Comprehensive Study of Cellulosic and Synthetic Membranes for Dialyzer

Divya V. Patil, S. Balivada, Satyam Gorde
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Abstract

The kidney is the primary osmoregulatory organ in the mammalian body, removing harmful wastes such as ammonia and excess fluid from the blood and maintaining the ionic concentrations of the blood by retaining electrolytes, calcium, and phosphorus. In kidney failure, the kidneys are unable to filter the blood effectively. Dialysis is a survival treatment for patients with kidney failure. Dialysis involves the exchange of blood and dialysate across a semipermeable membrane. Concentration gradients drive diffusion, and hydrostatic pressure gradients drive convection. There are two different types of dialysis: peritoneal and hemodialysis. During hemodialysis, the blood is filtered by an external device called a dialyzer. Since the 1950s, dialyzers have been used commercially for hemodialysis; their removal capacity of uremic substances, biocompatibility, and combination of glomerular and renal tubular function have all been the subject of ongoing development. Despite the progress, mortality remains high. Investigating how dialysis membranes affect long-term morbidity and mortality in hemodialysis maintenance patients is essential. Dialyzer membranes play a vital role in dialysis treatment. Important characteristics of membrane material include permeability, hydrophilicity, and biocompatibility. Cellulosic and synthetic polymeric membranes are the two primary types of dialysis membranes. This article comprehensively analyzes the concept of dialysis and the characteristics of dialyzers and their types. This review focuses critically on the membranes of the dialyzer and their classification. We anticipate that this review will aid researchers in selecting the optimal dialyzer and membrane material to improve hemodialysis treatment outcomes for renal disease patients.
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透析器用纤维素和合成膜的综合研究
肾脏是哺乳动物体内主要的渗透调节器官,它能清除血液中的有害废物,如氨和多余的液体,并通过保留电解质、钙和磷来维持血液中的离子浓度。肾功能衰竭时,肾脏不能有效地过滤血液。透析是肾衰竭患者的一种生存治疗方法。透析包括血液和透析液通过半透膜的交换。浓度梯度驱动扩散,静水压力梯度驱动对流。有两种不同类型的透析:腹膜透析和血液透析。在血液透析过程中,血液被一个叫做透析器的外部装置过滤。自20世纪50年代以来,透析器已被商业化用于血液透析;它们对尿毒症物质的清除能力、生物相容性以及肾小球和肾小管功能的结合都是正在发展的主题。尽管取得了进展,但死亡率仍然很高。研究透析膜如何影响血液透析维持患者的长期发病率和死亡率是必要的。透析膜在透析治疗中起着至关重要的作用。膜材料的重要特性包括渗透性、亲水性和生物相容性。纤维素膜和合成聚合物膜是透析膜的两种主要类型。本文全面分析了透析的概念、透析器的特点及其类型。本文重点介绍了透析器的膜及其分类。我们期望这篇综述将有助于研究者选择最佳的透析器和膜材料,以改善肾脏疾病患者的血液透析治疗效果。
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