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用于增强烧伤创面愈合的载银纳米颗粒芦荟多糖/聚乙烯醇/海藻酸钠纳米纤维片

Silver Nanoparticle-Infused Aloe Polysaccharides/ Polyvinyl Alcohol/Sodium Alginate Nanofiber Sheet for Enhanced Burn Wound Healing.

作者信息

Patole Vinita, Gadge Prathamesh, Shirode Abhay, Ingavle Ganesh, Undale Vaishali, Deshkar Sanjeevani, Sanap Avinash, Jha Abhishek, Pandit Ashlesha, Giram Prabhanjan

机构信息

Department of Pharmaceutics, Dr. D. Y. Patil Institute of Pharmaceutical Sciences and Research, Pimpri, Pune 411018, India.

Department of Pharmaceutical Analysis and Quality Assurance, Bharati Vidhyapeeth's College of Pharmacy, Belapur, Navi Mumbai.

出版信息

Curr Drug Deliv. 2025 Aug 19. doi: 10.2174/0115672018381155250805060608.

Abstract

INTRODUCTION

Burn wounds are painful injuries that demand immediate and effective management. Conventional wound care solutions often have limitations, such as discomfort during application or removal and potential damage to healing tissue. Therefore, developing novel wound dressings that support biological processes and promote wound healing is highly beneficial. Electrospun nanofibers have emerged as a promising platform for the development of biomedical wound dressings due to their unique structural and functional properties. This study evaluates the burn wound healing potential of electrospun nanofibers composed of aloe polysaccharides, sodium alginate, and Polyvinyl Alcohol (PVA), impregnated with Silver Nanoparticles (AgNPs).

METHOD

AgNPs were synthesized using a green approach, employing Aloe vera as a reducing agent. Characterization of AgNPs was performed using UV-vis spectroscopy, FTIR, zeta potential analysis, and TEM. Aloe polysaccharides were extracted using ultrasonication and characterized via FTIR, XRD, and DSC. The extracted polysaccharides were then blended with PVA and sodium alginate to fabricate electrospun nanofiber sheets, into which the synthesized AgNPs were incorporated and analyzed for antibacterial, angiogenesis, and in vivo studies.

RESULTS

AgNPs exhibited spherical morphology with sizes ranging from 20 to 27 nm under TEM. Electrospun nanofiber sheet displayed a uniform structure with an average fiber diameter of 129 nm, as confirmed by SEM analysis. A sustained release of silver ions (78.98 ± 0.61% over 48 hours) was observed. The nanofibers exhibited strong antibacterial activity against Escherichia coli and Staphylococcus aureus, promoted angiogenesis, and significantly enhanced wound healing in a burn wound model.

DISCUSSION

AgNPs impregnated nanofiber sheet exhibited superior wound healing, angiogenesis, and antibacterial properties ideal for wound healing applications. The nanofiber sheets mimicked the extracellular matrix and supported angiogenesis. Enhanced wound closure in vivo studies confirmed the therapeutic potential of the nanofibers.

CONCLUSION

AgNPs-impregnated nanofiber sheets offer antibacterial activity and support angiogenesis, suggesting their potential as a multifunctional wound dressing for effective burn treatment.

摘要

引言

烧伤创面是需要立即进行有效处理的疼痛性损伤。传统的伤口护理解决方案往往存在局限性,例如在应用或去除过程中会带来不适以及可能对愈合组织造成损伤。因此,开发能够支持生物过程并促进伤口愈合的新型伤口敷料具有极大的益处。由于其独特的结构和功能特性,电纺纳米纤维已成为生物医学伤口敷料开发的一个有前景的平台。本研究评估了负载银纳米颗粒(AgNPs)的由芦荟多糖、海藻酸钠和聚乙烯醇(PVA)组成的电纺纳米纤维对烧伤创面愈合的潜力。

方法

采用绿色方法,以芦荟作为还原剂合成AgNPs。使用紫外可见光谱、傅里叶变换红外光谱、zeta电位分析和透射电子显微镜对AgNPs进行表征。通过超声提取芦荟多糖,并通过傅里叶变换红外光谱、X射线衍射和差示扫描量热法对其进行表征。然后将提取的多糖与PVA和海藻酸钠混合以制备电纺纳米纤维片,将合成的AgNPs掺入其中并进行抗菌、血管生成和体内研究分析。

结果

透射电子显微镜下观察到AgNPs呈现球形形态,尺寸范围为20至27nm。扫描电子显微镜分析证实,电纺纳米纤维片呈现均匀结构,平均纤维直径为129nm。观察到银离子的持续释放(48小时内为78.98±0.61%)。纳米纤维对大肠杆菌和金黄色葡萄球菌表现出强大的抗菌活性,促进血管生成,并在烧伤创面模型中显著增强伤口愈合。

讨论

负载AgNPs的纳米纤维片表现出优异的伤口愈合、血管生成和抗菌性能,是伤口愈合应用的理想选择。纳米纤维片模拟细胞外基质并支持血管生成。体内研究中增强的伤口闭合证实了纳米纤维的治疗潜力。

结论

负载AgNPs的纳米纤维片具有抗菌活性并支持血管生成,表明它们作为有效烧伤治疗的多功能伤口敷料的潜力。

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