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通过体外主动脉环试验的新应用评估细胞治疗候选物的血管生成潜力

Angiogenic potency evaluation of cell therapy candidates by a novel application of the in vitro aortic ring assay.

作者信息

Iqbal Farwah, Szaraz Peter, Librach Matthew, Gauthier-Fisher Andrée, Librach Clifford L

机构信息

The Create Fertility Centre, 790 Bay Street, Suite 412, Toronto, Ontario, M5G 1N8, Canada.

Department of Physiology, University of Toronto, 1 King's College Circle, Room 3127, Toronto, Ontario, M5S 1A8, Canada.

出版信息

Stem Cell Res Ther. 2017 Aug 14;8(1):184. doi: 10.1186/s13287-017-0631-1.

Abstract

BACKGROUND

Due to limitations of current angiogenesis assays, we aimed to develop a novel application of the rat aortic ring assay to assess the angiogenic potential of mesenchymal stromal cells (MSCs). First-trimester human umbilical cord-derived perivascular cells (FTM HUCPVCs) have multipotent characteristics and previously demonstrated angiogenic potential. We compared the effect of this young source of MSCs and adult bone marrow stromal cells (BMSCs) on ex vivo aortic endothelial network formation.

METHODS

Thoracic segments of adult rat aortas were isolated, sectioned and embedded into Matrigel™. Fluorophore-labeled FTM HUCPVC lines and BMSCs (N = 3) were cocultured with developing endothelial networks (day 0). MSC integration, tube formation and endothelial network growth were monitored daily using phase-contrast and fluorescence microscopy. Quantification of endothelial networks was performed using ImageJ network analysis software on day 5 of coculture.

RESULTS

FTM HUCPVCs from two umbilical cord samples migrated toward and integrated with developing aortic ring tubular networks while displaying elongated morphologies (day 1). In contrast, BMSCs did not show targeted migration and maintained spherical morphologies with limited physical interactions. Within 1 week of coculture, FTM HUCPVC lines contributed to significantly greater radial network growth and network loop formation when compared to BMSCs and untreated networks.

CONCLUSIONS

We have developed a novel potency assay to assess the angiogenic potential of cell therapy candidates. Favorable properties of FTM HUCPVCs over BMSCs that we observed with this assay and which merit further study include chemotaxis, affinity for developing vasculature, and physical supportive interactions contributing to the development of endothelial networks.

摘要

背景

由于当前血管生成检测方法存在局限性,我们旨在开发大鼠主动脉环检测法的一种新应用,以评估间充质基质细胞(MSC)的血管生成潜力。孕早期人脐带源血管周细胞(FTM HUCPVC)具有多能特性,且先前已证明其具有血管生成潜力。我们比较了这种年轻来源的MSC与成年骨髓基质细胞(BMSC)对体外主动脉内皮网络形成的影响。

方法

分离成年大鼠主动脉的胸段,切片并包埋于基质胶中。将荧光团标记的FTM HUCPVC系和BMSC(N = 3)与正在发育的内皮网络(第0天)共培养。每天使用相差显微镜和荧光显微镜监测MSC的整合、管形成和内皮网络生长。在共培养第5天,使用ImageJ网络分析软件对内皮网络进行定量分析。

结果

来自两个脐带样本的FTM HUCPVC向正在发育的主动脉环管状网络迁移并与之整合,同时呈现出细长形态(第1天)。相比之下,BMSC未表现出靶向迁移,保持球形形态,物理相互作用有限。共培养1周内,与BMSC和未处理的网络相比,FTM HUCPVC系对径向网络生长和网络环形成的贡献显著更大。

结论

我们开发了一种新的效能检测方法,以评估细胞治疗候选物的血管生成潜力。通过该检测方法,我们观察到FTM HUCPVC相对于BMSC具有的有利特性,值得进一步研究,包括趋化性、对正在发育的脉管系统的亲和力以及有助于内皮网络发育的物理支持性相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d76/5557530/511c4b8d8818/13287_2017_631_Fig1_HTML.jpg

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