Related Experiment Video
Updated: May 7, 2026

Perturbing Endothelial Biomechanics via Connexin 43 Structural Disruption
Published on: October 4, 2019
The use of connexin-based therapeutic approaches to target inflammatory diseases
Simon J O'Carroll1, David L Becker, Joanne O Davidson
1Department of Anatomy with Radiology, Faculty of Medical and Health Sciences, University of Auckland, Auckland, New Zealand.
Abstract:
Alterations in Connexin43 (Cx43) expression levels have been shown to play a role in inflammatory processes including skin wounding and neuroinflammation. Cx43 protein levels increase following a skin wound and can inhibit wound healing. Increased Cx43 has been observed following stroke, epilepsy, ischemia, optic nerve damage, and spinal cord injury with gap junctional communication and hemichannel opening leading to increased secondary damage via the inflammatory response. Connexin43 modulation has been identified as a potential target for protection and repair in neuroinflammation and skin wound repair. This review describes the use of a Cx43 specific antisense oligonucleotide (Cx43 AsODN) and peptide mimetics of the connexin extracellular loop domain to modulate Cx43 expression and/or function in inflammatory disorders of the skin and central nervous system. An overview of the role of connexin43 in inflammatory conditions, how antisense and peptide have allowed us to elucidate the role of Cx43 in these diseases, create models of diseases to test interventions and their potential for use clinically or in current clinical trials is presented. Antisense oligonucleotides are applied topically and have been used to improve wound healing following skin injury. They have also been used to develop ex vivo models of neuroinflammatory diseases that will allow testing of intervention strategies. The connexin mimetic peptides have shown potential in a number of neuroinflammatory disorders in ex vivo models as well as in vivo when delivered directly to the injury site or when delivered systemically.
Insights
Connexin43 (Cx43) modulation using antisense oligonucleotides and peptide mimetics shows promise for treating inflammatory disorders. These approaches target Cx43 to reduce damage in skin wounds and neuroinflammation, aiding repair and protection.
Area of Science:
- Neuroscience
- Dermatology
- Cell Biology
Background:
- Connexin43 (Cx43) expression is altered in inflammatory conditions like skin wounds and neuroinflammation.
- Increased Cx43 levels can exacerbate damage in conditions such as stroke, epilepsy, and spinal cord injury by promoting inflammation.
Purpose of the Study:
- To review the role of Cx43 in inflammatory disorders of the skin and central nervous system.
- To discuss the therapeutic potential of Cx43 modulation using antisense oligonucleotides (AsODN) and peptide mimetics.
Main Methods:
- Utilizing Cx43-specific antisense oligonucleotides (AsODN) to modulate Cx43 expression.
- Employing peptide mimetics of the connexin extracellular loop domain to alter Cx43 function.
- Developing ex vivo and in vivo models to test intervention strategies.
Main Results:
- Topical application of Cx43 AsODN has improved skin wound healing.
- Cx43 modulation strategies have been used to create disease models for testing interventions.
- Connexin mimetic peptides show potential in neuroinflammatory disorders in both ex vivo and in vivo settings.
Conclusions:
- Cx43 modulation presents a potential therapeutic target for neuroinflammation and skin wound repair.
- Antisense oligonucleotides and peptide mimetics offer promising strategies for clinical applications in inflammatory diseases.
- Further research and clinical trials are warranted to explore the full therapeutic potential of these Cx43-targeting agents.
Related Concept Videos
Drugs for Treatment of Crohn's Disease in IBD Using Biologic Agents: Anti-TNF
Inflammatory Bowel Disease IV: Pharmacological Management
Pharmacologic...
Gap Junctions
Gap Junctions
Drugs for Treatment of Crohn's Disease in IBD Using Immunomodulatory Agents
Targeted Cancer Therapies
There are several types of targeted therapies against specific...
