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评估一种在尿毒症猪模型中使用吸附剂辅助腹膜透析的系统。

Evaluation of a system for sorbent-assisted peritoneal dialysis in a uremic pig model.

机构信息

Department of Nephrology and Hypertension, University Medical Center Utrecht, Utrecht, The Netherlands.

Nanodialysis BV, Oirschot, The Netherlands.

出版信息

Physiol Rep. 2020 Dec;8(23):e14593. doi: 10.14814/phy2.14593.

Abstract

A system for sorbent-assisted peritoneal dialysis (SAPD) has been developed that continuously recirculates dialysate via a tidal mode using a single-lumen peritoneal catheter with the regeneration of spent dialysate by means of sorbents. SAPD treatment may improve plasma clearance by the maintenance of a high plasma-to-dialysate concentration gradient and by increasing the mass transfer area coefficient (MTAC) of solutes. The system is designed for daily 8-hr treatment (12 kg, nighttime system). A wearable system (2.3 kg, daytime system) may further enhance the clearance of phosphate and organic waste solutes during the day. Uremic pigs (n = 3) were treated with the day- (n = 3) and nighttime system (n = 15) for 4-8 hr per treatment. Plasma clearance (Cl), MTAC, and total mass transport (MT) of urea, creatinine, phosphate, and potassium were compared with a static dwell (n = 28). Cl, MTAC, and MT of urea, creatinine, phosphate, and potassium were low in the pig as compared to humans due to the pig's low peritoneal transport status and could be enhanced only to a limited extent by SAPD treatment compared with a static dwell (nighttime system: Cl urea: ×1.5 (p = .029), Cl creatinine: ×1.7 (p = .054), Cl phosphate: ×1.5 (p = .158), Cl potassium: ×1.6 (p = .011); daytime system: Cl creatinine: ×2.7 (p = .040), Cl phosphate: ×2.2 (p = .039)). Sorbent-assisted peritoneal dialysis treatment in a uremic pig model is safe and enhances small solute clearance as compared to a static dwell. Future studies in humans or animal species with higher peritoneal transport should elucidate whether our SAPD system enhances clearance to a clinically relevant extent as compared to conventional PD.

摘要

已开发出一种用于吸附剂辅助腹膜透析 (SAPD) 的系统,该系统通过使用带有再生吸附剂的单腔腹膜导管以潮汐模式连续再循环透析液,从而实现对用过的透析液的再生。SAPD 治疗可通过维持高血浆与透析液浓度梯度和增加溶质的质量传递面积系数 (MTAC) 来改善血浆清除率。该系统设计用于每天 8 小时治疗(12 公斤,夜间系统)。可穿戴系统(2.3 公斤,白天系统)可能会进一步提高白天磷酸盐和有机废物溶质的清除率。用日间(n = 3)和夜间系统(n = 15)对尿毒症猪(n = 3)进行 4-8 小时/次的治疗。与静态停留(n = 28)相比,比较了猪的血浆清除率(Cl)、MTAC 和尿素、肌酐、磷酸盐和钾的总传质(MT)。与人类相比,由于猪的腹膜转运状态较低,因此猪的尿素、肌酐、磷酸盐和钾的 Cl、MTAC 和 MT 均较低,与静态停留相比,SAPD 治疗仅能在一定程度上增强(夜间系统:Cl 尿素:×1.5(p = 0.029),Cl 肌酐:×1.7(p = 0.054),Cl 磷酸盐:×1.5(p = 0.158),Cl 钾:×1.6(p = 0.011);日间系统:Cl 肌酐:×2.7(p = 0.040),Cl 磷酸盐:×2.2(p = 0.039))。与静态停留相比,在尿毒症猪模型中,吸附剂辅助腹膜透析治疗是安全的,并可增强小分子溶质的清除率。在具有更高腹膜转运的人类或动物物种中的未来研究应阐明我们的 SAPD 系统与常规 PD 相比是否能在临床上以有意义的程度增强清除率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82ea/7718839/b154a8aa373c/PHY2-8-e14593-g001.jpg

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