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首页> 外文期刊>Bio-medical materials and engineering >A tissue-engineered bioabsorbable nerve conduit created by three-dimensional culture of induced pluripotent stem cell-derived neurospheres
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A tissue-engineered bioabsorbable nerve conduit created by three-dimensional culture of induced pluripotent stem cell-derived neurospheres

机译:通过对诱导的多能干细胞衍生的神经球进行三维培养而创建的组织工程化的生物可吸收神经导管

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We previously reported a bioabsorbable nerve conduit coated with Schwann cells for the treatment of peripheral nerve defects. Since there have been dramatic developments in induced pluripotent stem (iPS) cells in recent years, the purpose of the present study was to create a tissue-engineered nerve conduit coated with iPS cell-derived neurospheres. Such a conduit was constructed by three-dimensional (3D)-culture of these cells using a bioabsorbable polymer conduit as a scaffold. The nerve conduit was composed of a mesh of poly L-lactide, and a porous sponge of 50% poly L-lactide and 50% poly ε-caprolactone. The primary and secondary neurospheres (PNS and SNS, respectively) induced from iPS cells were suspended in individual conduits. The conduits were incubated for 7 or 14 days in vitro and then evaluated using immunohistochemistry. All of the 7- and 14-day differentiated PNS and SNS were observed to have adhered to the inner surface of the conduits and to have migrated into the inner porous sponge. The engrafted cells were positive for anti-Tuj1, -S-100 and -GFAP antibodies, indicating that their pluripotent ability to form neural or glial cells was maintained. These findings indicate the feasibility of creating nerve conduits coated with a 3D-culture of iPS cell-derived neurospheres for the treatment of peripheral nerve defects.
机译:我们之前曾报道过一种覆盖有施万细胞的可生物吸收的神经导管,用于治疗周围神经缺损。由于近年来诱导多能干细胞(iPS)发生了显着发展,因此本研究的目的是创建一个由iPS细胞衍生的神经球包裹的组织工程化神经导管。通过使用可生物吸收的聚合物导管作为支架,通过对这些细胞进行三维(3D)培养来构建此类导管。神经导管由聚L-丙交酯的网眼和50%聚L-丙交酯和50%聚ε-己内酯的多孔海绵组成。从iPS细胞诱导的初级和次级神经球(分别为PNS和SNS)悬浮在单独的导管中。将导管在体外孵育7或14天,然后使用免疫组织化学进行评估。观察到所有7天和14天分化的PNS和SNS均已粘附到导管的内表面,并已迁移到内部多孔海绵中。移植的细胞对抗Tuj1,-S-100和-GFAP抗体呈阳性,表明维持了它们形成神经或神经胶质细胞的多能能力。这些发现表明,用iPS细胞来源的神经球的3D培养物包裹神经导管以治疗周围神经缺损的可行性。

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