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挤出式生物打印在皮肤应用中的最新进展概述。

Overview of Current Advances in Extrusion Bioprinting for Skin Applications.

机构信息

Regenerative Therapies, Biocruces Bizkaia Health Research Institute, Cruces University Hospital, Plaza Cruces 12, 48903 Barakaldo, Spain.

出版信息

Int J Mol Sci. 2020 Sep 12;21(18):6679. doi: 10.3390/ijms21186679.

Abstract

Bioprinting technologies, which have the ability to combine various human cell phenotypes, signaling proteins, extracellular matrix components, and other scaffold-like biomaterials, are currently being exploited for the fabrication of human skin in regenerative medicine. We performed a systematic review to appraise the latest advances in 3D bioprinting for skin applications, describing the main cell phenotypes, signaling proteins, and bioinks used in extrusion platforms. To understand the current limitations of this technology for skin bioprinting, we briefly address the relevant aspects of skin biology. This field is in the early stage of development, and reported research on extrusion bioprinting for skin applications has shown moderate progress. We have identified two major trends. First, the biomimetic approach uses cell-laden natural polymers, including fibrinogen, decellularized extracellular matrix, and collagen. Second, the material engineering line of research, which is focused on the optimization of printable biomaterials that expedite the manufacturing process, mainly involves chemically functionalized polymers and reinforcement strategies through molecular blending and postprinting interventions, i.e., ionic, covalent, or light entanglement, to enhance the mechanical properties of the construct and facilitate layer-by-layer deposition. Skin constructs manufactured using the biomimetic approach have reached a higher level of complexity in biological terms, including up to five different cell phenotypes and mirroring the epidermis, dermis and hypodermis. The confluence of the two perspectives, representing interdisciplinary inputs, is required for further advancement toward the future translation of extrusion bioprinting and to meet the urgent clinical demand for skin equivalents.

摘要

生物打印技术具有将各种人类细胞表型、信号蛋白、细胞外基质成分和其他类似支架的生物材料结合起来的能力,目前正被用于再生医学中制造人类皮肤。我们进行了一项系统评价,以评估 3D 生物打印在皮肤应用中的最新进展,描述了在挤出平台中使用的主要细胞表型、信号蛋白和生物墨水。为了了解该技术在皮肤生物打印中的当前局限性,我们简要介绍了皮肤生物学的相关方面。该领域正处于早期发展阶段,已报道的用于皮肤应用的挤出式生物打印研究取得了中等进展。我们已经确定了两个主要趋势。首先,仿生方法使用细胞负载的天然聚合物,包括纤维蛋白原、脱细胞细胞外基质和胶原蛋白。其次,材料工程研究方向专注于优化可打印生物材料,以加速制造过程,主要涉及化学功能化聚合物和通过分子混合和后打印干预(即离子、共价或光缠结)增强构建体的机械性能的增强策略,以促进逐层沉积。使用仿生方法制造的皮肤构建体在生物学方面达到了更高的复杂性水平,包括多达五种不同的细胞表型,并模仿了表皮、真皮和皮下组织。这两个观点的融合,代表了跨学科的投入,是进一步推进挤出式生物打印的未来转化和满足皮肤等效物的迫切临床需求所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d7b/7555324/1f4e99e1b52b/ijms-21-06679-g001.jpg

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