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维生素 C 及其衍生物对正常人成纤维细胞胶原合成和交联的影响。

Effect of vitamin C and its derivatives on collagen synthesis and cross-linking by normal human fibroblasts.

机构信息

Life Sciences Department, L'Oréal Advanced Research Laboratories, 90 rue du Général Roguet Clichy-Cédex France.

出版信息

Int J Cosmet Sci. 1998 Jun;20(3):151-8. doi: 10.1046/j.1467-2494.1998.171747.x.

Abstract

Vitamin C (VitC) plays a critical role in the maintenance of a normal mature collagen network in humans (anti-scurvy properties) by preventing the auto-inactivation of lysyl and prolyl hyroxylase, two key enzymes in collagen biosynthesis. In this study two in vitro models were designed to evaluate the effects of VitC on collagen biosynthesis and cross-linking at cellular and tissue levels. It was shown that VitC induced a dose-dependent increase in collagen type I deposits by normal human fibroblasts (NHF) cultured in monolayer, and enhanced extracellular matrix contraction by NHF in a lattice model, in a non-cytotoxic range of concentrations (103m, 104m, 105m). Exogenous VitC supply could thus contribute to the maintenance of optimal collagenic density in the dermis and locally strengthen the collagen network. Vitamin C-phosphate (VitC-P) and vitamin C-glucoside (VitC-Glu) (two VitC derivatives presenting higher chemical stability in aqueous solution) were also tested in our two models, and showed similar biological properties, but with different potencies. These two compounds can be considered as pro-vitamins for skin, and could thus advantageously substitute for VitC in VitC-based anti-ageing products, as they allow the development of stable, easy-to-use formulations.

摘要

维生素 C(VitC)在维持人类正常成熟胶原网络中起着关键作用(抗坏血病特性),通过防止赖氨酰和脯氨酰羟化酶的自动失活,这两种胶原生物合成的关键酶。在这项研究中,设计了两种体外模型来评估 VitC 在细胞和组织水平上对胶原生物合成和交联的影响。结果表明,VitC 在单层培养的正常人成纤维细胞(NHF)中诱导 I 型胶原沉积呈剂量依赖性增加,并在网格模型中增强 NHF 的细胞外基质收缩,浓度在非细胞毒性范围内(103m、104m、105m)。因此,外源性 VitC 供应可能有助于维持真皮中最佳的胶原密度,并局部增强胶原网络。维生素 C-磷酸酯(VitC-P)和维生素 C-葡萄糖苷(VitC-Glu)(两种在水溶液中具有更高化学稳定性的 VitC 衍生物)也在我们的两个模型中进行了测试,它们表现出相似的生物学特性,但效力不同。这两种化合物可以被认为是皮肤的前维生素,因此可以在基于 VitC 的抗衰老产品中有利地替代 VitC,因为它们允许开发稳定、易于使用的配方。

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