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The Potential of Menstrual Blood-Derived Mesenchymal Stem Cells for Cartilage Repair and Regeneration: Novel Aspects

机译:用于软骨修复和再生的月经性血液衍生间充质干细胞的潜力:新颖方面

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摘要

Menstrual blood is a unique body fluid that contains mesenchymal stem cells (MSCs). These cells have attracted a great deal of attention due to their exceptional advantages including easy access and frequently accessible sample source and no need for complex ethical and surgical interventions, as compared to other tissues. Menstrual blood-derived MSCs possess all the major stem cell properties and even have a greater proliferation and differentiation potential as compared to bone marrow-derived MSCs, making them a perspective tool in a further clinical practice. Although the potential of menstrual blood stem cells to differentiate into a large variety of tissue cells has been studied in many studies, their chondrogenic properties have not been extensively explored and investigated. Articular cartilage is susceptible to traumas and degenerative diseases, such as osteoarthritis, and has poor self-regeneration capacity and therefore requires more effective therapeutic technique. MSCs seem promising candidates for cartilage regeneration; however, no clinically effective stem cell-based repair method has yet emerged. This chapter focuses on studies in the field of menstrual blood-derived MSCs and their chondrogenic differentiation potential and suitability for application in cartilage regeneration. Although a very limited number of studies have been made in this field thus far, these cells might emerge as an efficient and easily accessible source of multipotent cells for cartilage engineering and cell-based chondroprotective therapy.
机译:月经血是一种独特的体液,含有间充质干细胞(MSC)。由于其特殊的优势,这些细胞引起了大量的注意力,包括易于访问和频繁访问的样本来源,并且与其他组织相比,不需要复杂的道德和外科干预措施。与骨髓衍生的MSC相比,月经血液衍生的MSCs具有甚至具有更大的增殖和分化电位,使其成为进一步的临床实践的透视工具。虽然在许多研究中已经研究了月经血液干细胞的潜力分化为各种组织细胞,但它们的软骨形成性能尚未得到广泛探索和研究。关节软骨易患创伤和退行性疾病,如骨关节炎,自再生能力差,因此需要更有效的治疗技术。 MSCs似乎有助于软骨再生的候选人;然而,尚未出现临床有效的干细胞的修复方法。本章重点介绍了在软骨再生中的月经血液衍生的MSCs及其软骨化分化潜力和适用性的研究。尽管该领域已经在该领域进行了非常有限数量的研究,但这些细胞可能被出现为软骨工程和基于细胞的软骨细胞的有效且易于访问的多能细胞来源。

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