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Molecular toxicity of methotrexate in rheumatoid arthritis treatment: A novel perspective and therapeutic
Ramkumar Katturajan1, Vijayalakshmi S2, Mahabookhan Rasool3
1Department of Biomedical Sciences, School of Biosciences and Technology, VIT, Vellore, Tamil Nadu, India.
Abstract:
Rheumatoid arthritis (RA) is an autoimmune inflammatory systematic complication which is a chronic disorder that severely affects bones and joints and results in the quality of life impairment. Methotrexate (MTX), an FDA-approved drug has maintained the standard of care for treating patients affected with RA. The mechanism of MTX includes the inhibition of purine and pyrimidine synthesis, suppression of polyamine accumulation, promotion of adenosine release, adhesion of the inflammatory molecules, and controlling of cytokine cascade in RA. The recommended dose for RA patients is 5-25 mg of MTX per week, depending on the severity of the disease but MTX has proven to be cytotoxic with side effects affecting various tissues when treating RA patients even with low doses over a prolonged period of time. The mechanism of such toxicity is not entirely understood. This review strives to understand it by correlating the different pathways, including MTX in folate metabolism, Sirt1/Nrf2/γ-gcs, and γ-gcs/CaSR-TNF-α/NF-kB signaling. In addition to this, the importance of targeted therapy combination with MTX on RA treatment and combinations approved from the clinical trials are also briefly discussed. Overall, this review elucidates the various MTX molecular mechanisms and toxicity at the molecular level, the limitations, and the scope for future directions.
Insights
Methotrexate (MTX) treats rheumatoid arthritis (RA) by impacting cellular pathways. However, MTX causes toxicity through mechanisms involving folate metabolism and inflammatory signaling, necessitating further research for safer RA treatments.
Area of Science:
- Immunology
- Pharmacology
- Molecular Biology
Background:
- Rheumatoid arthritis (RA) is a chronic autoimmune disease impacting quality of life.
- Methotrexate (MTX) is a standard FDA-approved treatment for RA.
- MTX exhibits cytotoxicity and side effects, even at low doses over time.
Purpose of the Study:
- To elucidate the molecular mechanisms of MTX toxicity in RA.
- To correlate MTX's effects with folate metabolism and specific signaling pathways.
- To discuss targeted therapy combinations with MTX for RA.
Main Methods:
- Review of MTX's known mechanisms of action in RA.
- Analysis of MTX's role in folate metabolism.
- Exploration of Sirt1/Nrf2/γ-gcs and γ-gcs/CaSR-TNF-α/NF-kB signaling pathways.
Main Results:
- MTX affects purine/pyrimidine synthesis, polyamine accumulation, adenosine release, and cytokine cascades.
- MTX toxicity is linked to folate metabolism and inflammatory signaling pathways.
- Combinations of MTX with targeted therapies are being investigated.
Conclusions:
- Understanding MTX's molecular mechanisms and toxicity is crucial for RA management.
- Further research is needed to mitigate MTX-induced side effects.
- Targeted therapies may offer improved RA treatment outcomes when combined with MTX.
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