluble drugs such as GLT.
机译:摘要目的:本研究旨在制备适合局部给药的稳定灵芝纳米凝胶,以期改善冻疮的治疗效果。方法:使用高压均质技术配制GLT纳米悬浮液,然后适当凝胶化以表征。为了确认GLT纳米凝胶在皮肤应用中的优势,研究了体外皮肤渗透研究和体内药效学评估,并将其与GLT-carbopol凝胶进行了比较。结果:粒度分析和SEM研究表明,经卡波姆制备适当凝胶后,GLT纳米悬浮液仍可稳定地保持其粒度。发现GLT纳米凝胶的药物含量,pH和铺展性为99.23±1.8%,6.07±0.1和26.42(g·cm)/ s,在可接受的范围内。通过大鼠皮肤的体外渗透研究表明,在24小时后,通过GLT纳米凝胶皮肤渗透的GLT量高于GLT-carbopol凝胶,并且GLT纳米凝胶使表皮中GLT的累积量是GLT-carbopol凝胶的五倍。在兔皮肤上施用GLT纳米凝胶后,未观察到水肿和红斑。药效学研究表明,GLT纳米凝胶在治疗冻伤方面比GLT-carbopol凝胶更有效。结论:与GLT-carbopol凝胶相比,GLT纳米凝胶对冻伤具有更好的治疗效果,这表明纳米凝胶适合用作难溶性药物(如GLT)经皮肤输送的合适纳米药物。

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