制作和评估作为抗菌伤口敷料的利巴韦林电纺纳米纤维

IF 3 3区 医学 Q2 PHARMACOLOGY & PHARMACY Saudi Pharmaceutical Journal Pub Date : 2024-04-01 DOI:10.1016/j.jsps.2024.102058
Khulud A. Alsulami , Abrar A. Bakr , Abdullah A. Alshehri , Alhassan H. Aodah , Fahad A. Almughem , Ali A. Alamer , Lujain A. Alharbi , Deema S. Alsuwayeh , Abdulrahman A. Halwani , Abdullah A. Alamoudi , Haya A. Alfassam , Essam A. Tawfik
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引用次数: 0

摘要

背景皮肤被认为是抵御有害病原体的第一道重要防线,它承载着一个微生物生态系统,形成了广泛多样的皮肤微生物群。在慢性伤口中,宿主与微生物之间的相互作用发生了改变,形成了多微生物生物膜,阻碍了伤口的愈合过程。利巴韦林是一种抗病毒药物,具有抗菌活性,尤其是对铜绿假单胞菌和白色念珠菌具有抗菌活性,而这两种细菌是慢性伤口中的主要机会致病菌。本研究之所以选择利巴韦林,是因为抗菌剂(抗生素和抗真菌剂)耐药性不断出现,而发现新抗菌剂的尝试却不多,这促使人们在现有药物出现耐药性的情况下,将现有药物重新用作替代解决方案。此外,利巴韦林的独特作用机制,即在不杀死或阻止细菌生长的情况下扰乱细菌毒力系统,使病原体失去抵抗力,可能是防止耐药性的一个有前途的选择。环糊精(CD)被用来将利巴韦林配制成电纺纳米纤维给药系统,以增强利巴韦林的吸收并加速其释放,供局部使用。经 X 射线衍射分析证实,利巴韦林发生了从结晶到无定形的物理变化。发生这种变化的原因是电纺丝过程后分子发生了分散。此外,从药物负载结果来看,CD 提高了利巴韦林在纳米纤维中的封装效率。聚乙烯吡咯烷酮(PVP)和 CD 增加了释放到溶液中的利巴韦林,也增加了纤维毡的解体,当负载利巴韦林的纤维开始从其边界向中点分解时,纤维毡收缩并最终溶解成凝胶状物质。评估了利巴韦林和 CD 对人真皮成纤维细胞(HFF-1)的细胞毒性,结果表明利巴韦林在细胞暴露 24 小时后相对安全,而 CD 在 24 小时和 48 小时内是安全的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Fabrication and evaluation of ribavirin-loaded electrospun nanofibers as an antimicrobial wound dressing

Background

Skin is regarded as an essential first line of defense against harmful pathogens and it hosts an ecosystem of microorganisms that create a widely diverse skin microbiome. In chronic wounds, alterations in the host-microbe interactions occur forming polymicrobial biofilms that hinder the process of wound healing. Ribavirin, an antiviral drug, possesses antimicrobial activity, especially against Pseudomonas aeruginosa and Candida albicans, which are known as the main opportunistic pathogens in chronic wounds.

Rationale

In this study, electrospun nanofiber systems loaded with ribavirin were developed as a potential wound dressing for topical application in chronic wounds. Ribavirin was chosen in this study owing to the emerging cases of antimicrobial (antibiotics and antifungal) resistance and the low attempts to discover new antimicrobial agents, which encouraged the repurposing use of current medication as an alternative solution in case of resistance to the available agents. Additionally, the unique mechanism of action of ribavirin, i.e., perturbing the bacterial virulence system without killing or stopping their growth and rendering the pathogens disarmed, might be a promising choice to prevent drug resistance. Cyclodextrin (CD) was utilized to formulate ribavirin as an electrospun nanofibers delivery system to enhance the absorption and accelerate the release of ribavirin for topical use.

Results

The results demonstrated a successful ribavirin nanofibers fabrication that lacked beads and pores on the nanofibrous surfaces. Ribavirin underwent a physical transformation from crystalline to amorphous form, as confirmed by X-ray diffraction analysis. This change occurred due to the molecular dispersion after the electrospinning process. Additionally, the CD enhanced the encapsulation efficiency of ribavirin in the nanofibers as observed from the drug-loading results. Polyvinylpyrrolidone (PVP) and CD increased ribavirin released into the solution and the disintegration of fibrous mats which shrank and eventually dissolved into a gel-like substance as the ribavirin-loaded fibers began to break down from their border toward the midpoint. Cytotoxicity of ribavirin and CD was evaluated against human dermal fibroblasts (HFF-1) and the results showed a relatively safe profile of ribavirin upon 24-hour cell exposure, while CD was safe within 24- and 48-hour.

Conclusion

This study provides valuable insights into the potential application of our nanofibrous system for treating chronic wounds; however, further antimicrobial and in-vivo studies are required to confirm its safety and effectiveness.

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来源期刊
Saudi Pharmaceutical Journal
Saudi Pharmaceutical Journal PHARMACOLOGY & PHARMACY-
CiteScore
6.10
自引率
2.40%
发文量
194
审稿时长
67 days
期刊介绍: The Saudi Pharmaceutical Journal (SPJ) is the official journal of the Saudi Pharmaceutical Society (SPS) publishing high quality clinically oriented submissions which encompass the various disciplines of pharmaceutical sciences and related subjects. SPJ publishes 8 issues per year by the Saudi Pharmaceutical Society, with the cooperation of the College of Pharmacy, King Saud University.
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