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Chitosan-graft-poly(vinyl acetate) for hemodialysis applications

机译:用于血液透析的壳聚糖接枝聚乙酸乙烯酯

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摘要

Chitosan was graft copolymerized with vinyl acetate using ceric ammonium nitrate as the initiator. The chitosan-g-poly(vinyl acetate) (chitosan-g-PVAc) membranes were found to be blood compatible, noncytotoxic, and biodegradable. The physicochemical characterization of the membranes revealed that the membranes possess the synergistic effect of the natural-synthetic hybrids of chitosan and PVAc with excellent mechanical stability and tunable hydrophilic/hydrophobic characteristics. The permeation characteristics of chitosan-g-PVAc membranes for four different solutes creatinine, urea, glucose, and albumin was studied in vitro at 37°C for assessment of the suitability of them as hemodialysis membranes. The studies showed that the membranes exhibit higher permeability to creatinine, urea, and glucose compared with the commercial cellulose membrane and are impermeable to the essential nutrient albumin. Hence, the need for the development of biocompatible, mechanically strong dialysis membranes could be addressed with the modification of chitosan through grafting with PVAc. Potential applications like artificial kidney, artificial pancreas, and so forth, are envisaged from these membranes.
机译:以硝酸铈铵为引发剂,将壳聚糖与乙酸乙烯酯接枝共聚。发现壳聚糖-g-聚醋酸乙烯酯(壳聚糖-g-PVAc)膜具有血液相容性,无细胞毒性且可生物降解。膜的理化特性表明,该膜具有壳聚糖和PVAc天然合成杂化物的协同作用,具有优异的机械稳定性和可调节的亲水/疏水特性。在37°C的体外研究了壳聚糖-g-PVAc膜对四种不同溶质肌酐,尿素,葡萄糖和白蛋白的渗透特性,以评估其作为血液透析膜的适用性。研究表明,与市售纤维素膜相比,该膜对肌酐,尿素和葡萄糖的渗透性更高,并且对必需营养白蛋白不渗透。因此,通过与PVAc接枝修饰壳聚糖,可以满足开发生物相容性,机械强度高的透析膜的需要。从这些膜可以想到诸如人造肾脏,人造胰腺等的潜在​​应用。

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