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Recent Patents Pertaining to Immune Modulation and Musculoskeletal Regeneration with Whartons Jelly Cells

机译:与沃顿果冻细胞的免疫调节和肌肉骨骼再生有关的最新专利

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摘要

Umbilical cord mesenchymal stromal cells (UCMSCs) are isolated from Wharton's jelly in the umbilical cord at birth, and offer advantages over adult mesenchymal stromal cells (MSCs) such as highly efficient isolation, faster proliferation in vitro, a broader differentiation potential, and non-invasive harvesting procedure. Their expansion and differentiation potential renders them a promising cell source for tissue engineering and clinical applications. This review discusses recent updates on the differentiation strategies for musculoskeletal tissue engineering including cartilage, bone, and muscle. In addition to tissue engineering applications, UCMSCs can be utilized to support hematopoiesis and modulate immune response. We review the patents relevant to the application of MSCs including UCMSCs in hematopoiesis and immune modulation. Finally, the current hurdles in the clinical translation of UCMSCs are discussed. During clinical translation, it is critical to develop large-scale manufacturing of UCMSCs as well as the composition of expansion and differentiation media. Four clinical trials to date have examined the safety and efficacy of UCMSCs. Once public banking of UCMSCs is available to supply matched allogeneic units and once UCMSC manufacturing is standardized, we anticipate that UCMSCs will be more widely used in clinical trials.
机译:脐带间充质基质细胞(UCMSCs)出生时是从脐带中的沃顿氏胶体中分离出来的,与成年间充质基质细胞(MSCs)相比具有优势,例如高效分离,体外快速增殖,更广泛的分化潜力以及非有创收割程序。它们的扩增和分化潜力使其成为组织工程和临床应用的有希望的细胞来源。这篇综述讨论了关于肌肉骨骼组织工程包括软骨,骨骼和肌肉的分化策略的最新进展。除了组织工程应用外,UCMSC还可以用于支持造血和调节免疫反应。我们审查与包括造血细胞和免疫调节的UCMSCs在内的MSCs相关的专利。最后,讨论了UCMSCs临床翻译中的当前障碍。在临床翻译过程中,开发大规模生产UCMSC以及扩增和分化培养基的组成至关重要。迄今为止,已有四项临床试验检查了UCMSC的安全性和有效性。一旦UCMSC的公共银行可用于提供匹配的同种异体单位,并且一旦UCMSC的制造标准化,我们预计UCMSC将会在临床试验中得到更广泛的应用。

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