Homaeigohar Shahin, Li Meng, Boccaccini Aldo R
School of Science and Engineering, University of Dundee, Dundee DD1 4HN, United Kingdom.
Institute of Biomaterials, Department of Materials Science and Engineering, University of Erlangen-Nuremberg, 91058 Erlangen, Germany.
Burns Trauma. 2022 Sep 28;10:tkac038. doi: 10.1093/burnst/tkac038. eCollection 2022.
Since the discovery of silicate bioactive glass (BG) by Larry Hench in 1969, different classes of BGs have been researched over decades mainly for bone regeneration. More recently, validating the beneficial influence of BGs with tailored compositions on angiogenesis, immunogenicity and bacterial infection, the applicability of BGs has been extended to soft tissue repair and wound healing. Particularly, fibrous wound dressings comprising BG particle reinforced polymer nanofibers and cotton-candy-like BG fibers have been proven to be successful for wound healing applications. Such fibrous dressing materials imitate the physical structure of skin's extracellular matrix and release biologically active ions e.g. regenerative, pro-angiogenic and antibacterial ions, e.g. borate, copper, zinc, etc., that can provoke cellular activities to regenerate the lost skin tissue and to induce new vessels formation, while keeping an anti-infection environment. In the current review, we discuss different BG fibrous materials meant for wound healing applications and cover the relevant literature in the past decade. The production methods for BG-containing fibers are explained and as fibrous wound dressing materials, their wound healing and bactericidal mechanisms, depending on the ions they release, are discussed. The present gaps in this research area are highlighted and new strategies to address them are suggested.
自1969年拉里·亨奇发现硅酸盐生物活性玻璃(BG)以来,几十年来人们一直在研究不同种类的BG,主要用于骨再生。最近,随着对具有特定组成的BG对血管生成、免疫原性和细菌感染有益影响的验证,BG的应用范围已扩展到软组织修复和伤口愈合。特别是,由BG颗粒增强聚合物纳米纤维和棉花糖状BG纤维组成的纤维伤口敷料已被证明在伤口愈合应用中取得成功。这种纤维敷料材料模仿皮肤细胞外基质的物理结构,并释放生物活性离子,例如再生、促血管生成和抗菌离子,例如硼酸盐、铜、锌等,这些离子可以激发细胞活动以再生受损的皮肤组织并诱导新血管形成,同时保持抗感染环境。在本综述中,我们讨论了用于伤口愈合应用的不同BG纤维材料,并涵盖了过去十年的相关文献。解释了含BG纤维的生产方法,并作为纤维伤口敷料材料,讨论了它们的伤口愈合和杀菌机制,这取决于它们释放的离子。突出了该研究领域目前存在的差距,并提出了解决这些差距的新策略。