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在一个鼠模型中,组织工程骨的发育过程中募集了两批连续且不同的宿主干细胞/祖细胞。

The recruitment of two consecutive and different waves of host stem/progenitor cells during the development of tissue-engineered bone in a murine model.

机构信息

Department of Oncology, Biology, and Genetics, University of Genova, Largo Rosanna Benzi 10, 16132 Genova, Italy.

出版信息

Biomaterials. 2010 Mar;31(8):2121-9. doi: 10.1016/j.biomaterials.2009.11.064. Epub 2009 Dec 14.

DOI:10.1016/j.biomaterials.2009.11.064
PMID:20004968
Abstract

Angiogenesis plays a central role in bone regeneration, not only for the transport of nutrients, but also for locally directing skeletal stem/progenitor cells. Following ectopic implantation of porous ceramic cubes seeded with mouse GFP-labeled mesenchymal stem cells (MSC) into syngenic mice, we investigated the cascade of events leading to bone formation. Implants harvested at different times were enzymatically digested to generate single-cell suspensions. Recovered cells were sorted to separate GFP+implanted MSC and host recruited GFP- cells. We isolated and characterized two different waves of cells, migrating from the host to the MSC-seeded ceramic. The first migrated cell population, recovered 7 days after implantation, was enriched in CD31+endothelial progenitors, while the second one, recruited at day 11, was enriched in CD146+pericyte-like cells. Both populations were not recruited into the scaffold following implantation of a non-MSC seeded ceramic. Pericyte-like cell mobilization was dependent on the first migrated endothelial cell population. Pericyte-like cells retained properties distinctive of stem cells, such as capacity of performing a high number of in vitro cell divisions and showed an osteogenic potential. Studies on the cross talk between implanted exogenous MSC and resident stem/progenitor cells could open new perspectives for future clinical applications.

摘要

血管生成在骨再生中起着核心作用,不仅为营养物质的运输提供了条件,还能局部引导骨骼干细胞/祖细胞。我们将种植有 GFP 标记的小鼠间充质干细胞 (MSC) 的多孔陶瓷立方体异位植入同基因小鼠体内后,研究了导致骨形成的级联反应。在不同时间收获的植入物进行酶消化以生成单细胞悬浮液。回收的细胞进行分选,以分离 GFP+植入 MSC 和宿主募集的 GFP-细胞。我们分离并鉴定了从宿主迁移到 MSC 种植陶瓷的两个不同的细胞波。在植入非 MSC 种植陶瓷后,第 7 天回收的第一个迁移细胞群体富含 CD31+内皮祖细胞,而第 11 天募集的第二个群体富含 CD146+周细胞样细胞。这两种群体在植入 MSC 种植陶瓷后都不会被募集到支架中。周细胞样细胞的动员依赖于第一个迁移的内皮细胞群体。周细胞样细胞保留了干细胞的特性,例如进行大量体外细胞分裂的能力,并表现出成骨潜能。研究植入的外源性 MSC 与驻留的干细胞/祖细胞之间的串扰可能为未来的临床应用开辟新的前景。

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