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Functional Skin Grafts: Where Biomaterials Meet Stem Cells

机译:功能性皮肤移植:生物材料与干细胞相遇的地方

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摘要

Skin tissue engineering has attained several clinical milestones making remarkable progress over the past decades. Skin is inhabited by a plethora of cells spatiotemporally arranged in a 3-dimensional (3D) matrix, creating a complex microenvironment of cell-matrix interactions. This complexity makes it difficult to mimic the native skin structure using conventional tissue engineering approaches. With the advent of newer fabrication strategies, the field is evolving rapidly. However, there is still a long way before an artificial skin substitute can fully mimic the functions and anatomical hierarchy of native human skin. The current focus of skin tissue engineers is primarily to develop a 3D construct that maintains the functionality of cultured cells in a guided manner over a period of time. While several natural and synthetic biopolymers have been translated, only partial clinical success is attained so far. Key challenges include the hierarchical complexity of skin anatomy; compositional mismatch in terms of material properties (stiffness, roughness, wettability) and degradation rate; biological complications like varied cell numbers, cell types, matrix gradients in each layer, varied immune responses, and varied methods of fabrication. In addition, with newer biomaterials being adopted for fabricating patient-specific skin substitutes, issues related to escalating processing costs, scalability, and stability of the constructs under in vivo conditions have raised some concerns. This review provides an overview of the field of skin regenerative medicine, existing clinical therapies, and limitations of the current techniques. We have further elaborated on the upcoming tissue engineering strategies that may serve as promising alternatives for generating functional skin substitutes, the pros and cons associated with each technique, and scope of their translational potential in the treatment of chronic skin ailments.
机译:在过去的几十年中,皮肤组织工程已经取得了几个临床里程碑,并取得了显着进展。皮肤被时空排列在3维(3D)矩阵中的大量细胞所占据,从而形成了复杂的细胞-基质相互作用的微环境。这种复杂性使得难以使用常规组织工程方法来模仿天然皮肤结构。随着更新的制造策略的出现,该领域正在迅速发展。但是,人造皮肤替代品要完全模仿天然人类皮肤的功能和解剖结构,还有很长的路要走。皮肤组织工程师当前的重点主要是开发3D构建体,该构建体在一段时间内以引导方式维持培养细胞的功能。尽管已经翻译了几种天然和合成的生物聚合物,但到目前为止仅获得部分临床成功。关键挑战包括皮肤解剖结构的层次复杂性;在材料性能(刚度,粗糙度,润湿性)和降解率方面组成不匹配;生物学并发症,例如变化的细胞数量,细胞类型,每一层中的基质梯度,变化的免疫反应和变化的制备方法。另外,随着采用新的生物材料来制造针对患者的皮肤替代品,与不断提高的加工成本,可扩展性以及在体内条件下构建体的稳定性有关的问题引起了一些关注。这篇综述概述了皮肤再生医学领域,现有的临床疗法以及当前技术的局限性。我们进一步阐述了即将到来的组织工程学策略,这些策略可作为产生功能性皮肤替代品的有前途的替代方法,与每种技术相关的利弊,以及它们在治疗慢性皮肤病中的翻译潜力范围。

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