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使用细胞外基质包裹的细胞在体内植入角膜内皮。

In vivo engraftment into the cornea endothelium using extracellular matrix shrink-wrapped cells.

作者信息

Palchesko Rachelle N, Du Yiqin, Geary Moira L, Carrasquilla Santiago, Shiwarski Daniel J, Khandaker Irona, Funderburgh James L, Feinberg Adam W

机构信息

Department of Biomedical Engineering, Carnegie Mellon University, Pittsburgh, PA 15213, USA.

Department of Ophthalmology, University of Pittsburgh, Pittsburgh, PA 15213, USA.

出版信息

Commun Mater. 2022;3(1). doi: 10.1038/s43246-022-00247-1. Epub 2022 Apr 26.

Abstract

Cell injection is a common clinical approach for therapeutic delivery into diseased and damaged tissues in order to achieve regeneration. However, cell retention, viability, and engraftment at the injection site have generally been poor, driving the need for improved approaches. Here, we developed a technique to shrink-wrap micropatterned islands of corneal endothelial cells in a basement membrane-like layer of extracellular matrix that enables the cells to maintain their cell-cell junctions and cytoskeletal structure while in suspension. These μMonolayers exhibited the ability to rapidly engraft into intact, high-density corneal endothelial monolayers in both in vitro and in vivo model systems. Importantly, the engrafted μMonolayers increased local cell density, something that the clinical-standard single cells in suspension failed to do. These results show that shrink-wrapping cells in extracellular matrix dramatically improves engraftment and provides a potential alternative to cornea transplant when low endothelial cell density is the cause of corneal blindness.

摘要

细胞注射是一种常见的临床方法,用于将治疗物质递送至患病和受损组织以实现再生。然而,细胞在注射部位的保留、活力和植入情况通常较差,这促使人们需要改进方法。在此,我们开发了一种技术,可在细胞外基质的基底膜样层中收缩包裹角膜内皮细胞的微图案化岛状物,使细胞在悬浮状态下能够维持其细胞间连接和细胞骨架结构。这些μ单层在体外和体内模型系统中均表现出能够快速植入完整的高密度角膜内皮单层中的能力。重要的是,植入的μ单层增加了局部细胞密度,而悬浮状态下的临床标准单细胞则无法做到这一点。这些结果表明,在细胞外基质中收缩包裹细胞可显著改善植入情况,并在低内皮细胞密度导致角膜盲时为角膜移植提供了一种潜在的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e67c/11340414/4bbd69128a44/nihms-1920012-f0001.jpg

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