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水凝胶封装以提高注射器针头流动过程中的细胞活力。

Hydrogel encapsulation to improve cell viability during syringe needle flow.

作者信息

Wagner Matthew A, Marks William H, Bhatia Sujata K

机构信息

Harvard University, School of Engineering and Applied Sciences, Cambridge, Massachusetts.

School of Engineering and Applied Sciences, Harvard University, Cambridge, MA, USA 02138.

出版信息

J Long Term Eff Med Implants. 2014;24(2-3):151-62. doi: 10.1615/jlongtermeffmedimplants.2014010946.

Abstract

This work examines pluronic F-127 poloxamer for cell protection during injection through a syringe needle. Direct cell injection is a minimally invasive method for cell transplantation; however, it often results in poor cell viability. We proposed that encapsulating cells in this hydrogel would protect cells from detrimental mechanical forces during injection and increase cell viability. The hydrogel was tested at multiple weights and carbon nanobrush concentrations to determine how gel weight affects cell viability as well as to allow the gels to remain as electrically conductive scaffolds. This work assessed the ability of the hydrogel to prevent cell membrane bursting. We used D1 multipotent mouse bone marrow stromal precursor cells for this study. We found that the pressure drop increases with increasing weight of the gels. However, cell viability also increases as the weight of the gels increases. These results support the proposition that hydrogels can be used to protect cells during syringe needle injection. Since these hydrogels undergo a reverse phase transition, the gels can be used to transplant cells into the body in solution form through injection. The gels will then harden in situ to allow for cell proliferation and tissue regeneration at the desired site.

摘要

本研究考察了泊洛沙姆F-127在通过注射器针头注射过程中对细胞的保护作用。直接细胞注射是一种用于细胞移植的微创方法;然而,它常常导致细胞活力不佳。我们提出,将细胞封装在这种水凝胶中可在注射过程中保护细胞免受有害机械力的影响,并提高细胞活力。对水凝胶在多种重量和碳纳米刷浓度下进行了测试,以确定凝胶重量如何影响细胞活力,并使凝胶保持为导电支架。本研究评估了水凝胶防止细胞膜破裂的能力。我们使用D1多能小鼠骨髓基质前体细胞进行本研究。我们发现,随着凝胶重量的增加,压降也会增加。然而,细胞活力也随着凝胶重量的增加而提高。这些结果支持了水凝胶可用于在注射器针头注射过程中保护细胞这一观点。由于这些水凝胶会发生逆相变,因此可通过注射以溶液形式将细胞移植到体内。然后凝胶会在原位硬化,以允许细胞在所需部位增殖和组织再生。

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