He Peng, Zhao Junning, Zhang Jiumeng, Li Bo, Gou Zhiyuan, Gou Maling, Li Xiaolu
1The Affiliated Hospital of Southwest Medical University, the department of Plastic & Burns Surgery, Tai Ping Street, Luzhou, 646000 People's Republic of China.
Sichuan Academy of Chinese Medical Sciences, Sichuan Translational Medicine Center of Chinese Medicine, Ren Min Nan Lu Road, Chengdu, 610041 People's Republic of China.
Burns Trauma. 2018 Jan 23;6:5. doi: 10.1186/s41038-017-0104-x. eCollection 2018.
Extensive burns and full-thickness skin wounds are difficult to repair. Autologous split-thickness skin graft (ASSG) is still used as the gold standard in the clinic. However, the shortage of donor skin tissues is a serious problem. A potential solution to this problem is to fabricate skin constructs using biomaterial scaffolds with or without cells. Bioprinting is being applied to address the need for skin tissues suitable for transplantation, and can lead to the development of skin equivalents for wound healing therapy. Here, we summarize strategies of bioprinting and review current advances of bioprinting of skin constructs. There will be challenges on the way of 3D bioprinting for skin regeneration, but we still believe bioprinting will be potential skills for wounds healing in the foreseeable future.
大面积烧伤和全层皮肤伤口难以修复。自体中厚皮片移植(ASSG)在临床上仍被用作金标准。然而,供体皮肤组织短缺是一个严重问题。解决这一问题的一个潜在方法是使用含或不含细胞的生物材料支架制造皮肤构建体。生物打印正被用于满足对适合移植的皮肤组织的需求,并可推动用于伤口愈合治疗的皮肤替代物的发展。在此,我们总结生物打印策略并综述皮肤构建体生物打印的当前进展。3D生物打印用于皮肤再生的道路上会有挑战,但我们仍然相信在可预见的未来生物打印将成为伤口愈合的潜在技术。