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超临界CO₂干燥法制备的丝素蛋白-海藻酸盐气凝胶珠:一种具有双重功能的贴合性止血敷料。

Silk Fibroin-Alginate Aerogel Beads Produced by Supercritical CO Drying: A Dual-Function Conformable and Haemostatic Dressing.

作者信息

Sellitto Maria Rosaria, Larobina Domenico, De Soricellis Chiara, Amante Chiara, Falcone Giovanni, Russo Paola, Bernardes Beatriz G, Oliveira Ana Leite, Del Gaudio Pasquale

机构信息

Department of Pharmacy, University of Salerno, 84084 Fisciano, Italy.

Institute of Polymers, Composites and Biomaterials, National Research Council of Italy, P.le E. Fermi 1, 80055 Portici, Italy.

出版信息

Gels. 2025 Aug 2;11(8):603. doi: 10.3390/gels11080603.

Abstract

Infection control and bleeding management in deep wounds remain urgent and unmet clinical challenges that demand innovative, multifunctional, and sustainable solutions. Unlike previously reported sodium alginate and silk fibroin-based gel formulations, the present work introduces a dual-functional system combining antimicrobial and haemostatic activity in the form of conformable aerogel beads. This dual-functional formulation is designed to absorb exudate, promote clotting, and provide localized antimicrobial action, all essential for accelerating wound repair in high-risk scenarios within a single biocompatible system. Aerogel beads were obtained by supercritical drying of a silk fibroin-sodium alginate blend, resulting in highly porous, spherical structures measuring 3-4 mm in diameter. The formulations demonstrated efficient ciprofloxacin encapsulation (42.75-49.05%) and sustained drug release for up to 12 h. Fluid absorption reached up to four times their weight in simulated wound fluid and was accompanied by significantly enhanced blood clotting, outperforming a commercial haemostatic dressing. These findings highlight the potential of silk-based aerogel beads as a multifunctional wound healing platform that combines localized antimicrobial delivery, efficient fluid and exudate management, biodegradability, and superior haemostatic performance in a single formulation. This work also shows for the first time how the prilling encapsulation technique with supercritical drying is able to successfully produce silk fibroin and sodium alginate composite aerogel beads.

摘要

深部伤口的感染控制和出血管理仍然是紧迫且未得到满足的临床挑战,需要创新、多功能且可持续的解决方案。与先前报道的基于海藻酸钠和丝素蛋白的凝胶制剂不同,本研究引入了一种以适形气凝胶珠形式结合抗菌和止血活性的双功能系统。这种双功能制剂旨在吸收渗出液、促进凝血并提供局部抗菌作用,所有这些对于在单一生物相容性系统中加速高风险情况下的伤口修复都是必不可少的。气凝胶珠是通过对丝素蛋白 - 海藻酸钠混合物进行超临界干燥获得的,形成了直径为3 - 4毫米的高度多孔球形结构。这些制剂显示出高效的环丙沙星包封率(42.75 - 49.05%),并可持续释药长达12小时。在模拟伤口液中,其吸液量达到自身重量的四倍,同时显著增强了血液凝固能力,优于市售止血敷料。这些发现突出了基于丝的气凝胶珠作为多功能伤口愈合平台的潜力,该平台在单一制剂中结合了局部抗菌递送、有效的液体和渗出液管理、生物可降解性以及卓越的止血性能。这项工作还首次展示了超临界干燥造粒包封技术如何成功制备丝素蛋白和海藻酸钠复合气凝胶珠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b96c/12385518/915d248d252e/gels-11-00603-g001.jpg

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