利用脐带间充质干细胞进行骨与软骨再生。
Bone and cartilage regeneration with the use of umbilical cord mesenchymal stem cells.
作者信息
Klontzas Michail E, Kenanidis Eustathios I, Heliotis Manolis, Tsiridis Eleftherios, Mantalaris Athanasios
机构信息
a 1 Imperial College London, Department of Chemical Engineering and Chemical Technology , South Kensington Campus, London, UK
b 2 Aristotle University Medical School, Academic Orthopaedic Unit , University Campus 54 124, Thessaloniki, Greece.
出版信息
Expert Opin Biol Ther. 2015;15(11):1541-52. doi: 10.1517/14712598.2015.1068755. Epub 2015 Jul 15.
INTRODUCTION
The production of functional alternatives to bone autografts and the development new treatment strategies for cartilage defects are great challenges that could be addressed by the field of tissue engineering. Umbilical cord mesenchymal stem cells (MSCs) can be used to produce cost-effective, atraumatic and possibly autologous bone and cartilage grafts.
AREAS COVERED
MSCs can be isolated from umbilical cord Wharton's jelly, perivascular tissue and blood using various techniques. Those cells have been characterized and phenotypic similarities with bone marrow-derived MSCs (BM-MSCs) and embryonic stem cells have been found. Findings on their differentiation into the osteogenic and chondrogenic lineage differ between studies and are not as consistent as for BM-MSCs.
EXPERT OPINION
MSCs from umbilical cords have to be more extensively studied and the mechanisms underlying their differentiation have to be clarified. To date, they seem to be an attractive alternative to BM-MSCs. However, further research with suitable scaffolds and growth factors as well as with novel scaffold fabrication and culture technology should be conducted before they are introduced to clinical practice and replace BM-MSCs.
引言
生产骨自体移植的功能替代物以及开发软骨缺损的新治疗策略是组织工程领域可能应对的巨大挑战。脐带间充质干细胞(MSCs)可用于生产具有成本效益、无创且可能为自体的骨和软骨移植物。
涵盖领域
可使用各种技术从脐带华通氏胶、血管周围组织和血液中分离出MSCs。已对这些细胞进行了表征,并发现它们与骨髓来源的MSCs(BM-MSCs)存在表型相似性,且与胚胎干细胞也有相似之处。关于它们向成骨和成软骨谱系分化的研究结果存在差异,不如BM-MSCs那样一致。
专家观点
脐带来源的MSCs必须进行更广泛的研究,并阐明其分化的潜在机制。迄今为止,它们似乎是BM-MSCs的一种有吸引力的替代物。然而,在将它们引入临床实践并替代BM-MSCs之前,应使用合适的支架和生长因子以及新型支架制造和培养技术进行进一步研究。