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Published on: February 23, 2015
Drug Repurposing for Spinal Cord Injury: Progress Towards Therapeutic Intervention for Primary Factors and Secondary
1Department of Pharmacology and Toxicology, National Institute of Pharmaceutical Education and Research (NIPER)-Ahmedabad, Opposite Air Force Station, Palaj, P.O-382355, Gandhinagar, Gujarat, India.
Abstract:
Spinal cord injury (SCI) encompasses a plethora of complex mechanisms like the involvement of major cell death pathways, neurodegeneration of spinal cord neurons, overexpression of glutaminergic transmission and inflammation cascade, along with different co-morbidities like neuropathic pain, urinary and sexual dysfunction, respiratory and cardiac failures, making it one of the leading causes of morbidity and mortality globally. Corticosteroids such as methylprednisolone and dexamethasone, and non-steroidal anti-inflammatory drugs such as naproxen, aspirin and ibuprofen are the first-line treatment options for SCI, inhibiting primary and secondary progression by preventing inflammation and action of reactive oxygen species. However, they are constrained by a short effective drug administration window and their pharmacological action being limited to symptomatic relief of the secondary effects related to spinal cord injury only. Although post-injury rehabilitation treatments may enable functional recovery, they take a long time to show results. Drug repurposing might be an innovative method for expanding therapy alternatives, utilising drugs that are already approved by various esteemed federal agencies throughout the world. Reutilising a drug molecule to treat SCI can eliminate the need for expensive and lengthy drug discovery processes and pave the way for new therapeutic approaches in SCI. This review summarises marketed drugs that could be repurposed based on their safety and efficacy data. We also discuss their mechanisms of action and provide a list of repurposed drugs under clinical trials for SCI therapy.
Insights
Drug repurposing offers new hope for spinal cord injury (SCI) treatment by leveraging existing, approved medications. This approach bypasses lengthy drug discovery, providing faster therapeutic options for SCI patients.
Area of Science:
- Neuroscience
- Pharmacology
- Regenerative Medicine
Background:
- Spinal cord injury (SCI) involves complex mechanisms including cell death, neurodegeneration, inflammation, and comorbidities like neuropathic pain.
- Current treatments like corticosteroids and NSAIDs have limited efficacy and short administration windows, focusing only on symptomatic relief.
- Rehabilitation is lengthy and may not fully restore function.
Purpose of the Study:
- To review existing, approved drugs for potential repurposing in spinal cord injury (SCI) therapy.
- To identify drugs with established safety and efficacy profiles for SCI treatment.
- To explore novel therapeutic avenues for SCI by repurposing marketed drugs.
Main Methods:
- Literature review of marketed drugs with safety and efficacy data relevant to SCI.
- Analysis of drug mechanisms of action in the context of SCI pathophysiology.
- Compilation of repurposed drugs currently in clinical trials for SCI.
Main Results:
- Identified several marketed drugs with potential for SCI repurposing.
- Discussed the mechanisms of action for these repurposed drug candidates.
- Provided a list of drugs undergoing clinical trials for SCI therapy.
Conclusions:
- Drug repurposing presents an innovative and efficient strategy for developing new SCI therapies.
- Repurposing approved drugs can accelerate treatment development and reduce costs.
- Further clinical investigation of repurposed drugs is crucial for advancing SCI treatment.
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