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首页> 外文期刊>Biomaterials >A calcium-induced signaling cascade leading to osteogenic differentiation of human bone marrow-derived mesenchymal stromal cells
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A calcium-induced signaling cascade leading to osteogenic differentiation of human bone marrow-derived mesenchymal stromal cells

机译:钙诱导的信号传导级联反应,导致人骨髓间充质基质细胞成骨分化

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摘要

The response of osteoprogenitors to calcium (Ca 2+) is of primary interest for both normal bone homeostasis and the clinical field of bone regeneration. The latter makes use of calcium phosphate-based bone void fillers to heal bone defects, but it is currently not known how Ca 2+ released from these ceramic materials influences cells in situ. Here, we have created an invitro environment with high extracellular Ca 2+ concentration and investigated the response of human bone marrow-derived mesenchymal stromal cells (hMSCs) to it. Ca 2+ enhanced proliferation and morphological changes in hMSCs. Moreover, the expression of osteogenic genes is highly increased. A 3-fold up-regulation of BMP-2 is observed after only 6h and pharmaceutical interference with a number of proteins involved in Ca 2+ sensing showed that not the calcium sensing receptor, but rather type L voltage-gated calcium channels are involved in mediating the signaling pathway between extracellular Ca 2+ and BMP-2 expression. MEK1/2 activity is essential for the effect of Ca 2+ and using microarray analysis, we have identified c-Fos as an early Ca 2+ response gene. We have demonstrated that hMSC osteogenesis can be induced via extracellular Ca 2+, a simple and economic way of priming hMSCs for bone tissue engineering applications.
机译:骨祖细胞对钙(Ca 2+)的反应是正常骨稳态和骨再生临床领域的主要关注点。后者利用磷酸钙基骨空隙填充剂来治愈骨缺损,但目前尚不知道从这些陶瓷材料中释放的Ca 2+如何影响原位细胞。在这里,我们创建了一个具有高细胞外Ca 2+浓度的体外环境,并研究了人骨髓间充质基质细胞(hMSCs)对它的反应。 Ca 2+增强了hMSCs的增殖和形态变化。此外,成骨基因的表达高度增加。仅在6小时后观察到BMP-2的3倍上调,并且药物对许多参与Ca 2+传感的蛋白质的干扰显示,钙参与的不是钙传感受体,而是L型电压门控钙通道介导细胞外Ca 2+和BMP-2表达之间的信号通路。 MEK1 / 2活性对于Ca 2+的作用至关重要,并且使用微阵列分析,我们已经将c-Fos确定为早期的Ca 2+响应基因。我们已经证明可以通过细胞外Ca 2+诱导hMSC成骨,Ca 2+是引发hMSCs用于骨组织工程应用的一种简单而经济的方法。

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