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首页> 外文期刊>American Journal of Veterinary Research >Isolation, characterization, and in vitro proliferation of canine mesenchymal stem cells derived from bone marrow, adipose tissue, muscle, and periosteum
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Isolation, characterization, and in vitro proliferation of canine mesenchymal stem cells derived from bone marrow, adipose tissue, muscle, and periosteum

机译:来源于骨髓,脂肪组织,肌肉和骨膜的犬间充质干细胞的分离,鉴定和体外增殖

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Objective-To isolate and characterize mesenchymal stem cells (MSCs) from canine muscle and periosteum and compare proliferative capacities of bone marrow-, adipose tissue-, muscle-, and periosteum-derived MSCs (BMSCs, AMSCs, MMSCs, and PMSCs, respectively). Sample-7 canine cadavers. Procedures-MSCs were characterized on the basis of morphology, immunofluorescence of MSC-associated cell surface markers, and expression of pluripotency-associated transcription factors. Morphological and histochemical methods were used to evaluate differentiation of MSCs cultured in adipogenic, osteogenic, and chondrogenic media. Messenger ribonucleic acid expression of alkaline phosphatase, RUNX2, OSTERIX, and OSTEOPONTIN were evaluated as markers for osteogenic differentiation. Passage-1 MSCs were counted at 24, 48, 72, and 96 hours to determine tissue-specific MSC proliferative capacity. Mesenchymal stem cell yield per gram of tissue was calculated for confluent passage-1 MSCs. Results-Successful isolation of BMSCs, AMSCs, MMSCs, and PMSCs was determined on the basis of morphology; expression of CD44 and CD90; no expression of CD34 and CD45; mRNA expression of SOX2, OCT4, and NANOG; and adipogenic and osteogenic differentiation. Proliferative capacity was not significantly different among BMSCs, AMSCs, MMSCs, and PMSCs over a 4-day culture period. Periosteum provided a significantly higher MSC yield per gram of tissue once confluent in passage 1 (mean +/- SD of 19,400,000 +/- 12,800,000 of PMSCs/g of periosteum obtained in a mean +/- SD of 13 +/- 1.64 days). Conclusions and Clinical Relevance-Results indicated that canine muscle and periosteum may be sources of MSCs. Periosteum was a superior tissue source for MSC yield and may be useful in allogenic applications. (Am J Vet Res 2012;73:1305-1317)
机译:目的-从犬肌肉和骨膜中分离和鉴定间充质干细胞(MSC),并比较骨髓,脂肪组织,肌肉和骨膜来源的MSC(分别为BMSC,AMSC,MMSC和PMSC)的增殖能力。 Sample-7犬尸。程序-MSCs的形态,MSC相关细胞表面标志物的免疫荧光和多能性相关转录因子的表达的基础上进行了表征。使用形态学和组织化学方法评估在脂肪形成,成骨和软骨形成培养基中培养的MSC的分化。评价了信使核糖核酸的碱性磷酸酶,RUNX2,OSTERIX和OSTEOPONTIN的表达作为成骨分化的标志。在24、48、72和96小时对第1代MSC计数,以确定组织特异性MSC的增殖能力。对于融合的传代1 MSC,计算每克组织的间充质干细胞产量。结果:根据形态学确定成功分离了BMSC,AMSC,MMSC和PMSC; CD44和CD90的表达; CD34和CD45无表达; SOX2,OCT4和NANOG的mRNA表达;以及成脂和成骨分化。在4天的培养期内,BMSC,AMSC,MMSC和PMSC的增殖能力没有显着差异。骨膜在第1代汇合后提供了每克组织明显更高的MSC产量(平均+/- SD为19,400,000 +/- 12,800,000 PMSC / g骨膜,平均+/- SD为13 +/- 1.64天) 。结论和临床意义-结果表明,犬肌肉和骨膜可能是MSC的来源。骨膜是产生MSC的优良组织来源,可能在同种异体应用中有用。 (Am J Vet Res 2012; 73:1305-1317)

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