Department of Biotechnology, Maharishi Markandeshwar (Deemed to be University), Mullana 133207, India.
Laboratory of Algal Biotechnology-Centre Algatech, Institute of Microbiology of the Czech Academy of Sciences, 37901 Třeboň, Czech Republic.
Molecules. 2022 Aug 30;27(17):5587. doi: 10.3390/molecules27175587.
Wounds are structural and functional disruptions of skin that occur because of trauma, surgery, acute illness, or chronic disease conditions. Chronic wounds are caused by a breakdown in the finely coordinated cascade of events that occurs during healing. Wound healing is a long process that split into at least three continuous and overlapping processes: an inflammatory response, a proliferative phase, and finally the tissue remodeling. Therefore, these processes are extensively studied to develop novel therapeutics in order to achieve maximum recovery with minimum scarring. Several growth hormones and cytokines secreted at the site of lesions tightly regulates the healing processes. The traditional approach for wound management has been represented by topical treatments. Metal nanoparticles (e.g., silver, gold and zinc) are increasingly being employed in dermatology due to their favorable effects on healing, as well as in treating and preventing secondary bacterial infections. In the current review, a brief introduction on traditional would healing approach is provided, followed by focus on the potential of wound dressing therapeutic techniques functionalized with Ag-NPs.
伤口是由于创伤、手术、急性疾病或慢性疾病状况而导致的皮肤结构和功能的破坏。慢性伤口是由于愈合过程中发生的一系列精细协调事件的崩溃而引起的。伤口愈合是一个漫长的过程,可分为至少三个连续且重叠的过程:炎症反应、增殖期,最后是组织重塑。因此,人们广泛研究这些过程,以开发新的治疗方法,从而实现最大限度的恢复和最小的疤痕。几种生长激素和细胞因子在病变部位分泌,可紧密调节愈合过程。传统的伤口管理方法一直是局部治疗。由于金属纳米粒子(例如银、金和锌)对愈合以及治疗和预防继发性细菌感染具有有利影响,因此它们在皮肤病学中的应用越来越多。在本综述中,简要介绍了传统的伤口愈合方法,然后重点介绍了用 Ag-NPs 功能化的伤口敷料治疗技术的潜力。