Evaluating electrospun polycaprolactone fibers for blood-contacting applications

08 January 2025, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

When the kidneys are injured, uremic toxins (UTXs) accumulate in the body, affecting other tissues and causing a loss of essential body functions. This study investigated the adsorption of blood plasma-laden uremic toxins on the surface of PCL fibers to assess their potential as an alternative to membrane dialysis materials. Using plasma containing 25 uremic toxins at a concentration similar to that found in end-stage kidney disease patients, we analyzed the adsorbed proteins and examined clot formation in normal and toxin-treated plasma in the presence of PCL fiberss. Our findings revealed that the presence of uremic toxins significantly increased the adsorption of proteins on PCL fiber meshes, without leading to increased clot formation. This suggests a lack of enzymatic activation despite the higher protein adsorption. Additionally, our study indicates that unmodified PCL surfaces have the potential to trigger a strong humoral immune response, underscoring the importance of understanding these interactions for the development of personalized treatment approaches for patients with kidney failure.

Supplementary materials

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Title
Supporting Information Evaluating electrospun polycaprolactone nanofibers for blood-contacting applications
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Table S1. Primary antibodies specific to human plasma proteins utilized in immunoblotting experiments.
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