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单细胞纳米压痕下骨细胞网络中的细胞内钙波

Intracellular calcium waves in bone cell networks under single cell nanoindentation.

作者信息

Guo X Edward, Takai Erica, Jiang Xingyu, Xu Qiaobing, Whitesides George M, Yardley James T, Hung Clark T, Chow Eugene M, Hantschel Thomas, Costa Kevin D

机构信息

Department of Biomedical Engineering, Columbia University, New York, NY 10027, USA.

出版信息

Mol Cell Biomech. 2006 Sep;3(3):95-107.

Abstract

In this study, bone cells were successfully cultured into a micropatterned network with dimensions close to that of in vivo osteocyte networks using microcontact printing and self-assembled monolyers (SAMs). The optimal geometric parameters for the formation of these networks were determined in terms of circle diameters and line widths. Bone cells patterned in these networks were also able to form gap junctions with each other, shown by immunofluorescent staining for the gap junction protein connexin 43, as well as the transfer of gap-junction permeable calcein-AM dye. We have demonstrated for the first time, that the intracellular calcium response of a single bone cell indented in this bone cell network, can be transmitted to neighboring bone cells through multiple calcium waves. Furthermore, the propagation of these calcium waves was diminished with increased cell separation distance. Thus, this study provides new experimental data that support the idea of osteocyte network memory of mechanical loading similar to memory in neural networks.

摘要

在本研究中,利用微接触印刷和自组装单分子层(SAMs),成功地将骨细胞培养成了尺寸接近体内骨细胞网络的微图案化网络。根据圆直径和线宽确定了形成这些网络的最佳几何参数。通过对间隙连接蛋白连接蛋白43的免疫荧光染色以及间隙连接可渗透的钙黄绿素-AM染料的转移表明,在这些网络中形成图案的骨细胞也能够相互形成间隙连接。我们首次证明,在该骨细胞网络中凹陷的单个骨细胞的细胞内钙反应,可以通过多个钙波传递给相邻的骨细胞。此外,随着细胞分离距离的增加,这些钙波的传播减弱。因此,本研究提供了新的实验数据,支持了骨细胞网络对机械负荷具有类似于神经网络记忆的记忆这一观点。

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