Emami Jaber, Mostolizadeh Niloofar, Tabbakhian Majid, Heydari Parisa, Kharazi Anousheh Zargar, Minaeiyan Mohsen, Hasanzadeh Farshid, Mirian Mina, Talebi Ardeshir
Department of Pharmaceutics, School of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan, I.R. Iran.
Department of Biomaterials, Tissue Engineering and Nanotechnology, School of Advanced Technologies in Medicine, Isfahan University of Medical Sciences, Isfahan, I.R. Iran.
Res Pharm Sci. 2025 Aug 25;20(4):610-634. doi: 10.4103/RPS.RPS_60_25. eCollection 2025 Aug.
Wound dressings are essential in managing chronic wounds like pressure ulcers, which increase healthcare costs and hospital stays. There is a rising demand for advanced dressings that effectively promote healing. This study developed electrospun gelatin-hyaluronic acid (Gel/HA) nanofibers loaded with silver nanoparticles (Ag NPs) and phenytoin to enhance wound healing.
Ag NPs were synthesized via silver nitrate reduction using trisodium citrate and tannic acid, and characterized for size, zeta potential, PDI, UV-Vis absorption, and XRD patterns. Drug-free and drug-loaded Gel/HA nanofibers were fabricated and analyzed using FE-SEM, FTIR, DSC, XRD, swelling behavior, drug loading, and release profiles. In vitro antibacterial and in vivo wound healing studies were conducted.
FINDINGS/RESULTS: Optimized Ag NPs had a size of 41.96 ± 1.2 nm, zeta potential of -23.77 ± 1.31 mV, and PDI of 0.35 ± 0.02. The ideal nanofiber formulation (20 g Gel and 0.25 g HA/100 mL) showed drug loading efficiencies of 56.02 ± 1.8% (Ag NPs) and 61.02 ± 2.82% (phenytoin), with release times of 22.23 and 28.53 h, respectively. The nanofibers demonstrated high swelling (822.2%) and strong antibacterial activity. In vivo studies revealed significantly faster wound closure, improved epithelialization, collagen deposition, and complete healing within 15 days. These effects reflect the synergy between Ag NPs' antimicrobial and phenytoin's regenerative properties.
Gel/HA nanofibers loaded with Ag NPs and phenytoin show great promise as advanced wound dressings. Further studies in larger animal models and clinical trials are warranted.
伤口敷料对于处理压疮等慢性伤口至关重要,这些慢性伤口会增加医疗成本和住院时间。对能有效促进愈合的先进敷料的需求不断增加。本研究制备了负载银纳米颗粒(Ag NPs)和苯妥英的静电纺丝明胶 - 透明质酸(Gel/HA)纳米纤维,以促进伤口愈合。
通过用柠檬酸钠和单宁酸还原硝酸银合成Ag NPs,并对其尺寸、zeta电位、多分散指数(PDI)、紫外 - 可见吸收和X射线衍射(XRD)图谱进行表征。制备了无药物和负载药物的Gel/HA纳米纤维,并使用场发射扫描电子显微镜(FE - SEM)、傅里叶变换红外光谱(FTIR)、差示扫描量热法(DSC)、XRD、溶胀行为、载药量和释放曲线进行分析。进行了体外抗菌和体内伤口愈合研究。
优化后的Ag NPs尺寸为41.96±1.2 nm,zeta电位为 - 23.77±1.31 mV,PDI为0.35±0.02。理想的纳米纤维配方(20 g明胶和0.25 g透明质酸/100 mL)显示载药效率分别为56.02±1.8%(Ag NPs)和61.02±2.82%(苯妥英),释放时间分别为22.23和28.53小时。纳米纤维表现出高溶胀性(822.2%)和强抗菌活性。体内研究显示伤口闭合明显加快,上皮化、胶原蛋白沉积得到改善,并在15天内完全愈合。这些效果反映了Ag NPs的抗菌性能与苯妥英的再生性能之间的协同作用。
负载Ag NPs和苯妥英的Gel/HA纳米纤维作为先进的伤口敷料具有很大的潜力。有必要在更大的动物模型和临床试验中进行进一步研究。