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负载于板栗壳木质素上的银纳米颗粒的高度细胞相容性聚乳酸电纺微纤维用于靶向抗菌活性和抗氧化作用。

Highly Cytocompatible Polylactic Acid Based Electrospun Microfibers Loaded with Silver Nanoparticles Generated onto Chestnut Shell Lignin for Targeted Antibacterial Activity and Antioxidant Action.

机构信息

Department of Chemical Sciences, University of Naples "Federico II", Naples 80126, Italy.

Department of Agricultural Sciences, University of Naples "Federico II", Portici (NA), Naples 80055, Italy.

出版信息

ACS Appl Mater Interfaces. 2024 Jun 5;16(22):28230-28244. doi: 10.1021/acsami.4c05761. Epub 2024 May 22.

DOI:10.1021/acsami.4c05761
PMID:38775439
Abstract

Electrospun (e-spun) fibers are generally regarded as powerful tools for cell growth in tissue regeneration applications, and the possibility of imparting functional properties to these materials represents an increasingly pursued goal. We report herein the preparation of hybrid materials in which an e-spun d,l-polylactic acid matrix, to which chitosan or crystalline nanocellulose was added to improve hydrophilicity, was loaded with different amounts of silver(0) nanoparticles (AgNP) generated onto chestnut shell lignin (CSL) (AgNP@CSL). A solvent-free mechanochemical method was used for efficient (85% of the theoretical value by XRD analysis) Ag(0) production from the reduction of AgNO by lignin. For comparison, e-spun fibers containing CSL alone were also prepared. SEM and TEM analyses confirmed the presence of AgNP@CSL (average size 30 nm) on the fibers. Different chemical assays indicated that the AgNP@CSL containing fibers exhibited marked antioxidant properties (EC50 1.6 ± 0.1 mg/mL, DPPH assay), although they were halved with respect to those of the CSL containing fibers, as expected because of the efficient silver ion reduction. All the fibers showed high cytocompatibility toward human mesenchymal stem cells (hMSCs) representative of the self-healing process, and their antibacterial properties were tested against the pathogens (), , and . Finally, competitive surface colonization as simulated by cocultures of hMSC and showed that AgNP@CSL loaded fibers offered the cells a targeted protection from infection, thus well balancing cytocompatibility and antibacterial properties.

摘要

静电纺丝(e-spun)纤维通常被认为是组织再生应用中细胞生长的有力工具,而赋予这些材料功能性特性的可能性代表了一个越来越被追求的目标。本文报道了一种混合材料的制备方法,其中静电纺丝的 d,l-聚乳酸基质中加入壳聚糖或结晶纳米纤维素以提高亲水性,并负载不同量的银(0)纳米颗粒(AgNP),这些 AgNP 是在板栗壳木质素(CSL)上生成的(AgNP@CSL)。使用无溶剂机械化学方法,从木质素还原 AgNO3 高效地(通过 XRD 分析达到理论值的 85%)生成 Ag(0)。为了进行比较,还制备了仅含有 CSL 的静电纺丝纤维。SEM 和 TEM 分析证实了纤维上存在 AgNP@CSL(平均尺寸 30nm)。不同的化学分析表明,含有 AgNP@CSL 的纤维表现出显著的抗氧化特性(EC50 为 1.6±0.1mg/mL,DPPH 测定),尽管与含有 CSL 的纤维相比,抗氧化性降低了一半,这是由于银离子还原的效率较高。所有纤维对人骨髓间充质干细胞(hMSC)均表现出高度的细胞相容性,这代表了自我修复过程,并且对病原体()、()和()进行了抗菌性能测试。最后,通过 hMSC 和 共培养模拟竞争表面定植,发现负载 AgNP@CSL 的纤维为细胞提供了针对感染的靶向保护,从而很好地平衡了细胞相容性和抗菌性能。

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