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从人胎盘早期妊娠绒毛膜绒毛中克隆分离内皮祖细胞用于胎儿组织再生。

Clonal isolation of endothelial colony-forming cells from early gestation chorionic villi of human placenta for fetal tissue regeneration.

作者信息

Gao Kewa, He Siqi, Kumar Priyadarsini, Farmer Diana, Zhou Jianda, Wang Aijun

机构信息

Department of Burns and Plastic Surgery, The Third Xiangya Hospital of Central South University, Changsha 410013, Hunan Province, China.

Surgical Bioengineering Laboratory, Department of Surgery, University of California Davis, Sacramento, CA 95817, United States.

出版信息

World J Stem Cells. 2020 Feb 26;12(2):123-138. doi: 10.4252/wjsc.v12.i2.123.

Abstract

BACKGROUND

Endothelial colony-forming cells (ECFCs) have been implicated in the process of vascularization, which includes vasculogenesis and angiogenesis. Vasculogenesis is a formation of blood vessels, and is an essential physiological process that occurs during embryonic development and tissue regeneration. Angiogenesis is the growth of new capillaries from pre-existing blood vessels, which is observed both prenatally and postnatally. The placenta is an organ composed of a variety of fetal-derived cells, including ECFCs, and therefore has significant potential as a source of fetal ECFCs for tissue engineering.

AIM

To investigate the possibility of isolating clonal ECFCs from human early gestation chorionic villi (CV-ECFCs) of the placenta, and assess their potential for tissue engineering.

METHODS

The early gestation chorionic villus tissue was dissociated by enzyme digestion. Cells expressing CD31 were selected using magnetic-activated cell sorting, and plated in endothelial-specific growth medium. After 2-3 wks in culture, colonies displaying cobblestone-like morphology were manually picked using cloning cylinders. We characterized CV-ECFCs by flow cytometry, immunophenotyping, tube formation assay, and Dil-Ac-LDL uptake assay. Viral transduction of CV-ECFCs was performed using a Luciferase/tdTomato-containing lentiviral vector, and transduction efficiency was tested by fluorescent microscopy and flow cytometry. Compatibility of CV-ECFCs with a delivery vehicle was determined using an FDA approved, small intestinal submucosa extracellular matrix scaffold.

RESULTS

After four passages in 6-8 wks of culture, we obtained a total number of 1.8 × 10 CV-ECFCs using 100 mg of early gestational chorionic villus tissue. Immunophenotypic analyses by flow cytometry demonstrated that CV-ECFCs highly expressed the endothelial markers CD31, CD144, CD146, CD105, CD309, only partially expressed CD34, and did not express CD45 and CD90. CV-ECFCs were capable of acetylated low-density lipoprotein uptake and tube formation, similar to cord blood-derived ECFCs (CB-ECFCs). CV-ECFCs can be transduced with a Luciferase/tdTomato-containing lentiviral vector at a transduction efficiency of 85.1%. Seeding CV-ECFCs on a small intestinal submucosa extracellular matrix scaffold confirmed that CV-ECFCs were compatible with the biomaterial scaffold.

CONCLUSION

In summary, we established a magnetic sorting-assisted clonal isolation approach to derive CV-ECFCs. A substantial number of CV-ECFCs can be obtained within a short time frame, representing a promising novel source of ECFCs for fetal treatments.

摘要

背景

内皮祖细胞(ECFCs)参与血管生成过程,血管生成包括血管发生和血管生成。血管发生是血管的形成,是胚胎发育和组织再生过程中发生的重要生理过程。血管生成是从预先存在的血管中生长出新的毛细血管,在产前和产后均可观察到。胎盘是一个由多种胎儿来源的细胞组成的器官,包括ECFCs,因此作为组织工程中胎儿ECFCs的来源具有巨大潜力。

目的

研究从胎盘的人早孕绒毛膜绒毛(CV-ECFCs)中分离克隆ECFCs的可能性,并评估其在组织工程中的潜力。

方法

用酶消化法解离早孕绒毛组织。使用磁激活细胞分选技术选择表达CD31的细胞,并接种在内皮特异性生长培养基中。培养2-3周后,使用克隆环手动挑选出呈鹅卵石样形态的集落。我们通过流式细胞术、免疫表型分析、管形成试验和Dil-Ac-LDL摄取试验对CV-ECFCs进行了表征。使用含荧光素酶/tdTomato的慢病毒载体对CV-ECFCs进行病毒转导,并通过荧光显微镜和流式细胞术检测转导效率。使用FDA批准的小肠黏膜下层细胞外基质支架确定CV-ECFCs与递送载体的相容性。

结果

在6-8周的培养中传代4次后,我们使用100mg早孕绒毛组织获得了总数为1.8×10的CV-ECFCs。流式细胞术的免疫表型分析表明,CV-ECFCs高表达内皮标志物CD31、CD144、CD146、CD105、CD309,仅部分表达CD34,不表达CD45和CD90。CV-ECFCs能够摄取乙酰化低密度脂蛋白并形成管,类似于脐血来源的ECFCs(CB-ECFCs)。CV-ECFCs可以用含荧光素酶/tdTomato的慢病毒载体进行转导,转导效率为85.1%。将CV-ECFCs接种在小肠黏膜下层细胞外基质支架上证实CV-ECFCs与生物材料支架相容。

结论

总之,我们建立了一种磁分选辅助的克隆分离方法来获得CV-ECFCs。可以在短时间内获得大量的CV-ECFCs,这代表了一种用于胎儿治疗的有前景的新型ECFCs来源。

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