MedicineChemistryMaterials Science

Zhenyu Gui, Xiaoda Yang, Hao Chen, Zhuang Jing, Ping Lan

2026.1.26THERAPEUTIC APHERESIS AND DIALYSIS

DOI: 10.1002/1744-9987.70119

tlooto Summary

Heparin‐functionalized copper‐based metal–organic frameworks (CuMOFs‐Hep) are developed to enhance creatinine removal and improve hemocompatibility in chronic kidney disease.

Abstract

INTRODUCTION Creatinine accumulation exacerbates outcomes in chronic kidney disease (CKD). To enhance creatinine removal and improve hemocompatibility, we developed heparin-functionalized copper-based metal-organic frameworks (CuMOFs-Hep).

METHODS CuMOFs were heparinized via APTES bridging and characterized (XRD, SEM, FTIR, XPS, zeta potential). Adsorption was evaluated in simulated CKD serum and was fitted with isotherm models. Whole-blood samples from patients/healthy donors were tested. Biosafety was assessed by Cu2+ leaching and platelet assays.

RESULTS Heparinization increased surface negative charge and raised the maximum capacity to 267.8 mg g-1 (68.7% over pristine; Langmuir R2 = 0.983). Adsorption kinetics studies indicate rapid clearance of creatinine, achieving a clearance rate of 65.9% within 30 min at 37°C and reaching 75.0% within 2 h. In patient blood (854.2 μmol/L), supernatant creatinine decreased to 163.2 μmol/L (80.9% removal). Cu2+ leaching dropped to 0.214 ppm (-89.9%), with reduced platelet adhesion/activation.

CONCLUSION CuMOFs-Hep enables efficient, low-leaching creatinine adsorption in clinically relevant matrices, highlighting its promising potential as an efficient adsorbent for blood purification applications.

Citation format

GUI, Zhenyu, et al. Adsorption of blood creatinine on a heparin‐functionalized surface of copper‐based metal–organic frameworks. THERAPEUTIC APHERESIS AND DIALYSIS, 2026, 30(3): 345–352.