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由掺入生物活性化合物的聚合物合成的电纺纳米纤维用于伤口愈合。

Electrospun nanofibers synthesized from polymers incorporated with bioactive compounds for wound healing.

作者信息

Palani Naveen, Vijayakumar Pradeshwaran, Monisha P, Ayyadurai Saravanakumar, Rajadesingu Suriyaprakash

机构信息

Department of Physics and Nanotechnology, SRM Institute of Science and Technology, Chengalpattu District, Kattankulathur, 603 203, Tamil Nadu, India.

Centre for Research in Environment, Sustainability Advocacy and Climate CHange (REACH), Directorate of Research, SRM Institute of Science and Technology, Chengalpattu District, Kattankulathur, 603 203, Tamil Nadu, India.

出版信息

J Nanobiotechnology. 2024 Apr 27;22(1):211. doi: 10.1186/s12951-024-02491-8.

Abstract

The development of innovative wound dressing materials is crucial for effective wound care. It's an active area of research driven by a better understanding of chronic wound pathogenesis. Addressing wound care properly is a clinical challenge, but there is a growing demand for advancements in this field. The synergy of medicinal plants and nanotechnology offers a promising approach to expedite the healing process for both acute and chronic wounds by facilitating the appropriate progression through various healing phases. Metal nanoparticles play an increasingly pivotal role in promoting efficient wound healing and preventing secondary bacterial infections. Their small size and high surface area facilitate enhanced biological interaction and penetration at the wound site. Specifically designed for topical drug delivery, these nanoparticles enable the sustained release of therapeutic molecules, such as growth factors and antibiotics. This targeted approach ensures optimal cell-to-cell interactions, proliferation, and vascularization, fostering effective and controlled wound healing. Nanoscale scaffolds have significant attention due to their attractive properties, including delivery capacity, high porosity and high surface area. They mimic the Extracellular matrix (ECM) and hence biocompatible. In response to the alarming rise of antibiotic-resistant, biohybrid nanofibrous wound dressings are gradually replacing conventional antibiotic delivery systems. This emerging class of wound dressings comprises biopolymeric nanofibers with inherent antibacterial properties, nature-derived compounds, and biofunctional agents. Nanotechnology, diminutive nanomaterials, nanoscaffolds, nanofibers, and biomaterials are harnessed for targeted drug delivery aimed at wound healing. This review article discusses the effects of nanofibrous scaffolds loaded with nanoparticles on wound healing, including biological (in vivo and in vitro) and mechanical outcomes.

摘要

创新伤口敷料材料的开发对于有效的伤口护理至关重要。这是一个活跃的研究领域,其驱动力是对慢性伤口发病机制有了更好的理解。妥善处理伤口护理是一项临床挑战,但该领域对进展的需求日益增长。药用植物与纳米技术的协同作用提供了一种很有前景的方法,通过促进伤口在各个愈合阶段的适当进展,加速急性和慢性伤口的愈合过程。金属纳米颗粒在促进高效伤口愈合和预防继发性细菌感染方面发挥着越来越关键的作用。它们的小尺寸和高表面积有助于在伤口部位增强生物相互作用和渗透。这些纳米颗粒专为局部药物递送而设计,能够使治疗分子(如生长因子和抗生素)持续释放。这种靶向方法可确保最佳的细胞间相互作用、增殖和血管生成,促进有效且可控的伤口愈合。纳米级支架因其具有吸引力的特性(包括递送能力、高孔隙率和高表面积)而备受关注。它们模仿细胞外基质(ECM),因此具有生物相容性。鉴于抗生素耐药性的惊人上升,生物杂交纳米纤维伤口敷料正逐渐取代传统的抗生素递送系统。这类新兴的伤口敷料包括具有固有抗菌特性的生物聚合物纳米纤维、天然衍生化合物和生物功能剂。纳米技术、微小的纳米材料、纳米支架、纳米纤维和生物材料被用于旨在伤口愈合的靶向药物递送。这篇综述文章讨论了负载纳米颗粒的纳米纤维支架对伤口愈合的影响,包括生物学(体内和体外)和力学结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca70/11056076/e69426c51023/12951_2024_2491_Fig1_HTML.jpg

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