Biosanitary Research Institute of Granada (ibs.GRANADA), University Hospitals of Granada-University of Granada, Granada, Spain.
Biopathology and Regenerative Medicine Institute (IBIMER), Centre for Biomedical Research (CIBM), University of Granada, Granada, Spain.
J Eur Acad Dermatol Venereol. 2019 Mar;33(3):484-496. doi: 10.1111/jdv.15391. Epub 2019 Feb 22.
Regenerative medicine and tissue engineering (TE) have experienced significant advances in the development of in vitro engineered skin substitutes, either for replacement of lost tissue in skin injuries or for the generation of in vitro human skin models to research. However, currently available skin substitutes present different limitations such as expensive costs, abnormal skin microstructure and engraftment failure. Given these limitations, new technologies, based on advanced therapies and regenerative medicine, have been applied to develop skin substitutes with several pharmaceutical applications that include injectable cell suspensions, cell-spray devices, sheets or 3Dscaffolds for skin tissue regeneration and others. Clinical practice for skin injuries has evolved to incorporate these innovative applications to facilitate wound healing, improve the barrier function of the skin, prevent infections, manage pain and even to ameliorate long-term aesthetic results. In this article, we review current commercially available skin substitutes for clinical use, as well as the latest advances in biomedical and pharmaceutical applications used to design advanced therapies and medical products for wound healing and skin regeneration. We highlight the current progress in clinical trials for wound healing as well as the new technologies that are being developed and hold the potential to generate skin substitutes such as 3D bioprinting-based strategies.
再生医学和组织工程(TE)在体外工程皮肤替代物的开发方面取得了重大进展,无论是用于替代皮肤损伤中失去的组织,还是用于生成体外人类皮肤模型以进行研究。然而,目前可用的皮肤替代品存在不同的局限性,例如昂贵的成本、异常的皮肤微观结构和植入失败。鉴于这些局限性,基于先进疗法和再生医学的新技术已被应用于开发具有多种药物应用的皮肤替代品,包括可注射细胞混悬液、细胞喷雾装置、用于皮肤组织再生的薄片或 3D 支架等。皮肤损伤的临床实践已经发展到将这些创新应用纳入其中,以促进伤口愈合、改善皮肤屏障功能、预防感染、缓解疼痛,甚至改善长期美观效果。在本文中,我们回顾了目前可用于临床的商业上可用的皮肤替代品,以及用于设计用于伤口愈合和皮肤再生的先进疗法和医疗产品的最新生物医学和药物应用进展。我们强调了伤口愈合临床试验的当前进展,以及正在开发的新技术,这些技术有可能产生基于 3D 生物打印的策略等皮肤替代品。