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Bioactive glass promotes the barrier functional behaviors of keratinocytes and improves the Re-epithelialization in wound healing in diabetic rats

机译:生物活性玻璃促进角质形成细胞的阻隔功能行为并改善糖尿病大鼠伤口愈合的重新上皮化

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摘要

Upon skin injury, re-epithelialization must be triggered promptly to restore the integrity and barrier function of the epidermis. However, this process is often delayed or interrupted in chronic wounds like diabetic foot ulcers. Considering that BG particles can activate multiple genes in various cells, herein, we hypothesized that bioactive glass (BG) might be able to modulate the barrier functional behaviors of keratinocytes. By measuring the transepithelial electrical resistance (TEER) and the paracellular tracer flux, we found the 58S-BG extracts substantially enhanced the barrier function of keratinocyte monolayers. The BG extracts might exert such effects by promoting the keratinocyte differentiation and the formation of tight junctions, as evidenced by the increased expression of critical differentiation markers (K10 and involucrin) and TJ protein claudin-1, as well as the altered subcellular location of four major TJ proteins (claudin-1, occludin, JAM-A, and ZO-1). Besides, the cell scratch assay showed that BG extracts induced the collective migration of keratinocytes, though they did not accelerate the migration rate compared to the control. The in vivo study using a diabetic rat wound model demonstrated that the BG extracts accelerated the process of re-epithelialization, stimulated keratinocyte differentiation, and promoted the formation of tight junctions in the newly regenerated epidermis. Our findings revealed the crucial effects of BGs on keratinocytes and highlighted its potential application for chronic wound healing by restoring the barrier function of the wounded skin effectively.
机译:在皮肤损伤时,必须迅速触发重新上皮化以恢复表皮的完整性和障碍功能。然而,这种过程通常在糖尿病足溃疡等慢性伤口中延迟或中断。考虑到BG颗粒可以在各种细胞中激活多种基因,在本文中,我们假设生物活性玻璃(BG)可能能够调节角质形成细胞的阻挡功能行为。通过测量TRANSEPITHELIAL电阻(TEER)和肺膜状跟踪助焊剂,我们发现58S-BG提取物基本上增强了角蛋白细胞单层的阻隔功能。通过促进角质形成细胞分化和形成紧密结的形成,BG提取物可能施加这些效果,如临界分化标志物(K10和丙键)和TJ蛋白克劳蛋白-1的增加,以及四个亚细胞位置的表达增加主要TJ蛋白(Claudin-1,Occludin,Jam-A和ZO-1)。此外,细胞划痕测定表明,BG提取物诱导角质形成细胞的集体迁移,尽管它们与对照相比加速了迁移率。使用糖尿病大鼠伤口模型的体内研究表明,BG提取物加速了重新上皮化,刺激的角质形成细胞分化的过程,并促进了新再生表皮中的紧密结的形成。我们的研究结果揭示了BGS对角质形成细胞的关键影响,并强调了其有效恢复受伤皮肤的阻挡功能来抑制其对慢性伤口愈合的潜在应用。

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