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Updated: Aug 20, 2026

Analyzing the Permeability of the Blood-Brain Barrier by Microbial Traversal through Microvascular Endothelial Cells
Published on: February 14, 2020
Advanced glycation end-product cross-link breakers. A novel approach to cardiovascular pathologies related to the
George L Bakris1, Alan J Bank, David A Kass
1Department of Preventive Medicine, Rush University Medical Center, Chicago, Illinois 60612, USA. George_Bakris@rush.edu
Abstract:
Advanced glycation end product (AGE) formation that occurs with aging and diabetes leads to the cross-linking of proteins and subsequent changes in the physicochemical properties of tissues. Cellular responses to AGE that lead to either pathological conditions or removal of AGE are mediated by a number of receptors that have been identified on various cell types such as macrophages, endothelial cells, and smooth-muscle cells. Mechanisms by which AGE affect the cardiovascular system include AGE cross-linking of long-lived proteins such as collagen and elastin and altered cellular responses. Alagebrium (3-phenacyl-4,5-dimethylthiazolium chloride, ALT-711) is the first drug in a new class of thiazolium therapeutic agents that break established AGE cross-links between proteins. In animal studies, alagebrium was effective in reducing large artery stiffness, slowing pulse-wave velocity, enhancing cardiac output, and improving left ventricular diastolic distensibility. In human studies to determine safety and efficacy, alagebrium was safe and well tolerated. In the first phase 2 clinical study, alagebrium improved arterial compliance in elderly patients with vascular stiffening. In two subsequent phase 2 clinical studies, one addressing diastolic heart failure and the other addressing systolic hypertension, alagebrium was effective in improving cardiac function and uncontrolled systolic blood pressure, particularly in more severely affected patients. Additional clinical studies to determine the utility of alagebrium in treating cardiovascular disorders associated with aging are in progress.
Insights
Alagebrium, a novel therapeutic agent, effectively breaks advanced glycation end product (AGE) cross-links. Clinical studies show it improves cardiovascular function and arterial compliance in aging and diabetic patients.
Area of Science:
- Biochemistry
- Cardiovascular Medicine
- Pharmacology
Background:
- Advanced glycation end products (AGEs) accumulate with aging and diabetes, causing protein cross-linking and tissue stiffening.
- AGEs contribute to cardiovascular disease by stiffening arteries and altering cellular responses.
- Current treatments do not effectively reverse AGE-induced protein cross-linking.
Purpose of the Study:
- To evaluate the safety and efficacy of alagebrium (ALT-711) in breaking AGE cross-links.
- To assess alagebrium's impact on cardiovascular properties in animal and human studies.
- To explore alagebrium's potential in treating age-related cardiovascular disorders.
Main Methods:
- Administration of alagebrium to animal models and human subjects.
- Measurement of arterial stiffness, pulse-wave velocity, cardiac output, and left ventricular diastolic distensibility.
- Phase 2 clinical trials in elderly patients with vascular stiffening, diastolic heart failure, and systolic hypertension.
Main Results:
- Alagebrium demonstrated effectiveness in reducing large artery stiffness and pulse-wave velocity in animal studies.
- Human studies confirmed alagebrium's safety and tolerability.
- Clinical trials showed significant improvements in arterial compliance, cardiac function, and blood pressure control.
Conclusions:
- Alagebrium is a promising therapeutic agent for breaking AGE cross-links.
- It effectively improves cardiovascular parameters associated with aging and diabetes.
- Further clinical studies are warranted to establish its utility in managing cardiovascular diseases.
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