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贴壁马骨髓间充质基质细胞的细胞生长特性及分化频率:成脂和成骨能力

Cell growth characteristics and differentiation frequency of adherent equine bone marrow-derived mesenchymal stromal cells: adipogenic and osteogenic capacity.

作者信息

Vidal Martin A, Kilroy Gail E, Johnson Jill R, Lopez Mandi J, Moore Rustin M, Gimble Jeffrey M

机构信息

Equine Health Studies Program, Department of Veterinary Clinical Sciences, School of Veterinary Medicine and the Stem Cell Laboratory, Pennington Biomedical Research Center, Louisiana State University, Baton Rouge, LA, USA.

出版信息

Vet Surg. 2006 Oct;35(7):601-10. doi: 10.1111/j.1532-950X.2006.00197.x.

Abstract

OBJECTIVES

To characterize equine bone marrow (BM)-derived mesenchymal stem cell (MSC) growth characteristics and frequency as well as their adipogenic and osteogenic differentiation potential.

STUDY DESIGN

In vitro experimental study.

ANIMALS

Foals (n=3, age range, 17-51 days) and young horses (n=5, age range, 9 months to 5 years).

METHODS

Equine MSCs were harvested and isolated from sternal BM aspirates and grown up to passage 10 to determine cell-doubling (CD) characteristics. Limit dilution assays were performed on primary and passaged MSCs to determine the frequency of colony-forming units with a fibroblastic phenotype (CFU-F), and the frequency of MSC differentiation into adipocytes (CFU-Ad) and osteoblasts (CFU-Ob).

RESULTS

Initial MSC isolates had a lag phase with a significantly longer CD time (DT=4.9+/-1.6 days) compared with the average DT (1.4+/-0.22 days) of subsequent MSC passages. Approximately 1 in 4224+/-3265 of the total nucleated BM cells displayed fibroblast colony-forming activity. Primary MSCs differentiated in response to adipogenic and osteogenic inductive conditions and maintained their differentiation potential during subsequent passages.

CONCLUSIONS

The frequency, in vitro growth rate, and adipogenic and osteogenic differentiation potential of foals and young adult horses are similar to those documented for BM MSCs of other mammalian species.

CLINICAL RELEVANCE

The results have direct relevance to the use of BM as a potential source of adult stem cells for tissue engineering applications in equine veterinary medicine.

摘要

目的

描述马骨髓(BM)来源的间充质干细胞(MSC)的生长特性、频率及其成脂和成骨分化潜能。

研究设计

体外实验研究。

动物

驹(n = 3,年龄范围17 - 51天)和幼马(n = 5,年龄范围9个月至5岁)。

方法

从胸骨骨髓抽吸物中采集并分离马MSC,培养至第10代以确定细胞倍增(CD)特性。对原代和传代的MSC进行极限稀释分析,以确定具有成纤维细胞表型的集落形成单位(CFU - F)的频率,以及MSC分化为脂肪细胞(CFU - Ad)和成骨细胞(CFU - Ob)的频率。

结果

最初分离的MSC有一个延迟期,与随后传代的MSC平均倍增时间(DT = 1.4±0.22天)相比,其CD时间显著更长(DT = 4.9±1.6天)。在总的有核骨髓细胞中,约每4224±3265个细胞中有1个显示出成纤维细胞集落形成活性。原代MSC在成脂和成骨诱导条件下分化,并在随后的传代过程中保持其分化潜能。

结论

驹和年轻成年马的频率、体外生长速率以及成脂和成骨分化潜能与其他哺乳动物物种骨髓MSC的记录相似。

临床相关性

这些结果与在马兽医医学中使用骨髓作为组织工程应用的成体干细胞潜在来源直接相关。

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