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采用质量源于设计理念对富含辛伐他汀的生物活性成膜喷雾剂进行全面的发育研究:一种促进伤口愈合的前瞻性策略。

Comprehensive developmental investigation on simvastatin enriched bioactive film forming spray using the quality by design paradigm: a prospective strategy for improved wound healing.

作者信息

Patel Vrushali N, Patel Heta V, Agrawal Kashish, Soni Ishika, Shah Pranav, Mangrulkar Shubhada V, Umekar Milind J, Lalan Manisha S

机构信息

Babaria Institute of Pharmacy, BITS Edu Campus, Vadodara, India.

Maliba Pharmacy College, Uka Tarsadia University, Surat, India.

出版信息

J Drug Target. 2024 Nov;32(9):1139-1153. doi: 10.1080/1061186X.2024.2382405. Epub 2024 Jul 29.

Abstract

The use of topical antimicrobials in wound healing presents challenges like risk of drug resistance and toxicity to local tissue. Simvastatin (SIM), a lipid-lowering agent which reduces the risk of cardiovascular events, is repurposed for its pleiotropic effect in wound healing. A bioactive bioadhesive polymer-based film forming spray (FFS) formulation of SIM was designed using chitosan, collagen, hyaluronic acid and optimised by employing the DoE approach. Optimised formulation demonstrated moderate viscosity (12.5 ± 0.3 cP), rapid film formation (231 ± 5.6 s), flexibility, tensile strength and sustained drug release (T80 - time for 80% drug release - 9.05 ± 0.7 h). Scanning electron microscopy (SEM) verified uniformly dispersed drug within the composite polymer matrix. SIM FFS demonstrated antimicrobial activity against gram positive and gram negative bacteria. excision wound model studies in mice affirmed the beneficent role of bioactive polymers and the efficacy of SIM FFS in wound contraction and closure, tissue remodelling and re-epithelization in comparison to standard antimicrobial preparation. Cytokines TNF- alpha, IL-6 were downregulated and IL-10 was upregulated. Biochemical markers; hydroxyproline, hexosamine and histopathology were consistent with wound contraction observed. This is an exploratory effort in repurposing SIM for wound healing in a novel dosage form, underscoring its potential as an alternative to conventional topical antimicrobials.

摘要

在伤口愈合中使用局部抗菌剂存在诸多挑战,如耐药风险和对局部组织的毒性。辛伐他汀(SIM)是一种降低心血管事件风险的降脂药物,因其在伤口愈合中的多效性作用而被重新利用。使用壳聚糖、胶原蛋白、透明质酸设计了一种基于生物活性生物粘附聚合物的成膜喷雾剂(FFS)剂型的SIM,并采用实验设计方法进行了优化。优化后的制剂表现出适度的粘度(12.5±0.3厘泊)、快速成膜(231±5.6秒)、柔韧性、拉伸强度和药物持续释放(T80 - 80%药物释放时间 - 9.05±0.7小时)。扫描电子显微镜(SEM)证实药物在复合聚合物基质中均匀分散。SIM FFS对革兰氏阳性菌和革兰氏阴性菌均表现出抗菌活性。小鼠切除伤口模型研究证实了生物活性聚合物的有益作用以及SIM FFS在伤口收缩和闭合、组织重塑和再上皮化方面相对于标准抗菌制剂的疗效。细胞因子肿瘤坏死因子-α、白细胞介素-6下调,白细胞介素-10上调。生化标志物;羟脯氨酸、氨基己糖和组织病理学与观察到的伤口收缩一致。这是将SIM重新用于新型剂型伤口愈合的一项探索性努力,突出了其作为传统局部抗菌剂替代品的潜力。

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