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生物打印皮肤替代物用于伤口愈合的现状展望

Perspectives on the Current State of Bioprinted Skin Substitutes for Wound Healing.

作者信息

Sörgel Celena A, Cai Aijia, Schmid Rafael, Horch Raymund E

机构信息

Laboratory for Tissue Engineering and Regenerative Medicine, Department of Plastic and Hand Surgery, University Hospital of Erlangen, Friedrich-Alexander University Erlangen-Nürnberg (FAU), 91054 Erlangen, Germany.

出版信息

Biomedicines. 2023 Sep 29;11(10):2678. doi: 10.3390/biomedicines11102678.

Abstract

Human skin is particularly vulnerable to external damaging influences such as irradiation, extreme temperatures, chemical trauma, and certain systemic diseases, which reduce the skin's capacity for regeneration and restoration and can possibly lead to large-scale skin defects. To restore skin continuity in severe cases, surgical interventions such as the transplantation of autologous tissue are needed. Nevertheless, the coverage of larger skin defects caused by severe third-grade burns or extensive irradiation therapy is limited due to the depletion of uninjured autologous tissue. In such cases, many of the patient's epidermal cells can become available using biofabricated skin grafts, thereby restoring the skin's vital functions. Given the limited availability of autologous skin grafts for restoring integrity in large-scale defects, using bioprinted constructs as skin graft substitutes could offer an encouraging therapeutic alternative to conventional therapies for large-scale wounds, such as the transplantation of autologous tissue. Using layer-by-layer aggregation or volumetric bioprinting, inkjet bioprinting, laser-assisted bioprinting, or extrusion-based bioprinting, skin cells are deposited in a desired pattern. The resulting constructs may be used as skin graft substitutes to accelerate wound healing and reconstitute the physiological functions of the skin. In this review, we aimed to elucidate the current state of bioprinting within the context of skin tissue engineering and introduce and discuss different bioprinting techniques, possible approaches and materials, commonly used cell types, and strategies for graft vascularization for the production of bioprinted constructs for use as skin graft substitutes.

摘要

人类皮肤特别容易受到外部损害性影响,如辐射、极端温度、化学创伤和某些全身性疾病,这些会降低皮肤的再生和修复能力,并可能导致大面积皮肤缺损。在严重情况下,为恢复皮肤的连续性,需要进行手术干预,如自体组织移植。然而,由于未受伤自体组织的耗尽,严重三度烧伤或广泛放射治疗引起的较大皮肤缺损的覆盖范围有限。在这种情况下,使用生物制造的皮肤移植物可以获取许多患者的表皮细胞,从而恢复皮肤的重要功能。鉴于自体皮肤移植物在修复大面积缺损完整性方面的可用性有限,使用生物打印构建体作为皮肤移植替代品可能为大规模伤口的传统疗法,如自体组织移植,提供一种令人鼓舞的治疗选择。通过逐层聚集或体积生物打印、喷墨生物打印、激光辅助生物打印或基于挤出的生物打印,将皮肤细胞以所需模式沉积。所得构建体可作为皮肤移植替代品,以加速伤口愈合并重建皮肤的生理功能。在本综述中,我们旨在阐明皮肤组织工程背景下生物打印的现状,并介绍和讨论不同的生物打印技术、可能的方法和材料、常用的细胞类型以及用于生产用作皮肤移植替代品的生物打印构建体的移植物血管化策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e224/10604151/cf5bdf593f2a/biomedicines-11-02678-g001.jpg

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