壳聚糖/聚乙烯醇膜和纳米纤维的合成、表征及其与血液组分的生物相容性:在血液透析膜中的应用前景

Lizeth-Ivón Álvarez-Cháirez , Juan-José Bollain-y-Goytia , Diana Zárate-Triviño , Jorge-Luis Menchaca-Arredondo , Felipe-de-Jesús Torres-Del muro , Esperanza Avalos-Díaz , Rafael Herrera-Esparza , Cristina Rodríguez-Padilla
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引用次数: 0

摘要

探索提高血液透析(HD)和血液灌流(HP)材料生物相容性的方法,以减少其不良反应是至关重要的。一种潜在的方法是将壳聚糖(CS)与聚乙烯醇(PVA)融合,因为这已被证明可以改善其生物相容性。本文合成了CS/PVA膜和纳米纤维,并对其血液生物相容性进行了表征。利用傅里叶变换红外光谱(FTIR)、原子力显微镜(AFM)和扫描电子显微镜(SEM)对材料进行表征。采用溶血百分率、Wright染色法测定血液形态和吖啶橙/碘化丙啶(AO/PI)染色法测定细胞凋亡,考察CS/PVA纳米结构的生物相容性。结果表明,在膜和纳米纤维中CS和PVA之间存在相互作用。当用作过滤器时,CS/PVA膜发生了变化,这种变化在CS/PVA纳米纤维中是剧烈的。膜和透析器纤维的溶血率分别为20.40%和9.51%,差异有统计学意义p = 0.025。用CS/PVA膜过滤血液时,每野有2±1个粒细胞出现膜破裂。CS/PVA膜不产生坏死细胞;每个野区有5±2个凋亡淋巴细胞。在CS/PVA纳米纤维中,每野观察到6±2个坏死淋巴细胞和3±1个凋亡淋巴细胞。CS/PVA膜具有血液生物相容性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis, characterization of chitosan/polyvinyl alcohol membranes and nanofibers and their biocompatibility with blood components: In future application for hemodialysis membranes
It is essential to explore ways to enhance the biocompatibility of hemodialysis (HD) and hemoperfusion (HP) materials, with the aim of reducing their adverse effects. One potential approach is to fuse Chitosan (CS) with Polyvinyl alcohol (PVA), as this has been shown to improve its biocompatibility. In this work, CS/PVA membranes and nanofibers were synthesized and characterized to evaluate their blood biocompatibility. We used Fourier transform infrared spectroscopy (FTIR), atomic force microscopy (AFM), and scanning electron microscopy (SEM) to characterize the materials. The biocompatibility of the CS/PVA nanostructures was determined by the percentage of hemolysis, blood morphology by the Wright stain and apoptosis by the acridine orange/propidium iodide (AO/PI) stain. The results showed an interaction between CS and PVA in the membranes and in the nanofibers. When used as filters, the CS/PVA membrane changes and this change is drastic in CS/PVA nanofibers. The membrane and the dialyzer fibers caused a hemolysis of 20.40 % and 9.51 % respectively, with a significant difference of p = 0.025. When the blood was filtered with the CS/PVA membrane, membrane rupture was observed in 2 ± 1 granulocytes per field. The CS/PVA membrane does not produce necrotic cells; however, 5 ± 2 apoptotic lymphocytes per field were found. In the CS/PVA nanofibre, 6 ± 2 necrotic and 3 ± 1 apoptotic lymphocytes per field were observed. The CS/PVA membrane showed blood biocompatibility.
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