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Perturbing Endothelial Biomechanics via Connexin 43 Structural Disruption
Published on: October 4, 2019
Peptidic Connexin43 Therapeutics in Cardiac Reparative Medicine
Spencer R Marsh1,2, Zachary J Williams1,2,3, Kevin J Pridham1,2
1Fralin Biomedical Research Institute at VTC, Virginia Tech, Roanoke, VA 24016, USA.
Insights
Connexin (Cx43) mimetic peptides show promise for treating heart disease. Novel drug delivery systems may overcome challenges in peptide therapy, improving viability for cardiac and other conditions.
Area of Science:
- Cardiovascular Research
- Pharmacology
- Biotechnology
Background:
- Connexin (Cx43) channels are implicated in cardiac arrhythmias and heart diseases linked to tissue loss and fibrosis.
- Existing Cx43 mimetic peptides, targeting various domains, have shown therapeutic potential and some have reached clinical trials.
Purpose of the Study:
- To review preclinical and clinical data on Cx43 mimetic peptides for heart disease treatment.
- To discuss challenges hindering the clinical translation of peptide therapeutics.
- To explore novel drug delivery technologies for enhancing peptide viability.
Main Methods:
- Survey of existing preclinical and clinical data on Cx43 mimetic peptides.
- Analysis of challenges in peptide administration, in vivo stability, and tissue penetration.
- Discussion of emerging nanovesicular drug delivery systems (nanoparticles, exosomes).
Main Results:
- Cx43 mimetic peptides demonstrate potential in treating various heart conditions.
- Significant hurdles exist in the pharmaceutical industry regarding peptide therapeutic translation.
- Novel drug delivery technologies offer solutions to overcome peptide-related limitations.
Conclusions:
- Cx43 mimetic peptides hold promise for cardiovascular diseases and other indications.
- Advanced drug delivery systems are crucial for overcoming peptide therapeutic challenges.
- These innovations could significantly improve the clinical and commercial success of peptide-based drugs.
Abstract:
Connexin (Cx43)-formed channels have been linked to cardiac arrhythmias and diseases of the heart associated with myocardial tissue loss and fibrosis. These pathologies include ischemic heart disease, ischemia-reperfusion injury, heart failure, hypertrophic cardiomyopathy, arrhythmogenic right ventricular cardiomyopathy, and Duchenne muscular dystrophy. A number of Cx43 mimetic peptides have been reported as therapeutic candidates for targeting disease processes linked to Cx43, including some that have advanced to clinical testing in humans. These peptides include Cx43 sequences based on the extracellular loop domains (e.g., Gap26, Gap 27, and Peptide5), cytoplasmic-loop domain (Gap19 and L2), and cytoplasmic carboxyl-terminal domain (e.g., JM2, Cx43tat, CycliCX, and the alphaCT family of peptides) of this transmembrane protein. Additionally, RYYN peptides binding to the Cx43 carboxyl-terminus have been described. In this review, we survey preclinical and clinical data available on short mimetic peptides based on, or directly targeting, Cx43, with focus on their potential for treating heart disease. We also discuss problems that have caused reluctance within the pharmaceutical industry to translate peptidic therapeutics to the clinic, even when supporting preclinical data is strong. These issues include those associated with the administration, stability in vivo, and tissue penetration of peptide-based therapeutics. Finally, we discuss novel drug delivery technologies including nanoparticles, exosomes, and other nanovesicular carriers that could transform the clinical and commercial viability of Cx43-targeting peptides in treatment of heart disease, stroke, cancer, and other indications requiring oral or parenteral administration. Some of these newly emerging approaches to drug delivery may provide a path to overcoming pitfalls associated with the drugging of peptide therapeutics.
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