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黏附性和机械调节对人骨髓和骨膜来源祖细胞中间充质干细胞分化的影响。

Adhesive and mechanical regulation of mesenchymal stem cell differentiation in human bone marrow and periosteum-derived progenitor cells.

机构信息

Department of Bioengineering, University of Pennsylvania , 510 Skirkanich Hall, 210 South 33rd Street, Philadelphia, PA 19104 , USA ; Laboratory for Skeletal Development and Joint Disorders, Katholieke Universiteit Leuven , Herestraat 49, Box 813, B-3000 Leuven , Belgium.

出版信息

Biol Open. 2012 Nov 15;1(11):1058-68. doi: 10.1242/bio.20122162. Epub 2012 Aug 27.

Abstract

It has previously been demonstrated that cell shape can influence commitment of human bone marrow-derived mesenchymal stem cells (hBMCs) to adipogenic, osteogenic, chondrogenic, and other lineages. Human periosteum-derived cells (hPDCs) exhibit multipotency similar to hBMCs, but hPDCs may offer enhanced potential for osteogenesis and chondrogenesis given their apparent endogenous role in bone and cartilage repair in vivo. Here, we examined whether hPDC differentiation is regulated by adhesive and mechanical cues comparable to that reported for hBMC differentiation. When cultured in the appropriate induction media, hPDCs at high cell seeding density demonstrated enhanced levels of adipogenic or chondrogenic markers as compared with hPDCs at low cell seeding density. Cell seeding density correlated inversely with projected area of cell spreading, and directly limiting cell spreading with micropatterned substrates promoted adipogenesis or chondrogenesis while substrates promoting cell spreading supported osteogenesis. Interestingly, cell seeding density influenced differentiation through both changes in cell shape and non-shape-mediated effects: density-dependent adipogenesis and chondrogenesis were regulated primarily by cell shape whereas non-shape effects strongly influenced osteogenic potential. Inhibition of cytoskeletal contractility by adding the Rho kinase inhibitor Y27632 further enhanced adipogenic differentiation and discouraged osteogenic differentiation of hPDCs. Together, our results suggest that multipotent lineage decisions of hPDCs are impacted by cell adhesive and mechanical cues, though to different extents than hBMCs. Thus, future studies of hPDCs and other primary stem cell populations with clinical potential should consider varying biophysical metrics for more thorough optimization of stem cell differentiation.

摘要

先前已经证明,细胞形状可以影响人骨髓间充质干细胞(hBMCs)向脂肪生成、成骨、软骨生成和其他谱系的分化。人骨膜来源细胞(hPDCs)表现出与 hBMCs 相似的多能性,但由于其在体内骨和软骨修复中的明显内源性作用,hPDCs 可能具有增强的成骨和成软骨潜力。在这里,我们研究了 hPDC 分化是否受到与报道的 hBMC 分化相似的黏附和机械线索的调节。当在适当的诱导培养基中培养时,与低细胞接种密度的 hPDCs 相比,高细胞接种密度的 hPDCs 表现出更高水平的脂肪生成或软骨生成标志物。细胞接种密度与细胞扩展的投影面积呈反比,并且通过微图案化底物直接限制细胞扩展,促进脂肪生成或软骨生成,而促进细胞扩展的底物支持成骨生成。有趣的是,细胞接种密度通过细胞形状的变化和非形状介导的效应影响分化:密度依赖性脂肪生成和软骨生成主要受细胞形状调节,而非形状效应强烈影响成骨潜能。通过添加 Rho 激酶抑制剂 Y27632 抑制细胞骨架收缩力进一步增强了 hPDCs 的脂肪生成分化,并抑制了其成骨分化。总之,我们的结果表明,hPDCs 的多能谱系决定受到细胞黏附和机械线索的影响,但程度与 hBMCs 不同。因此,对于具有临床潜力的 hPDCs 和其他原代干细胞群体的未来研究,应考虑不同的生物物理指标,以更全面地优化干细胞分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e9e/3507189/8b9cfdd19beb/bio-01-11-1058-f01.jpg

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