Anti-inflammatory, antibacterial, and antioxidative bioactive glass-based nanofibrous dressing enables scarless wound healing

被引:0
|
作者
Yuan Z. [1 ]
Zhang L. [2 ]
Jiang S. [3 ,4 ]
Shafiq M. [1 ,5 ,6 ]
Cai Y. [2 ]
Chen Y. [1 ]
Song J. [1 ]
Yu X. [1 ]
Ijima H. [5 ]
Xu Y. [2 ]
Mo X. [1 ]
机构
[1] State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Shanghai Engineering Research Center of Nano-Biomaterials and Regenerative Medicine, College of Biological Science and Medical Engineering, Donghua University, Shanghai
[2] Department of Orthopaedics, Xinqiao Hospital, Army Military Medical University, No. 183, Xinqiao Street, Shapingba District, Chongqing
[3] Department of Orthopedics, Shandong Provincial Hospital Affiliated to Shandong First Medical University, Jinan
[4] Medical Science and Technology Innovation Center, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan
[5] Department of Chemical Engineering, Faculty of Engineering, Graduate School, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka-shi, Fukuoka
[6] Department of Biotechnology, Faculty of Science and Technology (FOST), University of Central Punjab (UCP), Lahore
来源
Smart Materials in Medicine | 2023年 / 4卷
基金
日本学术振兴会; 中国国家自然科学基金;
关键词
Anti-inflammatory response; Bioactive glasses; Biocompatibility; Macrophages modulation; Nanofiber membrane; Polymer; Wound healing;
D O I
10.1016/j.smaim.2023.01.001
中图分类号
学科分类号
摘要
Excessive scar tissue formation along with bacterial infection, hemorrhage, and oxidative wound microenvironment pose adverse physiological and psychological effects on patients, which necessitate the advent of innovative anti-inflammatory, anti-bacterial, and anti-oxidative multifunctional wound dressings. The overarching objective of this study was to exploit bioactive glass (BG) and a natural anti-bacterial component namely “oregano essential oil (OEO)” to impart multifunctionality to poly(L-lactide-co-glycolide)/Gelatin (PLGA/Gel)-based nanofibrous dressings for excisional wound management. We performed a series of structural, morphological, and release studies as well as delineated angiogenic, hemostatic, anti-bacterial, and anti-oxidative properties of these bioactive dressings in vitro, which altogether revealed the beneficial effects of BG and OEO in terms of rapid hemostasis, improved chemotactic response, diminished bacterial colonization, and anti-inflammatory response. Impressively, in multiple injury models, including a rat tail-amputation model, an ear artery injury model, and a liver trauma model in rabbit in vivo, we reported BG-mediated rapid hemostasis. Moreover, dressings containing BG showed improved hemocompatibility and suppressed coagulation as revealed by activated partial thromboplastin assay (APTT) in vitro. In addition, the transplantation of these nanofibrous dressings in a full-thickness excisional wound model in rats showed significant tissue regeneration as evidenced by the more number of blood vessels, glands, and hair follicles, re-epithelialization, diminished inflammatory response, and less fibrotic tissue formation. Taken together our approach of simultaneously harnessing economical BG and OEO to enable multifunctionality to nanofibrous dressings for tissue repair may hold great promise for wound healing as well as other bio-related disciplines. © 2023 The Authors
引用
收藏
页码:407 / 426
页数:19
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