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Development of a micromanipulator-based loading device for mechanoregulation study of human mesenchymal stem cells in three-dimensional collagen constructs

机译:基于显微操作器的加载装置的开发,用于三维胶原构建体中人间充质干细胞的机械调节研究

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摘要

Mechanical signal is important for regulating cellular activities, including proliferation, metabolism, matrix production, and orientation. Bioreactors with loading functions can be used to precondition cells in three-dimensional (3D) constructs so as to study the cellular responses to mechanical stimulation. However, full-scale bioreactor is not always an affordable option considering the high cost of equipments and the liter-sized medium with serum and growth factor supplements. In this study, a custom-built loading system was developed by coupling a conventional camera-equipped inverted research microscope with two micromanipulators. The system was programmed to deliver either cyclic compressive loading with different frequencies or static compressive loading for 1 week to investigate the cellular responses of human mesenchymal stem cells (hMSCs) entrapped in a 3D construct consists of reconstituted collagen fibers. Cellular properties, including their alignment, cytoskeleton, and cell metabolism, and properties of matrix molecules, such as collagen fiber alignment and glycosaminoglycan deposition, were evaluated. Using a MatLab-based image analysis program, reorientation of the entrapped cells from a random distribution to a preferred alignment along the loading direction in constructs with both static and cyclic compression has been demonstrated, but no such alignment was found in the free-floating controls. Fluorescent staining on filamentous actin cytoskeleton also confirmed the finding. Nevertheless, the collagen fiber meshwork entrapping the hMSCs remained randomly distributed, and no change in cellular metabolism and glycosaminoglycans production was noted. The current study provides a simple and affordable option toward setting up a mechanoregulation facility based on existing laboratory equipments and sheds new insights on the effect of mechanical loading on the alignment of hMSCs in 3D collagen constructs. Copyright © 2010, Mary Ann Liebert, Inc.
机译:机械信号对于调节细胞活性(包括增殖,代谢,基质产生和方向)很重要。具有加载功能的生物反应器可用于预处理3D(3D)结构中的细胞,从而研究细胞对机械刺激的反应。然而,考虑到设备的高成本以及带有血清和生长因子补充剂的小尺寸培养基,全尺寸生物反应器并非总是负担得起的选择。在这项研究中,通过将配备有常规摄像头的倒置研究显微镜与两个微操纵器相结合,开发了定制的装载系统。该系统被编程为以不同的频率传递周期性压缩载荷或静态压缩载荷1周,以研究包裹在由重组胶原纤维组成的3D构建物中的人间充质干细胞(hMSC)的细胞反应。评估了细胞特性,包括它们的排列,细胞骨架和细胞代谢,以及基质分子的特性,例如胶原纤维的排列和糖胺聚糖的沉积。使用基于MatLab的图像分析程序,已经证明了在静态和循环压缩的构造中,捕获的细胞从随机分布沿加载方向重新定向为首选对齐方式,但在自由浮动控件中未发现此类对齐方式。丝状肌动蛋白细胞骨架的荧光染色也证实了这一发现。尽管如此,截留hMSC的胶原纤维网仍然保持随机分布,并且未观察到细胞代谢和糖胺聚糖生产的变化。当前的研究为在现有实验室设备的基础上建立机械调节设备提供了一种简单而经济的选择,并且对机械载荷对3D胶原构建物中hMSC排列的影响产生了新的见解。版权所有©2010,Mary Ann Liebert,Inc.。

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