Augustine Robin
Department of Mechanical and Industrial Engineering, College of Engineering, Qatar University, Doha, 2713, Qatar.
Prog Biomater. 2018 Jun;7(2):77-92. doi: 10.1007/s40204-018-0087-0. Epub 2018 May 12.
Significant progress has been made over the past few decades in the development of in vitro-engineered substitutes that mimic human skin, either as grafts for the replacement of lost skin, or for the establishment of in vitro human skin models. Tissue engineering has been developing as a novel strategy by employing the recent advances in various fields such as polymer engineering, bioengineering, stem cell research and nanomedicine. Recently, an advancement of 3D printing technology referred as bioprinting was exploited to make cell loaded scaffolds to produce constructs which are more matching with the native tissue. Bioprinting facilitates the simultaneous and highly specific deposition of multiple types of skin cells and biomaterials, a process that is lacking in conventional skin tissue-engineering approaches. Bioprinted skin substitutes or equivalents containing dermal and epidermal components offer a promising approach in skin bioengineering. Various materials including synthetic and natural biopolymers and cells with or without signalling molecules like growth factors are being utilized to produce functional skin constructs. This technology emerging as a novel strategy to overcome the current bottle-necks in skin tissue engineering such as poor vascularization, absence of hair follicles and sweat glands in the construct.
在过去几十年里,体外工程化替代品的开发取得了重大进展,这些替代品可模拟人类皮肤,既可用作替代受损皮肤的移植物,也可用于建立体外人类皮肤模型。组织工程作为一种新策略正在不断发展,它利用了聚合物工程、生物工程、干细胞研究和纳米医学等各个领域的最新进展。最近,一种被称为生物打印的3D打印技术取得了进展,用于制造负载细胞的支架,以生产与天然组织更匹配的构建体。生物打印有助于多种类型的皮肤细胞和生物材料同时且高度特异性地沉积,而这是传统皮肤组织工程方法所缺乏的过程。包含真皮和表皮成分的生物打印皮肤替代品或等效物为皮肤生物工程提供了一种很有前景的方法。包括合成和天然生物聚合物以及含有或不含有生长因子等信号分子的细胞在内的各种材料正被用于生产功能性皮肤构建体。这项技术正在成为一种新策略,以克服目前皮肤组织工程中的瓶颈,如血管化不良、构建体中缺乏毛囊和汗腺等问题。