首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Skin-permeable liposome improved stability and permeability of bFGF against skin of mice with deep second degree scald to promote hair follicle neogenesis through inhibition of scar formation
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Skin-permeable liposome improved stability and permeability of bFGF against skin of mice with deep second degree scald to promote hair follicle neogenesis through inhibition of scar formation

机译:皮肤可渗透的脂质体改善了BFGF对小鼠皮肤的稳定性和渗透性,通过深度的第二度烫伤,通过抑制瘢痕形成来促进毛囊新生儿

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摘要

Excessive deposition of extracellular matrix (ECM) usually resulted in scar formation during wound healing, which caused skin dysfunction, such as hair loss. Basic fibroblast growth factor (bFGF) was very helpful for promoting hair follicle neogenesis and regulating the remodeling of ECM during wound healing. Because of its poor stability in wound fluids and low permeability against the dense wound scar, the repairing quality of bFGF on wound was hindered largely in clinical practice. To overcome these drawbacks, herein, a novel liposome with silk fibroin hydrogel core (bFGF-SF-LIP) was firstly prepared to stabilize bFGF, followed by insertion of laurocapam, a permeation enhancer, into the liposomal membrane to construct a skin-permeable liposome (SP-bFGF-SF-LIP). The encapsulated efficiency of bFGF was reaching to nearly 90% when ratio of drug/lipids above 1:300, and it activity was not compromised by laurocapam. SP-bFGF-SF-LIP exhibited a hydrodynamic diameter of 103.3 nm and Zeta potential of -2.31 mV.
机译:细胞外基质(ECM)过度沉积通常导致伤口愈合期间瘢痕形成,这导致皮肤功能障碍,如脱发。基本成纤维细胞生长因子(BFGF)对于促进毛发卵泡新生成并调节伤口愈合期间ECM的重塑非常有助于。由于其伤口流体稳定性差,抗致密伤口瘢痕的低渗透性,因此在临床实践中受到伤口的修复质量。为了克服这些缺点,本文首先制备了一种具有丝纤维素水凝胶核心(BFGF-SF-唇缘)的新型脂质体以稳定BFGF,然后插入Laurocapam,渗透增强剂,进入脂质体膜中以构建皮肤渗透性脂质体(SP-BFGF-SF-唇)。当1:300以上的药物/脂质的比例,当药物/脂质的比例和Laurocapam没有损害时,BFGF的包封效率达到接近90%。 SP-BFGF-SF-唇唇显示出103.3nm和-2.31mV的Zeta电位的流体动力直径。

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