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使用细胞-基质阻抗传感技术快速检测干细胞功能和潜能

Rapid assay of stem cell functionality and potency using electric cell-substrate impedance sensing.

作者信息

Rutten Michael J, Laraway Bryan, Gregory Cynthia R, Xie Hua, Renken Christian, Keese Charles, Gregory Kenton W

机构信息

Center for Regenerative Medicine, Oregon Health & Science University, 3181 SW Sam Jackson Park Road, 97239, Portland, OR, USA.

VA Portland Health Care System, 3710 SW US Veterans Hospital Road, 97239, Portland, OR, USA.

出版信息

Stem Cell Res Ther. 2015 Oct 5;6:192. doi: 10.1186/s13287-015-0182-2.

Abstract

Regenerative medicine studies using autologous bone marrow mononuclear cells (BM-MNCs) have shown improved clinical outcomes that correlate to in vitro BM-MNC invasive capacity. The current Boyden-chamber assay for testing invasive capacity is labor-intensive, provides only a single time point, and takes 36 hours to collect data and results, which is not practical from a clinical cell delivery perspective. To develop a rapid, sensitive and reproducible invasion assay, we employed Electric Cell-substrate Impedance Sensing (ECIS) technology. Chemokine-directed BM-MNC cell invasion across a Matrigel-coated Transwell filter was measurable within minutes using the ECIS system we developed. This ECIS-Transwell chamber system provides a rapid and sensitive test of stem and progenitor cell invasive capacity for evaluation of stem cell functionality to provide timely clinical data for selection of patients likely to realize clinical benefit in regenerative medicine treatments. This device could also supply robust unambiguous, reproducible and cost effective data as a potency assay for cell product release and regulatory strategies.

摘要

使用自体骨髓单个核细胞(BM-MNCs)的再生医学研究显示出改善的临床结果,这与体外BM-MNC的侵袭能力相关。当前用于测试侵袭能力的Boyden小室试验劳动强度大,仅提供单个时间点,且需要36小时来收集数据和结果,从临床细胞递送角度来看这并不实用。为了开发一种快速、灵敏且可重复的侵袭试验,我们采用了电场细胞基质阻抗传感(ECIS)技术。使用我们开发的ECIS系统,趋化因子引导的BM-MNC细胞穿过基质胶包被的Transwell滤膜的侵袭在数分钟内即可测量。这种ECIS-Transwell小室系统为干细胞和祖细胞侵袭能力提供了快速且灵敏的测试,用于评估干细胞功能,以便为再生医学治疗中可能实现临床获益的患者选择提供及时的临床数据。该设备还可以作为细胞产品放行和监管策略的效力测定,提供可靠、明确、可重复且具有成本效益的数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb9d/4594964/1f4b7a01de66/13287_2015_182_Fig1_HTML.jpg

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