Centro de Investigaciones en Óptica (CIO), A. C., León 37150, Mexico.
Centro de Física Aplicada y Tecnología Avanzada (CFATA), Universidad Nacional Autónoma de México (UNAM), Querétaro 76230, Mexico.
Int J Biol Macromol. 2024 Jan;254(Pt 1):127737. doi: 10.1016/j.ijbiomac.2023.127737. Epub 2023 Oct 28.
Non-healing wounds represent a significant burden for healthcare systems and society, giving rise to severe economic and human issues. Currently, the use of dressings and visual assessment represent the primary and standard care for wounds. Conventional dressings, like cotton gauze, provide only passive physical protection. Besides, they end up paradoxically hampering the wound-healing process by producing tissue damage and pain when removed during routine check-ups. In response to these limitations, researchers, engineers, and technologists are developing innovative dressings that incorporate advanced diagnostic and therapeutic functionalities, coined as "smart dressings". Now, the maturation of smart dressing is bringing them closer to real-life applications, leading to an exciting new generation of these devices. The next generation of smart dressings is capable of monitoring in real-time multiple biomarkers while including pro-healing capabilities in a single platform. Such multiplexed and theranostic smart dressings are expected to offer a timely biomarker-directed diagnosis of non-healing wounds while enabling rapid, automated, and personalized treatments of infection and chronicity. Herein, we provide an insightful overview of these advantageous devices, delving into the diverse spectrum of possible engineering strategies. This encompasses the use of electrochemical and optical platforms with diverse multiplexing architectures, such as multi-zone sensing arrays and multi-layered devices. Open or closed-loop theranostic mechanisms using various stimuli-responsive materials that could be internally or externally controlled are also included. Finally, a critical discussion on the main challenges and future directions of smart dressings is also offered.
不愈合的伤口给医疗保健系统和社会带来了巨大的负担,引发了严重的经济和人类问题。目前,敷料和目视评估的使用是伤口的主要和标准护理。传统的敷料,如棉花纱布,只能提供被动的物理保护。此外,它们在常规检查时去除时会产生组织损伤和疼痛,反而会阻碍伤口愈合过程,产生矛盾的效果。为了应对这些限制,研究人员、工程师和技术人员正在开发具有先进诊断和治疗功能的创新敷料,被称为“智能敷料”。现在,智能敷料的成熟度使它们更接近实际应用,带来了这些设备令人兴奋的新一代。下一代智能敷料能够在单个平台上实时监测多个生物标志物,同时包含促进愈合的功能。这种多功能和治疗性的智能敷料有望提供及时的生物标志物指导的非愈合伤口诊断,同时实现感染和慢性疾病的快速、自动和个性化治疗。在这里,我们深入探讨了各种可能的工程策略,对这些有利设备进行了深入的概述。这包括使用电化学和光学平台以及具有不同多路复用架构的平台,例如多区传感阵列和多层设备。还包括使用各种刺激响应材料的开环或闭环治疗机制,这些材料可以内部或外部控制。最后,还对智能敷料的主要挑战和未来方向进行了批判性讨论。