Production and Characterization of Electrospun Chitosan, Nanochitosan and Hyaluronic Acid Membranes for Skin Wound Healing

透明质酸 伤口愈合 壳聚糖 静电纺丝 生物医学工程 渗透 材料科学 医学 化学 聚合物 外科 复合材料 生物化学 解剖
作者
E Ponte,Alexia de Almeida Ignatowicz,Gabriel Raio Volpato,João Vitor Taffarel,Priscila Ayumi Takahashi,Rafael Messias Luiz,Felipe Eduardo Bueno Silva,Gabriel Nardi Fraga,Douglas Cardoso Dragunski,Ana Carla Zarpelon‐Schutz,Helton José Alves,Juliana Bernardi‐Wenzel
出处
期刊:Journal of Biomedical Materials Research Part B [Wiley]
卷期号:112 (10): e35485-e35485 被引量:1
标识
DOI:10.1002/jbm.b.35485
摘要

ABSTRACT The development of new wound dressings made from biomaterials, which offer a better cost–benefit ratio and accelerate the healing process, is increasing nowadays. Various biopolymers can be electrospun to form functional membranes for wound healing. Therefore, in this study, chitosan and nanochitosan membranes with or without hyaluronic acid were prepared using the electrospinning technique, characterized and evaluated in the healing of skin wounds in rats. Chitosan and nanochitosan solutions, with or without hyaluronic acid, were prepared at concentrations of 1%–4% using PEO (polyethylene oxide) and subjected to the electrospinning process to obtain membranes characterized by scanning electron microscopy (SEM), mechanical tests, and antimicrobial activity. The healing effect of the membranes was evaluated by monitoring the area of the lesions, contraction of the wounds, histologic analysis, and induction of pro‐inflammatory cytokine (IL‐1 α and TNF‐α) production in rats. The nanochitosan and nanochitosan membranes with hyaluronic acid achieved greater fiber diameter and uniformity, resistance, elasticity, and thermal stability, in addition to good adhesion to the wound bed and permeation capacity. Despite not presenting antimicrobial activity in vitro, they contributed to the production of pro‐inflammatory interleukins in the animals tested, provided physical protection, reduced the wound area more markedly until the seventh day of the evaluation, with an acceleration of the healing process and especially when functionalized with hyaluronic acid. These results indicate that the membranes may be promising for accelerating the healing process of chronic wounds in humans.
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