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高分子拥挤调节人牙龈成纤维细胞培养物中的基质组成和基因表达。

Macromolecular crowding regulates matrix composition and gene expression in human gingival fibroblast cultures.

机构信息

Department of Oral Biological and Medical Sciences, Faculty of Dentistry, University of British Columbia, 2199 Wesbrook Mall, Vancouver, BC, V6T 1Z3, Canada.

出版信息

Sci Rep. 2023 Feb 4;13(1):2047. doi: 10.1038/s41598-023-29252-1.

Abstract

Standard cell cultures are performed in aqueous media with a low macromolecule concentration compared to tissue microenvironment. In macromolecular crowding (MMC) experiments, synthetic polymeric crowders are added into cell culture media to better mimic macromolecule concentrations found in vivo. However, their effect on cultured cells is incompletely understood and appears context-dependent. Here we show using human gingival fibroblasts, a cell type associated with fast and scarless wound healing, that MMC (standard medium supplemented with Ficoll 70/400) potently modulates fibroblast phenotype and extracellular matrix (ECM) composition compared to standard culture media (nMMC) over time. MMC significantly reduced cell numbers, but increased accumulation of collagen I, cellular fibronectin, and tenascin C, while suppressing level of SPARC (Secreted Protein Acidic and Cysteine Rich). Out of the 75 wound healing and ECM related genes studied, MMC significantly modulated expression of 25 genes compared to nMMC condition. MMC also suppressed myofibroblast markers and promoted deposition of basement membrane molecules collagen IV, laminin 1, and expression of LAMB3 (Laminin Subunit Beta 3) gene. In cell-derived matrices produced by a novel decellularization protocol, the altered molecular composition of MMC matrices was replicated. Thus, MMC may improve cell culture models for research and provide novel approaches for regenerative therapy.

摘要

标准细胞培养是在低大分子浓度的水性介质中进行的,与组织微环境相比。在大分子拥挤(MMC)实验中,合成聚合物拥挤剂被添加到细胞培养基中,以更好地模拟体内发现的大分子浓度。然而,它们对培养细胞的影响尚不完全清楚,而且似乎依赖于背景。在这里,我们使用人牙龈成纤维细胞(一种与快速无瘢痕愈合相关的细胞类型)表明,与标准培养条件(nMMC)相比,MMC(标准培养基中添加 Ficoll 70/400)随时间推移强烈调节成纤维细胞表型和细胞外基质(ECM)组成。MMC 显著减少细胞数量,但增加 I 型胶原、细胞纤维连接蛋白和 tenascin C 的积累,同时抑制 SPARC(富含酸性和半胱氨酸的分泌蛋白)的水平。在研究的 75 个与伤口愈合和 ECM 相关的基因中,与 nMMC 条件相比,MMC 显著调节了 25 个基因的表达。MMC 还抑制了肌成纤维细胞标志物的表达,促进了基底膜分子 IV 型胶原、层粘连蛋白 1 和 LAMB3(层粘连蛋白亚单位β 3)基因的表达。在一种新型去细胞化方案产生的细胞衍生基质中,MMC 基质的改变分子组成得到了复制。因此,MMC 可能会改善细胞培养模型的研究,并为再生治疗提供新的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45a2/9899282/d670defce488/41598_2023_29252_Fig1_HTML.jpg

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