Department of Pharmaceutics and Drug Delivery, School of Pharmacy, University of Mississippi, Oxford, MS 38677, USA.
Department of Pharmaceutical Technology, Faculty of Pharmacy, Kafrelsheikh University, Kafrelsheikh 33516, Egypt.
Cells. 2022 Aug 6;11(15):2439. doi: 10.3390/cells11152439.
Wound healing is highly specialized dynamic multiple phase process for the repair of damaged/injured tissues through an intricate mechanism. Any failure in the normal wound healing process results in abnormal scar formation, and chronic state which is more susceptible to infections. Chronic wounds affect patients' quality of life along with increased morbidity and mortality and are huge financial burden to healthcare systems worldwide, and thus requires specialized biomedical intensive treatment for its management. The clinical assessment and management of chronic wounds remains challenging despite the development of various therapeutic regimens owing to its painstakingly long-term treatment requirement and complex wound healing mechanism. Various conventional approaches such as cell therapy, gene therapy, growth factor delivery, wound dressings, and skin grafts etc., are being utilized for promoting wound healing in different types of wounds. However, all these abovementioned therapies are not satisfactory for all wound types, therefore, there is an urgent demand for the development of competitive therapies. Therefore, there is a pertinent requirement to develop newer and innovative treatment modalities for multipart therapeutic regimens for chronic wounds. Recent developments in advanced wound care technology includes nanotherapeutics, stem cells therapy, bioengineered skin grafts, and 3D bioprinting-based strategies for improving therapeutic outcomes with a focus on skin regeneration with minimal side effects. The main objective of this review is to provide an updated overview of progress in therapeutic options in chronic wounds healing and management over the years using next generation innovative approaches. Herein, we have discussed the skin function and anatomy, wounds and wound healing processes, followed by conventional treatment modalities for wound healing and skin regeneration. Furthermore, various emerging and innovative strategies for promoting quality wound healing such as nanotherapeutics, stem cells therapy, 3D bioprinted skin, extracellular matrix-based approaches, platelet-rich plasma-based approaches, and cold plasma treatment therapy have been discussed with their benefits and shortcomings. Finally, challenges of these innovative strategies are reviewed with a note on future prospects.
伤口愈合是一个高度专业化的动态多相过程,通过复杂的机制修复受损/受伤的组织。正常伤口愈合过程中的任何失败都会导致异常瘢痕形成和慢性状态,更容易感染。慢性伤口不仅会影响患者的生活质量,还会增加发病率和死亡率,并给全球医疗系统带来巨大的经济负担,因此需要专门的生物医学强化治疗来管理。尽管开发了各种治疗方案,但由于其长期治疗的需要和复杂的伤口愈合机制,慢性伤口的临床评估和管理仍然具有挑战性。各种传统方法,如细胞治疗、基因治疗、生长因子传递、伤口敷料和皮肤移植等,都被用于促进不同类型伤口的愈合。然而,所有这些上述疗法并不适用于所有伤口类型,因此,迫切需要开发竞争性疗法。因此,迫切需要开发新的和创新的治疗方法,用于慢性伤口的多部分治疗方案。先进伤口护理技术的最新发展包括纳米治疗、干细胞治疗、生物工程皮肤移植和基于 3D 生物打印的策略,以改善治疗效果,重点是皮肤再生,副作用最小。本综述的主要目的是提供一份关于近年来使用下一代创新方法治疗慢性伤口愈合和管理方面的治疗选择的最新进展概述。本文讨论了皮肤的功能和解剖结构、伤口和伤口愈合过程,以及随后的伤口愈合和皮肤再生的常规治疗方法。此外,还讨论了各种新兴和创新的促进优质伤口愈合的策略,如纳米治疗、干细胞治疗、3D 生物打印皮肤、细胞外基质方法、富含血小板的血浆方法和冷等离子体处理疗法,及其优缺点。最后,对这些创新策略的挑战进行了回顾,并对未来的前景进行了说明。