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Expanding Donor Muscle-Derived Cells for Transplantation

机译:扩大供体肌肉来源的细胞进行移植

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摘要

Studies in mice showed tremendous promise for the eventual clinical utility of myoblast transplantation to treat human muscular dystrophies. Initial attempts to translate the murine studies to humans, however, were not successful, due in part to limited engraftability of expanded donor myoblasts. Conventionally, muscle cells have been cultured on collagen-coated tissue culture treated polystyrene. However, this promotes lineage progression and differentiation of cells, which limits engraftment potential. This unit describes the isolation of canine muscle-derived cells, ex vivo expansion of cells on plates coated with a modified Notch ligand, and the xenotransplant method used to evaluate engraftment potential. Activation of Notch signaling in freshly isolated canine muscle-derived cells with Delta-1ext-IgG inhibits myogenic differentiation, and maintains cells earlier in myogenic lineage progression. Delta-1ext-IgG-expanded cells engraft into the regenerating muscle of NOD/SCID mice more effectively than control cells expanded on human IgG, as evidenced by a significant increase in the number of muscle fibers expressing canine dystrophin in recipient murine muscle. Therefore, this protocol provides the basis for further developing culture conditions for ex vivo expansion of donor muscle cells for transplant.
机译:小鼠研究表明,成肌细胞移植最终可用于治疗人类肌肉营养不良的临床应用前景广阔。然而,最初的尝试将鼠类研究转化为人类,但是由于扩展的供体成肌细胞的可移植性有限,因此没有成功。常规地,已经在胶原蛋白涂覆的组织培养物处理的聚苯乙烯上培养了肌肉细胞。然而,这促进细胞的谱系发展和分化,这限制了植入的潜力。该单元描述了犬肌肉衍生细胞的分离,细胞在经修饰的Notch配体包被的板上的离体扩增以及用于评估植入潜力的异种移植方法。用Delta-1 ext -IgG对新鲜分离的犬肌肉来源的细胞中Notch信号的激活抑制了肌原性分化,并使细胞保持了较早的肌原性谱系进程。 Delta-1 ext -IgG扩增的细胞比用人IgG扩增的对照细胞更有效地移植到NOD / SCID小鼠的再生肌肉中,这由表达犬的肌肉纤维数量的显着增加所证明受体鼠肌中的肌营养不良蛋白。因此,该方案为进一步开发用于供体供体肌肉细胞离体扩增的培养条件提供了基础。

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