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非牛顿聚合物-纳米粒子水凝胶在注射过程中提高细胞活力。

Non-Newtonian Polymer-Nanoparticle Hydrogels Enhance Cell Viability during Injection.

机构信息

Department of Materials Science & Engineering, Stanford University, Stanford, 94305, CA, United States.

Department of Chemical Engineering, Stanford University, Stanford, 94305, CA, United States.

出版信息

Macromol Biosci. 2019 Jan;19(1):e1800275. doi: 10.1002/mabi.201800275. Epub 2018 Oct 22.

Abstract

Drug delivery and cell transplantation require minimally invasive deployment strategies such as injection through clinically relevant high-gauge needles. Supramolecular hydrogels comprising dodecyl-modified hydroxypropylmethylcellulose and poly(ethylene glycol)-block-poly(lactic acid) have been previously demonstrated for the delivery of drugs and proteins. Here, it is demonstrated that the rheological properties of these hydrogels allow for facile injectability, an increase of cell viability after injection when compared to cell viabilities of cells injected in phosphate-buffered saline, and homogeneous cell suspensions that do not settle. These hydrogels are injected at 1 mL min with pressures less than 400 kPa, despite the solid-like properties of the gel when at rest. The cell viabilities immediately after injection are greater than 86% for adult human dermal fibroblasts, human umbilical vein cells, smooth muscle cells, and human mesenchymal stem cells. Cells are shown to remain suspended and proliferate in the hydrogel at the same rate as observed in cell media. The work expands on the versatility of these hydrogels and lays a foundation for the codelivery of drugs, proteins, and cells.

摘要

药物输送和细胞移植需要微创的部署策略,如通过临床相关的高规格针进行注射。先前已经证明,包含十二烷基改性羟丙基甲基纤维素和聚(乙二醇)-嵌段-聚(乳酸)的超分子水凝胶可用于输送药物和蛋白质。在这里,证明了这些水凝胶的流变性质允许其易于注射,与注射在磷酸盐缓冲盐溶液中的细胞相比,注射后的细胞活力增加,并且均匀的细胞悬浮液不会沉降。尽管凝胶在静止时具有固态特性,但这些水凝胶仍以 1 mL min 的速度以低于 400 kPa 的压力进行注射。注射后细胞活力立即大于 86%,适用于成人皮肤成纤维细胞、人脐静脉细胞、平滑肌细胞和人间充质干细胞。结果表明,细胞在水凝胶中保持悬浮并以与在细胞培养基中观察到的相同速度增殖。这项工作扩展了这些水凝胶的多功能性,并为药物、蛋白质和细胞的共输送奠定了基础。

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