Nanopolymeric Drug Delivery Lab, Department of Pharmacy, School of Chemical Sciences and Pharmacy, Central University of Rajasthan, NH-8, Bandarsindri, Kishangarh, Ajmer, Rajasthan 305817, India.
Sri Sathya Sai Institute of Pharmaceutical Sciences, RKDF University, Bhopal, Madhya Pradesh 462033, India.
Int J Pharm. 2024 Jan 25;650:123722. doi: 10.1016/j.ijpharm.2023.123722. Epub 2023 Dec 17.
Chronic wounds have become a serious global health issue. In this study, we investigated the effect of increasing fucoidan (FD) concentration on the characteristics of nanofibers and their wound healing potential at in vitro as well as in vivo level. The results showed that increasing FD content (0.25 to 1 %) led to an significant increase in nanofiber diameter (487.7 ± 125.39 to 627.9 ± 149.78 nm), entrapment efficiency (64.26 ± 2.6 to 94.9 ± 3.1 %), and water uptake abilities (436.5 ± 1.2 to 679.7 ± 11.3 %). However, the in vitro biodegradation profile decreased with an increase in FD concentration. Water vapor transmission rate analysis showed that it was within the standard range for all FD concentrations. Nanofibers with 1 % PVA/DX/FD exhibited slow-release behavior, suggesting prolonged FD availability at the wound site. In vivo studies in rats with full-thickness wounds demonstrated that applying 1 % FD-enriched PVA/DEX nanofibers significantly (p < 0.0001) improved mean wound area closure. These findings suggest that FD-enriched nanofibers have immense potential as a wound dressing material in future if explored further.
慢性伤口已成为一个严重的全球健康问题。在这项研究中,我们研究了增加褐藻糖胶(FD)浓度对纳米纤维特性及其在体外和体内水平的伤口愈合潜力的影响。结果表明,随着 FD 含量(0.25%至 1%)的增加,纳米纤维的直径(487.7 ± 125.39 至 627.9 ± 149.78nm)、包封效率(64.26 ± 2.6 至 94.9 ± 3.1%)和吸水能力(436.5 ± 1.2 至 679.7 ± 11.3%)显著增加。然而,随着 FD 浓度的增加,体外生物降解情况呈下降趋势。水蒸气传输率分析表明,所有 FD 浓度均在标准范围内。含有 1% PVA/DX/FD 的纳米纤维表现出缓慢释放行为,表明 FD 在伤口部位的持续供应。在全厚度创面大鼠的体内研究中,结果表明,应用富含 1% FD 的 PVA/DEX 纳米纤维可显著(p<0.0001)提高平均创面面积闭合率。这些发现表明,如果进一步探索,富含 FD 的纳米纤维在未来作为伤口敷料材料具有巨大的潜力。