Key Laboratory for Biomechanics and Mechanobiology of Ministry of Education, School of Biological Science and Medical Engineering, Beihang University, XueYuan Road No.37, Haidian District, Beijing100191, China.
Nanoscale. 2012 Apr 7;4(7):2484-90. doi: 10.1039/c2nr12072k. Epub 2012 Feb 27.
Regenerative medicine consisting of cells and materials provides a new way for the repair and regeneration of tissues and organs. Nano-biomaterials are highlighted due to their advantageous features compared with conventional micro-materials. The aim of this study is to investigate the effects of micro-/nano- sized hydroxyapatite (μ/n-HA) on the osteogenic differentiation of rat bone marrow derived mesenchymal stem cells (rBMSCs). μ/n-HA were prepared by a microwave synthesizer and precipitation method, respectively. Different sizes of μ/n-HA were characterized by IR, XRD, SEM, TEM and co-cultured with rBMSCs. It was shown that rBMSCs expressed higher levels of osteoblast-related markers by n-HA than μ-HA stimulation. The size of HA is an important factor for affecting the osteogenic differentiation of rBMSCs. This provides a new avenue for mechanistic studies of stem cell differentiation and a new approach to obtain more committed differentiated cells.
再生医学由细胞和材料组成,为组织和器官的修复和再生提供了新途径。与传统的微材料相比,纳米生物材料具有优势,因此备受关注。本研究旨在探讨微米/纳米级羟基磷灰石(μ/n-HA)对大鼠骨髓间充质干细胞(rBMSCs)成骨分化的影响。分别采用微波合成仪和沉淀法制备了μ/n-HA。通过 IR、XRD、SEM、TEM 对不同大小的 μ/n-HA 进行了表征,并与 rBMSCs 共培养。结果表明,n-HA 刺激 rBMSCs 表达更高水平的成骨相关标志物。HA 的大小是影响 rBMSCs 成骨分化的重要因素。这为干细胞分化的机制研究提供了新途径,也为获得更多定向分化的细胞提供了新方法。