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用于碱性成纤维细胞生长因子递送的冻干明胶/海藻酸盐凝聚层的稳定性增强

Stability Enhancement of Freeze-Dried Gelatin/Alginate Coacervates for bFGF Delivery.

作者信息

Lee JongOk, Ban Eunmi, Park Heejung, Kim Aeri

机构信息

Department of Pharmacy, College of Pharmacy, CHA University, Seongnam-si 463-400, Republic of Korea.

出版信息

Pharmaceutics. 2022 Nov 22;14(12):2548. doi: 10.3390/pharmaceutics14122548.

Abstract

Chronic wound sites have elevated levels of proteolytic enzymes that negate the activity of topically applied growth factors. bFGF encapsulated in gelatin/alginate coacervates was protected from protease and showed better activity than bFGF in solution; however, its activity decreased with particle size and PDI increase after freeze-drying and rehydration. In this study, we aim to improve the stability of bFGF coacervates during freeze-drying to enable a topically applied growth factor delivery system for diabetic foot ulcer. Trehalose, mannitol, and Tween 80 at various concentrations were tested as cryoprotectant candidates. Trehalose improved the mechanical property of freeze-dried coacervates and physical properties after rehydration, resulting in stable size and PDI values. It also enhanced the bFGF activity in hyperglycemic human dermal fibroblasts with better cell viability, migration, and procollagen synthesis compared to the coacervates without trehalose. Hydrogen bonding interactions between trehalose and polymers probed by ATR-FTIR contribute to the stability of coacervates during freeze-drying. In conclusion, the freeze-dried gelatin/alginate coacervates encapsulating bFGF was effectively stabilized with trehalose, and the resulting coacervate composition is suggested as a potential therapeutic modality for chronic wounds including diabetic foot ulcer.

摘要

慢性伤口部位的蛋白水解酶水平升高,会使局部应用的生长因子失活。包裹在明胶/海藻酸盐凝聚层中的碱性成纤维细胞生长因子(bFGF)受到蛋白酶的保护,并且比溶液中的bFGF表现出更好的活性;然而,在冻干和复水后,其活性随着粒径和多分散指数(PDI)的增加而降低。在本研究中,我们旨在提高冻干过程中bFGF凝聚层的稳定性,以实现用于糖尿病足溃疡的局部应用生长因子递送系统。测试了不同浓度的海藻糖、甘露醇和吐温80作为冷冻保护剂候选物。海藻糖改善了冻干凝聚层的机械性能以及复水后的物理性能,从而使粒径和PDI值保持稳定。与不含海藻糖的凝聚层相比,它还增强了高血糖人真皮成纤维细胞中的bFGF活性,具有更好的细胞活力、迁移能力和前胶原合成能力。通过衰减全反射傅里叶变换红外光谱(ATR-FTIR)探测到的海藻糖与聚合物之间的氢键相互作用有助于冻干过程中凝聚层的稳定性。总之,用海藻糖有效地稳定了包裹bFGF的冻干明胶/海藻酸盐凝聚层,并且所得到的凝聚层组合物被认为是包括糖尿病足溃疡在内的慢性伤口的一种潜在治疗方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c0e/9781200/492827ef8ad9/pharmaceutics-14-02548-g001.jpg

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