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Published on: October 12, 2015
A receptor-based bioadsorbent to target advanced glycation end products in chronic kidney disease
Yangrong Zhang1, Karen A Lapidos, Anca Gal-Moscovici
1Biomedical Engineering Department, Northwestern University, Evanston, IL, USA.
Abstract:
The accumulation of advanced glycation end products (AGEs) has been reported to be a major contributor to chronic systemic inflammation. AGEs are not efficiently removed by hemodialysis or the kidney of a chronic kidney disease (CKD) patient. The goal of this study was to develop a receptor for AGEs (RAGE)-based bioadsorbent device that was capable of removing endogenous AGEs from human blood. The extracellular domain of RAGE was immobilized onto agarose beads to generate the bioadsorbent. The efficacy of AGE removal from saline, serum, and whole blood; biological effects of AGE reduction; and hemocompatibility and stability of the bioadsorbent were investigated. The bioadsorbent bound AGE-modified bovine serum albumin (AGE-BSA) with a binding capacity of 0.73 ± 0.07 mg AGE-BSA/mL bioadsorbent. The bioadsorbent significantly reduced the concentration of total AGEs in serum isolated from end-stage kidney disease patients by 57%. AGE removal resulted in a significant reduction of vascular cell adhesion molecule-1 expression in human endothelial cells and abolishment of osteoclast formation in osteoclast progenitor cells. A hollow fiber device loaded with bioadsorbent-reduced endogenous AGEs from recirculated blood to 36% of baseline levels with no significant changes in total protein or albumin concentration. The bioadsorbent maintained AGE-specific binding capacity after freeze-drying and storage for 1 year. This approach provides the foundation for further development of soluble RAGE-based extracorporeal therapies to selectively deplete serum AGEs from human blood and decrease inflammation in patients with diabetes and/or CKD.
Insights
A novel bioadsorbent device using the receptor for advanced glycation end products (RAGE) effectively removes AGEs from blood. This innovation shows potential for reducing inflammation in patients with diabetes and chronic kidney disease.
Area of Science:
- Biomedical Engineering
- Renal Medicine
- Immunology
Background:
- Advanced glycation end products (AGEs) accumulation contributes to chronic inflammation.
- Kidney disease (CKD) and hemodialysis are inefficient at removing AGEs.
- Targeting AGEs is crucial for managing inflammation in CKD and diabetes.
Purpose of the Study:
- To develop a RAGE-based bioadsorbent for removing endogenous AGEs from human blood.
- To evaluate the efficacy, biological effects, hemocompatibility, and stability of the bioadsorbent.
Main Methods:
- Immobilizing the extracellular domain of RAGE onto agarose beads to create a bioadsorbent.
- Testing AGE removal from saline, serum, and whole blood.
- Assessing biological effects (inflammation markers) and hemocompatibility in a hollow fiber device.
Main Results:
- The bioadsorbent demonstrated a binding capacity of 0.73 ± 0.07 mg AGE-BSA/mL.
- Reduced total AGEs in end-stage kidney disease patient serum by 57%.
- Lowered AGEs in recirculated blood by 36% without affecting protein levels; reduced inflammatory markers.
Conclusions:
- A RAGE-based bioadsorbent effectively removes AGEs from blood and reduces associated inflammation.
- The bioadsorbent is stable and hemocompatible, supporting its use in extracorporeal therapies.
- This approach offers a foundation for treating inflammation in diabetes and CKD patients.
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