Wound Dressing with Electrospun Core-Shell Nanofibers: From Material Selection to Synthesis

纳米纤维 材料科学 纳米技术 伤口愈合 再生(生物学) 自愈水凝胶 灵活性(工程) 伤口敷料 纳米材料 生物医学工程 复合材料 医学 外科 生物 统计 高分子化学 数学 细胞生物学
作者
Nariman Rajabifar,Amir Rostami,Shahnoosh Afshar,Pezhman Mosallanezhad,Payam Zarrintaj,Mohsen Shahrousvand,Hossein Nazockdast
出处
期刊:Polymers [Multidisciplinary Digital Publishing Institute]
卷期号:16 (17): 2526-2526 被引量:34
标识
DOI:10.3390/polym16172526
摘要

Skin, the largest organ of the human body, accounts for protecting against external injuries and pathogens. Despite possessing inherent self-regeneration capabilities, the repair of skin lesions is a complex and time-consuming process yet vital to preserving its critical physiological functions. The dominant treatment involves the application of a dressing to protect the wound, mitigate the risk of infection, and decrease the likelihood of secondary injuries. Pursuing solutions for accelerating wound healing has resulted in groundbreaking advancements in materials science, from hydrogels and hydrocolloids to foams and micro-/nanofibers. Noting the convenience and flexibility in design, nanofibers merit a high surface-area-to-volume ratio, controlled release of therapeutics, mimicking of the extracellular matrix, and excellent mechanical properties. Core-shell nanofibers bring even further prospects to the realm of wound dressings upon separate compartments with independent functionality, adapted release profiles of bioactive agents, and better moisture management. In this review, we highlight core-shell nanofibers for wound dressing applications featuring a survey on common materials and synthesis methods. Our discussion embodies the wound healing process, optimal wound dressing characteristics, the current organic and inorganic material repertoire for multifunctional core-shell nanofibers, and common techniques to fabricate proper coaxial structures. We also provide an overview of antibacterial nanomaterials with an emphasis on their crystalline structures, properties, and functions. We conclude with an outlook for the potential offered by core-shell nanofibers toward a more advanced design for effective wound healing.
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