Widgerow Alan D
Health Sciences Faculty, University of the Witwatersrand, Johannesburg, South Africa.
Ann Plast Surg. 2012 Jun;68(6):568-73. doi: 10.1097/SAP.0b013e31824b3d04.
Skin defect closure after injury or disease may present significant reconstructive challenges. Traditional epidermal coverage alone in the form of skin grafts often fall short in providing stable cover to restore structure and function of the skin. Excessive wound contraction and scar formation, particularly in defects of dermis and epidermis, may create functional and aesthetic problems. Progress in our understanding of molecular biology and tissue engineering have produced major advances in skin substitute technology, particularly relating to the dynamic cellular/extracellular matrix interaction that is critical to successful incorporation of a skin substitute. However, currently available skin substitutes still exhibit a range of problems including excessive wound contraction and scar formation, poor host tissue incorporation, revascularization and, in some cases, structural deficiencies in matrix design. The design principles and structural composition of the matrix must take into account collagenous forms, inherent resistance, porosity, and hydration. The ultimate matrix should be one that promotes intrinsic regeneration by encouraging cellular incorporation and cellular/extracellular cross communication. Attention to basic structural details rather than reliance on specialized cellular or peptide additions to the mix may well produce the advances we seek in improved incorporation of bioengineered skin substitutes.
损伤或疾病后的皮肤缺损闭合可能带来重大的重建挑战。仅以皮肤移植形式进行的传统表皮覆盖,在为恢复皮肤结构和功能提供稳定覆盖方面往往不足。过度的伤口收缩和瘢痕形成,尤其是在真皮和表皮缺损中,可能会产生功能和美观问题。我们对分子生物学和组织工程学理解的进展,在皮肤替代技术方面取得了重大进展,特别是与动态细胞/细胞外基质相互作用相关,这对皮肤替代物的成功植入至关重要。然而,目前可用的皮肤替代物仍然存在一系列问题,包括过度的伤口收缩和瘢痕形成、宿主组织整合不良、血管再生,以及在某些情况下基质设计中的结构缺陷。基质的设计原则和结构组成必须考虑胶原形式、固有抗性、孔隙率和水合作用。最终的基质应该是通过促进细胞整合和细胞/细胞外交叉通讯来促进内在再生的基质。关注基本结构细节,而不是依赖于向混合物中添加专门的细胞或肽,很可能会带来我们在改善生物工程皮肤替代物整合方面所寻求的进展。