Yayehrad Ashagrachew Tewabe, Siraj Ebrahim Abdella, Matsabisa Motlalepula, Birhanu Gebremariam
Department of Pharmacy, School of Health Sciences, College of Medicine and Health Sciences, Bahir Dar University, Bahir Dar, Ethiopia, PO Box: 79.
Department of Pharmaceutics and Social Pharmacy, School of Pharmacy, College of Health Sciences, Addis Ababa University, Addis Ababa, Ethiopia, PO Box: 1176.
Regen Ther. 2023 Sep 4;24:361-376. doi: 10.1016/j.reth.2023.08.007. eCollection 2023 Dec.
Wounds are a stern healthcare concern in the growth of chronic disease conditions as they can increase healthcare costs and complicate internal and external health. Advancements in the current and newer management systems for wound healing should be in place to counter the health burden of wounds. Researchers discovered that two-dimensional (2D) media lacks appropriate real-life detection of cellular matter as these have highly complicated and diverse structures, compositions, and interactions. Hence, innovation towards three-dimensional (3D) media is called to conquer the high-level assessment and characterization using new technologies. The application of modern wound dressings prepared from a degenerated natural tissue, biodegradable biopolymer, synthetic polymer, or a composite of these materials in wound healing is currently an area of innovation in tissue regeneration medicine. Moreover, the integration of 3D printing and nanomaterial science is a promising approach with the potential for individualized, flexible, and precise technology for wound care approaches. This review encompasses the outcomes of various investigations on recent advances in 3D-printed drug-loaded natural, synthetic, and composite nanomaterials for wound healing. The challenges associated with their fabrication, clinical application progress, and future perspectives are also addressed.
在慢性疾病的发展过程中,伤口是一个严峻的医疗保健问题,因为它们会增加医疗成本,并使体内外健康状况复杂化。当前和更新的伤口愈合管理系统应有所进展,以应对伤口带来的健康负担。研究人员发现,二维(2D)培养基缺乏对细胞物质的适当真实检测,因为这些细胞物质具有高度复杂多样的结构、组成和相互作用。因此,需要向三维(3D)培养基创新,以利用新技术进行高级评估和表征。由退化的天然组织、可生物降解的生物聚合物、合成聚合物或这些材料的复合材料制备的现代伤口敷料在伤口愈合中的应用,目前是组织再生医学的一个创新领域。此外,3D打印与纳米材料科学的结合是一种很有前景的方法,有可能为伤口护理方法提供个性化、灵活且精确的技术。这篇综述涵盖了关于用于伤口愈合的3D打印载药天然、合成和复合纳米材料的最新进展的各种研究结果。还讨论了与其制造相关的挑战、临床应用进展以及未来展望。