首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Distinct differences in hypoxic responses between human oral mucosa and skin fibroblasts in a 3D collagen matrix
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Distinct differences in hypoxic responses between human oral mucosa and skin fibroblasts in a 3D collagen matrix

机译:3D胶原基质中人口腔粘膜与皮肤成纤维细胞的缺氧反应的明显差异

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The differences between oral mucosa and skin wound healing involving hypoxic responses of fibroblasts are poorly elucidated. In this study, we aimed to study the different hypoxic responses between oral and skin fibroblasts embedded in a three-dimensional (3D) collagen matrix to address the early stage of wound healing. Primary oral mucosa fibroblasts (OMFs) obtained from the retromolar area and skin fibroblasts (SFs) obtained from the abdomen were cultured in the 3D 'floating model' under either 21%, 5% or 1% O(2)for 2 days. Cell viability under hypoxia was higher in the OMFs than in the SFs. Collagen gel contraction was suppressed under hypoxic conditions in both fibroblasts, consistent with the reduction of alpha smooth muscle actin expression, except for SFs under 1% O-2. Subsequently, their gene expression profiles between 21 and 1% O(2)concentrations were compared via microarray technology, and the expression profiles of the extracellular matrix (ECM)-associated proteins, including matrix metalloproteinases and collagens, were evaluated. The OMFs were more susceptible to 1% O-2, and more of their genes were downregulated than the SFs'. Although the production and expression levels of ECM-associated proteins in both fibroblasts diminished under hypoxia, those levels in OMFs were significantly higher than those in SFs. In the case of single origin OMFs and SFs, our findings suggest that OMFs possess a higher baseline production capacity of several ECM-associated proteins than SFs, except type III collagen. The intrinsic hypoxic responses of OMFs may be attributed to a more favourable wound healing in oral mucosa.
机译:涉及成纤维细胞缺氧反应的口腔粘膜和皮肤伤口愈合之间的差异较为令人难以阐明。在这项研究中,我们旨在研究嵌入三维(3D)胶原基质中的口腔和皮肤成纤维细胞之间的不同缺氧反应,以解决伤口愈合的早期阶段。从腹部获得的肾上腺区域和皮肤成纤维细胞(SFS)获得的主要口腔粘膜成纤维细胞(OMF)在3D'浮动模型'下在21%,5%或1%O(2)下培养2天。 OMF在缺氧下的细胞活力比SFS较高。在两种成纤维细胞中的缺氧条件下抑制了胶原凝胶收缩,与α平滑肌肌动蛋白表达的还原相一致,除了1%O-2下的SF。随后,通过微阵列技术比较了21至1%O(2)次浓度的基因表达谱,评价细胞外基质(ECM)的表达谱,包括基质金属蛋白酶和胶原蛋白和胶原蛋白。 OMFS更容易受到1%O-2的影响,并且更多的它们的基因被下调比SFS'。虽然在缺氧下两种成纤维细胞中的ECM相关蛋白的产生和表达水平减少,但OMF的那些水平明显高于SFS中的那些水平。在单一来源OMFS和SFS的情况下,我们的研究结果表明,除III型胶原蛋白外,OMFS具有多种ECM相关蛋白的基线生产能力。 OMF的内在缺氧反应可能归因于口腔粘膜中更有利的伤口愈合。

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