BLT2 expression improves skin integrity and protects from alterations caused by hyperglycemia in type 2 diabetes.

Dermato-Endocrinology Pub Date : 2016-12-14 eCollection Date: 2017-01-01 DOI:10.1080/19381980.2016.1267078
Alberto Leguina-Ruzzi, Juan P Valderas
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引用次数: 10

Abstract

Type 2 diabetes (T2D) can go undiagnosed for years, leading to a stage where chronic high blood sugar produces complications such as delayed wound healing. Reports have shown that BLT2 activation improves keratinocyte migration and wound healing, as well as protecting the epidermal barrier through the promotion of actin polymerization. The goal of this study was to elucidate the role of BLT2 expression in skin epithelial integrity in T2D. For this purpose, we used both wild type (WT) and BLT2 knockout mice in a model, in which a T2D-like phenotype was induced by keeping the animals on a high fat (HF) diet over 5 weeks. In a parallel in vitro approach, we cultured BLT2-transfected HaCaT cells at both low and high glucose concentrations for 48 h. Structure, transepithelial resistance (TEER), IL-1ß, IL-8 or CXCL2, MMP9, Filaggrin, Loricrin and Keratin 10 (K10) were evaluated ex vivo and in vitro. Additionally, wound healing (WH) was studied in vitro. The skin from T2D and BLT2 knockout mice showed a reduction in TEER and the expression of IL-1ß, and in increase in CXCL2, MMP9, Filaggrin, Loricrin and K10 expression. The structure suggested an atrophic epidermis; however, the skin was dramatically affected in the BLT2 knockout mice kept on a HF diet. HaCaT-BLT2 cells presented as an organized monolayer and showed higher TEER and wound healing compared with vector only-transfected HaCaT-Mock cells. Likewise, alterations in the expression of skin inflammatory, matrix degradation and differentiation markers under low and high glucose conditions were less severe than in HaCaT-Mock cells. Our results suggest that BLT2 improves epithelial integrity and function by regulating differentiation markers, cytokines and MMP9. Furthermore, BLT2 attenuates the damaging effects of high glucose levels, thereby accelerating wound healing.

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表达BLT2可改善皮肤完整性,防止2型糖尿病患者因高血糖引起的改变。
2型糖尿病(T2D)可能多年未被诊断出来,导致慢性高血糖产生并发症,如伤口愈合延迟。有报道表明,BLT2激活可改善角质细胞迁移和伤口愈合,并通过促进肌动蛋白聚合保护表皮屏障。本研究的目的是阐明BLT2表达在T2D皮肤上皮完整性中的作用。为此,我们在一个模型中使用野生型(WT)和BLT2敲除小鼠,在这个模型中,通过让动物保持高脂肪(HF)饮食超过5周来诱导t2d样表型。在平行的体外方法中,我们在低和高葡萄糖浓度下培养blt2转染的HaCaT细胞48小时。在体内和体外评估结构、经上皮抵抗(TEER)、IL-1ß、IL-8或CXCL2、MMP9、聚丝蛋白(Filaggrin)、Loricrin和角蛋白10 (K10)。此外,还研究了体外伤口愈合(WH)。T2D和BLT2基因敲除小鼠皮肤TEER和IL-1ß表达降低,CXCL2、MMP9、Filaggrin、Loricrin和K10表达升高。结构提示为萎缩性表皮;然而,BLT2基因敲除小鼠的皮肤在HF饮食中受到了显著影响。HaCaT-BLT2细胞呈有组织的单层,与仅转染载体的HaCaT-Mock细胞相比,TEER和伤口愈合率更高。同样,在低糖和高糖条件下,皮肤炎症、基质降解和分化标志物的表达变化没有HaCaT-Mock细胞严重。我们的研究结果表明,BLT2通过调节分化标志物、细胞因子和MMP9来改善上皮的完整性和功能。此外,BLT2减轻了高葡萄糖水平的破坏作用,从而加速了伤口愈合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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