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In Vitro and In Vivo Assessment of T, B and Myeloid Cells Suppressive Activity and Humoral Responses from Transplant Recipients
Published on: August 12, 2017
A randomized prospective cross over study on the effects of medium cut-off membranes on T cellular and serologic
Georg Lorenz1, Yuli Shen2,3,4, Renate Ilona Hausinger2
1Department of Nephrology, School of Medicine, Klinikum rechts der Isar, Technical University of Munich, Ismaninger Str. 22, 81675, Munich, Germany. Georg.lorenz.gl@gmail.com.
Abstract:
Extended cut-off filtration by medium cut-off membranes (MCO) has been shown to be safe in maintenance hemodialysis (HD). The notion of using them for the control of chronic low-grade inflammation and positively influencing cellular immune aberrations seems tempting. We conducted an open label, multicenter, randomized, 90 day 2-phase cross over clinical trial (MCO- vs. high flux-HD). 46 patients underwent randomization of which 34 completed the study. Dialysate- or pre- and post-dialysis serum inflammatory mediators were assayed for each study visit. Ex vivo T cell activation was assessed from cryopreserved leucocytes by flow cytometry. Linear mixed models were used to compare treatment modalities, with difference in pre-dialysis serum MCP-1 levels after 3 months as the predefined primary endpoint. Filtration/dialysate concentrations of most mediators, including MCP-1 (mean ± SD: 10.5 ± 5.9 vs. 5.1 ± 3.8 pg/ml, P < 0.001) were significantly increased during MCO- versus high flux-HD. However, except for the largest mediator studied, i.e., YKL-40, this did not confer any advantages for single session elimination kinetics (post-HD mean ± SD: 360 ± 334 vs. 564 ± 422 pg/ml, P < 0.001). No sustained reduction of any of the studied mediators was found neither. Still, the long-term reduction of CD69+ (P = 0.01) and PD1+ (P = 0.02) activated CD4+ T cells was striking. Thus, MCO-HD does not induce reduction of a broad range of inflammatory mediators studied here. Long-term reduction over a 3-month period was not possible. Increased single session filtration, as evidenced by increased dialysate concentrations of inflammatory mediators during MCO-HD, might eventually be compensated for by compartment redistribution or increased production during dialysis session. Nevertheless, lasting effects on the T-cell phenotype were seen, which deserves further investigation.
Insights
Medium cut-off (MCO) membranes in hemodialysis (HD) did not reduce inflammatory mediators long-term. However, MCO-HD showed lasting positive effects on activated T cells, warranting further research into immune modulation.
Area of Science:
- Nephrology
- Immunology
Background:
- Maintenance hemodialysis (HD) patients often have chronic inflammation.
- Medium cut-off (MCO) membranes offer extended filtration, potentially impacting inflammation and immune cells.
- Previous studies show MCO-HD is safe for HD patients.
Purpose of the Study:
- To investigate if MCO-HD can control chronic inflammation and modulate cellular immune aberrations.
- To compare MCO-HD with high flux HD regarding inflammatory mediators and T cell activation over 90 days.
Main Methods:
- An open-label, multicenter, randomized 90-day crossover trial comparing MCO-HD and high flux-HD.
- Assessed serum inflammatory mediators (e.g., MCP-1, YKL-40) and ex vivo T cell activation (CD69+, PD1+) via flow cytometry.
- Used linear mixed models to analyze pre-dialysis MCP-1 levels as the primary endpoint.
Main Results:
- Dialysate concentrations of most mediators, including MCP-1, were higher during MCO-HD, indicating increased filtration.
- No sustained reduction in studied inflammatory mediators was observed over 90 days.
- A significant long-term reduction in activated CD4+ T cells (CD69+ and PD1+) was observed with MCO-HD.
Conclusions:
- MCO-HD does not reduce a broad range of inflammatory mediators over 90 days.
- Increased filtration during MCO-HD may be offset by redistribution or increased production of mediators.
- MCO-HD demonstrates lasting positive effects on T-cell phenotype, suggesting potential for immune modulation.
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