皮肤科用多草药纳米凝胶的配方及优化

Q3 Materials Science
S. K. Dev, P. Choudhury, Rajnish Srivastava, Vaibhav Rathore
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引用次数: 0

摘要

本研究的目的是开发一种多草药纳米凝胶(PHNG)制剂,能够作为一种潜在的载体,局部递送多草药植物成分。根据阿育吠陀的说法,单一的草药不足以达到预期的疗效。将其按一定比例优化为多种中药组合,疗效更好,毒性更小。本研究的目的是从白花苜蓿、曼陀罗和墨西哥银莲花的甲醇提取物中制备一种多草药凝胶,用于给药。本研究主要包括白花苜蓿茎、曼陀罗叶、墨西哥凤尾草部分的甲醇提取物。采用低能自乳化法制备了聚草药基纳米凝胶,并对其pH、黏度、展布性、稳定性和药物释放度进行了评价。研究了稳定纳米凝胶制剂在不同时间间隔内的药物释放谱。此外,对制备的纳米凝胶进行了zeta-potential, zeta- sizing和透射电子显微镜(TEM)表征。优化后的PHNG粒径为11.25nm, zeta电位为-25.73 mV。TEM分析表明,优化后的配方颗粒呈球形。此外,优化的配方被发现具有更高的稳定性,最大延长累积释放时间长达240分钟。我们已经配制了一个可以通过物理化学和表面表征验证的多草药纳米凝胶。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formulation and optimization of polyherbal Nanogel for dermatological applications
The aim of the present investigation was to develop a polyherbal nano gel (PHNG) formulation capable of acting as a potential vehicle to deliver polyherbal phytoconstituents topically. Individual herbs, according to Ayurveda, are insufficient to deliver the intended medicinal effect. It will have a better therapeutic impact with less toxicity when it is optimized as multiple herb combinations in a certain ratio. The objective of this study was to create a polyherbal gel for the delivery of medication from methanolic extracts of Plumbago zeylanica Linn, Datura stramonium Linn, and Argemone mexicana Linn. this work include methanolic extracts of Plumbago zeylanica stem, Datura stramonium leaves, Argimone Mexicana areal part. The polyherbal-based nanogel was prepared by low energy self-emulsification technique, and was evaluated for pH, viscosity and spreadability, stability, and drug release. The drug release profile of stable nanogel formulations was studied at various time intervals. Furthermore, the prepared nanogel was characterized by zeta-potential, zeta-sizer, and transmission electron microscopy (TEM). Optimized PHNG had particle size and zeta potential of 11.25nm and -25.73 mV respectively. TEM analysis of optimized formulation revealed the spherical shape of particles. Furthermore, the optimized formulation was found to possess higher stability with a maximum extended cumulative release of up to 240 minutes We have formulated a polyherbal nanogel that can be validated by physiochemical and surface characterization.
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来源期刊
Current Nanomaterials
Current Nanomaterials Materials Science-Materials Science (miscellaneous)
CiteScore
1.60
自引率
0.00%
发文量
53
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