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Modulation of the CCR6-CCL20 Axis: A Potential Therapeutic Target in Inflammation and Cancer
Ranmali Ranasinghe1, Rajaraman Eri2
1School of Health Sciences, College of Health and Medicine, University of Tasmania, Launceston, Tasmania 7248, Australia. ranmaliranasinghe301@gmail.com.
Abstract:
Prototypical functions of the chemokine receptor CCR6 include immune regulation by maneuvering cell chemotaxis and selective delimiting of the pro-inflammatory TH17 and regulatory Treg subsets during chronic or acute systemic inflammation. Inhibition of CCR6 is proposed to attenuate disease symptoms and promote recuperation of multiple inflammatory and autoimmune disorders. Prescription medicines with pharmacodynamics involving the inhibition of the chemokine axis CCR6⁻CCL20 are very limited. The development of such therapeutics is still at an early experimental stage and has mostly involved the utilization of pre-clinical models and neutralizing mono or polyclonal antibodies against either partner (CCR6 or CCL20). Other methods include the constitutive use of small molecules as peptide inhibitors or small interfering ribonucleic acid (siRNA) to interfere with transcription at the nuclear level. In our review, we aim to introduce the wide array of potential CCR6⁻CCL20 inhibitors with an emphasis on attendant immune-modulator capacity that have been tested in the research field to date and are immensely promising compounds as forerunners of future curatives. Sixteen different tractable inhibitors of the CCR6⁻CCL20 duo have been identified as possessing high medicinal potential by drug developers worldwide to treat autoimmune and inflammatory diseases as shown in Figure 1. A multitude of antibody preparations are already available in the current pharmaceutical market as patented treatments for diseases in which the CCR6⁻CCL20 axis is operative, yet they must be used only as supplements with existing routinely prescribed medication as they collectively produce adverse side effects. Novel inhibitors are needed to evaluate this invaluable therapeutic target which holds much promise in the research and development of complaisant remedies for inflammatory diseases.
Insights
Researchers reviewed potential inhibitors targeting the CCR6-CCL20 axis, crucial for immune regulation in inflammatory diseases. Sixteen promising compounds show potential for developing novel therapeutics to treat autoimmune and inflammatory conditions.
Area of Science:
- Immunology and Pharmacology
- Drug Discovery and Development
Background:
- The chemokine receptor CCR6 plays a key role in immune regulation, controlling T-cell subsets (TH17 and Treg) during inflammation.
- Inhibiting the CCR6-CCL20 axis is a promising strategy for treating inflammatory and autoimmune disorders, but current therapeutic options are limited.
Purpose of the Study:
- To review potential inhibitors of the CCR6-CCL20 axis.
- To highlight compounds with immune-modulating capacity for treating inflammatory diseases.
Main Methods:
- Literature review of pre-clinical models and therapeutic strategies.
- Identification and analysis of CCR6-CCL20 inhibitors, including antibodies, small molecules, and siRNA.
- Evaluation of immune-modulator capacity and therapeutic potential.
Main Results:
- Sixteen tractable CCR6-CCL20 inhibitors with high medicinal potential have been identified.
- Existing antibody treatments are often supplements and can cause adverse effects.
- Novel inhibitors are needed to fully explore this therapeutic target.
Conclusions:
- The CCR6-CCL20 axis represents a promising therapeutic target for autoimmune and inflammatory diseases.
- Further research and development of novel inhibitors are essential for creating effective treatments.
- Developing new CCR6-CCL20 inhibitors could lead to improved therapies with fewer side effects.
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