Student Research Committee, Shahrekord University of Medical Sciences, Shahrekord, Iran.
Department of Medical Biotechnology, School of Advanced Technologies, Shahrekord University of Medical Sciences, Shahrekord, Iran.
J Mater Chem B. 2024 Jun 27;12(25):6033-6062. doi: 10.1039/d4tb00966e.
The skin, serving as the body's outermost layer, boasts a vast area and intricate structure, functioning as the primary barrier against external threats. Disruptions in the composition and functionality of the skin can lead to a diverse array of skin conditions, such as wounds, burns, and diabetic ulcers, along with inflammatory disorders, infections, and various types of skin cancer. These disorders not only exacerbate concerns regarding skin health and beauty but also have a significant impact on mental well-being. Due to the complexity of these disorders, conventional treatments often prove insufficient, necessitating the exploration of new therapeutic approaches. Researchers develop new therapies by deciphering these intricacies and gaining a thorough understanding of the protein networks and molecular processes in skin. A new window of opportunity has opened up for improving wound healing processes because of recent advancements in skin gene therapy. To enhance skin regeneration and healing, this extensive review investigates the use of novel dressing scaffolds in conjunction with gene therapy approaches. Scaffolds that do double duty as wound protectors and vectors for therapeutic gene delivery are being developed using innovative biomaterials. To improve cellular responses and speed healing, these state-of-the-art scaffolds allow for the targeted delivery and sustained release of genetic material. The most recent developments in gene therapy techniques include RNA interference, CRISPR-based gene editing, and the utilization of viral and non-viral vectors in conjunction with scaffolds, which were reviewed here to overcome skin disorders and wound complications. In the future, there will be rare chances to develop custom methods for skin health care thanks to the combination of modern technology and collaboration among disciplines.
皮肤作为人体的最外层,拥有广阔的面积和复杂的结构,是抵御外部威胁的主要屏障。皮肤的组成和功能的紊乱会导致各种皮肤疾病,如伤口、烧伤和糖尿病溃疡,以及炎症性疾病、感染和各种类型的皮肤癌。这些疾病不仅加剧了人们对皮肤健康和美丽的关注,也对心理健康产生了重大影响。由于这些疾病的复杂性,传统的治疗方法往往不够有效,需要探索新的治疗方法。研究人员通过破译这些复杂性并对皮肤中的蛋白质网络和分子过程有了深入的了解,从而开发出新的治疗方法。由于皮肤基因治疗的最新进展,改善伤口愈合过程的新机会已经出现。为了增强皮肤再生和愈合能力,本综述广泛研究了在基因治疗方法中使用新型敷料支架。正在使用创新的生物材料开发具有双重功能的支架,既可以作为伤口保护器,也可以作为治疗性基因传递的载体。为了改善细胞反应和加速愈合,这些最先进的支架允许有针对性地输送和持续释放遗传物质。基因治疗技术的最新进展包括 RNA 干扰、基于 CRISPR 的基因编辑以及与支架一起使用病毒和非病毒载体,本文对这些进展进行了综述,以克服皮肤疾病和伤口并发症。未来,由于现代技术与学科之间的合作,将有机会开发出针对皮肤保健的定制方法。