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Targeting Matrix Metalloproteinases: A Potential Strategy for Improving Cell Transplantation for Nervous System Repair

机译:靶向基质金属蛋白酶:改善神经系统修复细胞移植的潜在策略

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摘要

Cell transplantation shows promise for repair of the injured nervous system, including spinal cord injury (SCI) and peripheral nerve injury (PNI). There are, however, still problems hampering these therapies moving from bench to bedside, and the methods need optimization. Three-dimensional (3D) cell culture systems are suggested to improve outcomes, bridging the gap between the in vitro and in vivo environments. In such constructs, cells are allowed to interact with each other and with the extracellular matrix (ECM) in 3D as they do in vivo. Transplanting cells in 3D constructs, rather than in suspension, is thought to promote cell survival and maintain important cellular behaviors. One such critical behavior is cell migration into and within the injury site. Understanding and controlling the migratory capability of 3D-cultured cells is therefore pivotal for developing better transplantation techniques. ECM remodelling can influence numerous cellular functions, including cell migration and matrix metalloproteinases (MMPs) are important enzymes for ECM modulation. Here, we discuss the idea of modulating MMPs to control cell migration in 3D culture systems, which can improve the therapeutic potential of cells transplanted in 3D.
机译:细胞移植显示治疗受伤神经系统的承诺,包括脊髓损伤(SCI)和周围神经损伤(PNI)。然而,存在阻碍这些疗法从长凳移动到床边的问题,方法需要优化。建议三维(3D)细胞培养系统改善结果,弥合体外和体内环境之间的差距。在这些构建体中,使细胞彼此相互作用,并且在体内以3D中的细胞外基质(ECM)相互作用。认为3D构建体中的细胞,而不是悬浮液,旨在促进细胞存活并保持重要的细胞行为。一种这样的关键行为是细胞迁移到损伤部位和内部。因此,理解和控制3D培养细胞的迁移能力,用于显影更好的移植技术。 ECM重塑可以影响许多细胞功能,包括细胞迁移和基质金属蛋白酶(MMP)是ECM调制的重要酶。在这里,我们讨论调节MMP以控制3D培养系统中的细胞迁移的想法,这可以改善在3D中移植细胞的治疗潜力。

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