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Biological Effects Induced by Specific Advanced Glycation End Products in the Reconstructed Skin Model of Aging

机译:特定的高级糖化终产物在重建的衰老皮肤模型中诱导的生物效应

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摘要

Advanced glycation end products (AGEs) accumulate in the aging skin. To understand the biological effects of individual AGEs, skin reconstructed with collagen selectively enriched with Nɛ-(carboxymethyl)-lysine (CML), Nɛ-(carboxyethyl)-lysine (CEL), methylglyoxal hydroimidazolone (MG-H1), or pentosidine was studied. Immunohistochemistry revealed increased expression of α6 integrin at the dermal epidermal junction by CEL and CML (p<0.01). Laminin 5 was diminished by CEL and MG-H1 (p<0.05). Both CML and CEL induced a robust increase (p<0.01) in procollagen I. In the culture medium, IL-6, VEGF, and MMP1 secretion were significantly decreased (p<0.05) by MG-H1. While both CEL and CML decreased MMP3, only CEL decreased IL-6 and TIMP1, while CML stimulated TIMP1 synthesis significantly (p<0.05). mRNA expression studies using qPCR in the epidermis layer showed that CEL increased type 7 collagen (COL7A1), β1, and α6 integrin, while CML increased only COL7A1 (p<0.05). MG-H1-modified collagen had no effect. Importantly, in the dermis layer, MMP3 mRNA expression was increased by both CML and MG-H1. CML also significantly increased the mRNAs of MMP1, TIMP1, keratinocyte growth factor (KGF), IL-6, and monocyte chemoattractant protein 1 (MCP1) (p<0.05). Mixed effects were present in CEL-rich matrix. Minimally glycoxidized pentosidine-rich collagen suppressed most mRNAs of the genes studied (p<0.05) and decreased VEGF and increased MCP1 protein expression. Taken together, this model of the aging skin suggests that a combination of AGEs tends to counterbalance and thus minimizes the detrimental biological effects of individual AGEs.
机译:高级糖基化终产物(AGEs)会在老化的皮肤中积累。为了了解各个AGEs的生物学效应,使用胶原蛋白重建的皮肤选择性地富含N ɛ-(羧甲基)-赖氨酸(CML),N up -(羧乙基)-赖氨酸(CEL),甲基乙二醛氢咪唑酮(MG-H1)或戊糖苷进行了研究。免疫组织化学显示,CEL和CML在真皮表皮连接处表达了α6整合素(p <0.01)。 CEL和MG-H1减少了层粘连蛋白5(p <0.05)。 CML和CEL均可诱导原胶原I的强劲增加(p <0.01)。在培养基中,MG-H1的IL-6,VEGF和MMP1分泌显着降低(p <0.05)。尽管CEL和CML均降低MMP3,但只有CEL降低IL-6和TIMP1,而CML显着刺激TIMP1合成(p <0.05)。使用qPCR在表皮层中进行mRNA表达研究表明,CEL增加7型胶原蛋白(COL7A1),β1和α6整联蛋白,而CML仅增加COL7A1(p <0.05)。 MG-H1修饰的胶原蛋白没有作用。重要的是,在真皮层,CML和MG-H1均可增加MMP3 mRNA的表达。 CML还显着增加MMP1,TIMP1,角质形成细胞生长因子(KGF),IL-6和单核细胞趋化蛋白1(MCP1)的mRNA(p <0.05)。富含CEL的基质中存在混合效应。最低限度地被糖化的富含戊糖苷的胶原蛋白抑制了所研究基因的大多数mRNA(p <0.05),并降低了VEGF和增加了MCP1蛋白的表达。综上所述,这种老化皮肤的模型表明,AGEs的组合趋于平衡,因此使单个AGEs的有害生物学作用最小化。

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