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Updated: Nov 19, 2025

Assays for the Degradation of Misfolded Proteins in Cells
Published on: August 28, 2016
The long and winding road to target protein misfolding in cardiovascular diseases
Thamonwan Diteepeng1, Federica Del Monte2,3, Marco Luciani1,4
1Center for Molecular Cardiology, University of Zurich, Schlieren, Switzerland.
Insights
Cardiovascular diseases involve protein misfolding and impaired quality control. Current treatments show limited success, highlighting the need for better biomarkers and clinical translation of preclinical findings.
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Proteostasis
Background:
- Cardiovascular diseases (CVD) are a leading global cause of mortality.
- Protein misfolding and compromised protein quality control are implicated in CVD pathogenesis.
- Existing therapeutic strategies for CVD have yielded limited success.
Purpose of the Study:
- To review recent advances in preclinical and clinical studies of protein misfolding in cardiovascular diseases.
- To highlight the role of protein quality control mechanisms in conditions like cardiomyopathies, cardiac amyloidosis, atherosclerosis, atrial fibrillation, and thrombosis.
Main Methods:
- Literature review of preclinical and clinical studies.
- Focus on cardiovascular diseases and protein quality control.
- Analysis of therapeutic targets and interventions.
Main Results:
- Preclinical studies show promise for modulators of heat shock proteins, unfolded protein response, ubiquitin-proteasome system, autophagy, and histone deacetylases.
- These promising preclinical results have not adequately translated to clinical settings.
- No current therapeutic strategies effectively attenuate proteotoxicity in CVD patients.
Conclusions:
- A lack of specific biomarkers for early detection of protein folding defects hinders therapeutic development.
- Intensive collaboration between basic scientists and clinicians is crucial.
- Further research is needed to bridge the gap between preclinical findings and clinical application for CVD proteotoxicity.
Background:
In the last decades, cardiovascular diseases (CVD) have remained the first leading cause of mortality and morbidity in the world. Although several therapeutic approaches have been introduced in the past, the development of novel treatments remains an important research goal, which is hampered by the lack of understanding of key mechanisms and targets. Emerging evidences in recent years indicate the involvement of misfolded proteins aggregation and the derailment of protein quality control in the pathogenesis of cardiovascular diseases. Several potential interventions targeting protein quality control have been translated from the bench to the bedside to effectively employ the misfolded proteins as promising therapeutic targets for cardiac diseases, but with trivial results.
Design:
In this review, we describe the recent progresses in preclinical and clinical studies of protein misfolding and compromised protein quality control by selecting and reporting studies focusing on cardiovascular diseases including cardiomyopathies, cardiac amyloidosis, atherosclerosis, atrial fibrillation and thrombosis.
Results:
In preclinical models, modulators of several molecular targets (eg heat shock proteins, unfolded protein response, ubiquitin protein system, autophagy and histone deacetylases) have been tested in various conditions with promising results although lacking an adequate transition towards clinical setting.
Conclusions:
At present, no therapeutic strategies have been reported to attenuate proteotoxicity in patients with CVD due to a lack of specific biomarkers for pinpointing upstream events in protein folding defects at a subclinical stage of the diseases requiring an intensive collaboration between basic scientists and clinicians.
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