双过滤血浆分离法中操作条件对等离子分离器选择性的影响。

M. Mineshima, R. Yokoi, K. Horibe, K. Eguchi, I. Kaneko, T. Agishi, T. Akiba
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引用次数: 5

摘要

在典型的双过滤血浆分离治疗中,白蛋白和一些与毒素相关的免疫球蛋白之间的血浆分离是有限的,因为目前可用的血浆分离器对这些蛋白质都没有严格的切断特性。免疫球蛋白对白蛋白的选择性不仅取决于膜的切断特性,还取决于操作条件,如血浆分拣器中供应血浆(Q(P))和保留血浆(Q(D))的流速。我们进行了一项体外研究,使用单次血浆交换处理收获的人血浆,以评估血浆分选器Evaflux 2A-F (Kawasumi Laboratories, Inc., Tokyo, Japan)在不同操作条件下的选择性。恒速过滤实验结果表明,在实验开始后的2 h内,由于膜捕获、吸附和/或堵塞等原因,各蛋白在料池中的浓度和筛分系数(SC)值均略有下降。随着过滤分数(FF)的增加,白蛋白的时间平均SC值随流速比(Q(P)/Q(D))的增加而增加,但由于Q(D)的减小,白蛋白的相对去除率(mD/mP*)随Q(P)/Q(D)的降低而降低。另一方面,对于免疫球蛋白,SC值几乎不变,由于FF的增加,mD/mP*值随着Q(P)/Q(D)的增加而增加。提高Q(P)和降低Q(D)是提高血浆分馏器中这些蛋白之间选择性的有效手段。然而,膜污染明显超过了被认为是临界点的Q(P)/Q(D)值。手术应在临界Q(P)/Q(D)值以下进行,这取决于患者的血浆成分和膜的截止特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of operating conditions on selectivity of a plasma fractionator in double filtration plasmapheresis.
In a typical double filtration plasmapheresis treatment, plasma fractionation between albumin and some immunoglobulins associated with toxins is limited because none of the currently available plasma fractionators has a strict cutoff property for these proteins. Selectivity of immunoglobulins over albumin depends not only on the cutoff properties of the membrane but on the operating conditions such as the flow rate of the supplied plasma (Q(P)) and retained plasma to be discarded (Q(D)) in the plasma fractionator. We carried out an in vitro study using human plasma harvested by single plasma exchange treatments to assess the selectivity of a plasma fractionator, Evaflux 2A-F (Kawasumi Laboratories, Inc., Tokyo, Japan), under various operating conditions. The results of rate-constant filtration experiments showed that the concentrations in the feed tank and the sieving coefficient (SC) values of every protein were decreased slightly within 2 h after the start of the experiment because of membrane trapping, adsorption, and/or plugging. The time-averaged SC value of albumin increased with flow rate ratio (Q(P)/Q(D)) due to increasing filtration fraction (FF), but relative removal efficiency (mD/mP*) for albumin decreased with Q(P)/ Q(D) due to decreasing Q(D). For immunoglobulins, on the other hand, the SC values were almost unchanged, and the mD/mP* values increased with Q(P)/Q(D) due to an increase in FF. Both increasing Q(P) and decreasing Q(D) are effective means of improving selectivity between these proteins in the plasma fractionator. Membrane fouling is, however, obvious beyond a Q(P)/Q(D) value that is thought to be a critical point. Operation should be conducted below the critical Q(P)/Q(D) value, which depends on the patient's plasma components and the cutoff property of the membrane.
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