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Effects of Sizes and Conformations of Fish-Scale Collagen Peptides on Facial Skin Qualities and Transdermal Penetration Efficiency

机译:鱼鳞胶原蛋白肽的大小和构象对面部皮肤质量和透皮渗透效率的影响

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摘要

Fish-scale collagen peptides (FSCPs) were prepared using a given combination of proteases to hydrolyze tilapia (Oreochromis sp.) scales. FSCPs were determined to stimulate fibroblast cells proliferation and procollagen synthesis in a time- and dose-dependent manner. The transdermal penetration capabilities of the fractionationed FSCPs were evaluated using the Franz-type diffusion cell model. The heavier FSCPs, 3500 and 4500 Da, showed higher cumulative penetration capability as opposed to the lighter FSCPs, 2000 and 1300 Da. In addition, the heavier seemed to preserve favorable coiled structures comparing to the lighter that presents mainly as linear under confocal scanning laser microscopy. FSCPs, particularly the heavier, were concluded to efficiently penetrate stratum corneum to epidermis and dermis, activate fibroblasts, and accelerate collagen synthesis. The heavier outweighs the lighter in transdermal penetration likely as a result of preserving the given desired structure feature.
机译:使用蛋白酶的给定组合以水解罗非鱼(Oreochromis sp。)鱼鳞来制备鱼鳞胶原蛋白肽(FSCP)。 FSCP被确定以时间和剂量依赖性方式刺激成纤维细胞增殖和胶原原合成。使用Franz型扩散细胞模型评估了分级FSCP的透皮渗透能力。较重的FSCP(3500和4500 Da)显示出更高的累积渗透能力,而较轻的FSCP(2000和1300 Da)则相反。另外,与在共聚焦扫描激光显微镜下主要呈线性的打火机相比,较重的打火机似乎保留了良好的盘绕结构。结论是FSCP,尤其是较重的FSCP,可以有效地穿透角质层到达表皮和真皮,激活成纤维细胞,并加速胶原蛋白的合成。由于保留了给定的所需结构特征,因此较重的重量较轻的重量更轻。

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