Electrospun Materials & Polymeric Membranes Research Group, National Textile University, Karachi, Pakistan.
Department of Pharmaceutics, Faculty of Pharmaceutical Science, Government College University, Faisalabad, Pakistan.
Curr Pharm Biotechnol. 2022;23(12):1417-1435. doi: 10.2174/1389201023666220329162910.
Wound healing is a complex process, and selecting an appropriate treatment is crucial and varies from one wound to another. Among injuries, burn wounds are more challenging to treat. Different dressings and scaffolds come into play when skin is injured. These scaffolds provide the optimum environment for wound healing. With the advancements in nanoengineering, scaffolds have been engineered to improve wound healing with lower fatality rates.
Nanoengineered systems have emerged as one of the most promising candidates for burn wound management. This review paper aims to provide an in-depth understanding of burn wounds and the role of nanoengineering in burn wound management. The advantages of nanoengineered scaffolds, their properties, and their proven effectiveness have been discussed. Nanoparticles and nanofibers-based nanoengineered therapeutic scaffolds provide optimum protection, infection management, and accelerated wound healing due to their unique characteristics. These scaffolds increase cell attachment and proliferation for desired results.
The literature review suggested that the utilization of nanoengineered scaffolds has accelerated burn wound healing. Nanofibers provide better cell attachment and proliferation among different nanoengineered scaffolds because their 3D structure mimics the body's extracellular matrix.
With these advanced nanoengineered scaffolds, better burn wound management is possible due to sustained drug delivery, better cell attachment, and an infection-free environment.
伤口愈合是一个复杂的过程,选择合适的治疗方法至关重要,而且因伤口而异。在各种损伤中,烧伤伤口更难治疗。当皮肤受伤时,不同的敷料和支架会发挥作用。这些支架为伤口愈合提供了最佳环境。随着纳米工程的进步,支架已经被设计用于改善伤口愈合,降低死亡率。
纳米工程系统已成为烧伤伤口管理最有前途的候选者之一。本文综述旨在深入了解烧伤伤口以及纳米工程在烧伤伤口管理中的作用。讨论了纳米工程支架的优点、特性及其已证明的有效性。基于纳米粒子和纳米纤维的纳米工程治疗性支架由于其独特的特性,提供了最佳的保护、感染管理和加速伤口愈合。这些支架增加了细胞的附着和增殖,以达到理想的效果。
文献回顾表明,纳米工程支架的使用加速了烧伤伤口的愈合。纳米纤维在不同的纳米工程支架中提供了更好的细胞附着和增殖,因为它们的 3D 结构模拟了身体的细胞外基质。
由于这些先进的纳米工程支架具有持续的药物输送、更好的细胞附着和无感染环境,因此可以更好地管理烧伤伤口。