Lee Esther J, Huh Beom Kang, Kim Se Na, Lee Jae Yeon, Park Chun Gwon, Mikos Antonios G, Choy Young Bin
Department of Bioengineering, Rice University, MS 142, P.O. Box 1892, Houston, Texas, 77251-1892, USA.
Interdisciplinary Program for Bioengineering, Seoul National University College of Engineering, Seoul, Republic of Korea.
Prog Mater Sci. 2017 Aug;89:392-410. doi: 10.1016/j.pmatsci.2017.06.003. Epub 2017 Jun 13.
The plentiful assortment of natural and synthetic materials can be leveraged to accommodate diverse wound types, as well as different stages of the healing process. An ideal material is envisioned to promote tissue repair with minimal inconvenience for patients. Traditional materials employed in the clinical setting often invoke secondary complications, such as infection, pain, foreign body reaction, and chronic inflammation. This review surveys the repertoire of surgical sutures, wound dressings, surgical glues, orthopedic fixation devices and bone fillers with drug eluting capabilities. It highlights the various techniques developed to effectively incorporate drugs into the selected material or blend of materials for both soft and hard tissue repair. The mechanical and chemical attributes of the resultant materials are also discussed, along with their biological outcomes and/or . Perspectives and challenges regarding future research endeavors are also delineated for next-generation wound repair materials.
丰富多样的天然和合成材料可被利用来适应不同的伤口类型以及愈合过程的不同阶段。理想的材料应能促进组织修复,同时给患者带来最小的不便。临床环境中使用的传统材料常常引发诸如感染、疼痛、异物反应和慢性炎症等继发性并发症。本综述考察了具有药物洗脱能力的手术缝线、伤口敷料、手术胶水、骨科固定装置和骨填充剂。它突出了为有效将药物纳入所选材料或材料混合物以用于软组织和硬组织修复而开发的各种技术。还讨论了所得材料的机械和化学特性,以及它们的生物学结果。同时也阐述了关于下一代伤口修复材料未来研究工作的前景和挑战。