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Updated: Jun 17, 2026

Development of Combinatorial Therapeutics for Spinal Cord Injury using Stem Cell Delivery
Published on: June 7, 2024
A systematic review of directly applied biologic therapies for acute spinal cord injury
Brian K Kwon1, Elena B Okon, Ward Plunet
1Combined Neurosurgical and Orthopaedic Spine Program, Department of Orthopaedics, University of British Columbia, Vancouver, British Columbia, Canada. brian.kwon@vch.ca
Abstract:
An increasing number of therapies for spinal cord injury (SCI) are emerging from the laboratory and seeking translation into human clinical trials. Many of these are administered as soon as possible after injury with the hope of attenuating secondary damage and maximizing the extent of spared neurologic tissue. In this article, we systematically reviewed the available preclinical research on such neuroprotective therapies that are administered in a non-invasive manner for acute SCI. Specifically, we reviewed treatments that have a relatively high potential for translation due to the fact that they are already used in human clinical applications or are available in a form that could be administered to humans. These included: erythropoietin, NSAIDs, anti-CD11d antibodies, minocycline, progesterone, estrogen, magnesium, riluzole, polyethylene glycol, atorvastatin, inosine, and pioglitazone. The literature was systematically reviewed to examine studies in which an in vivo animal model was utilized to assess the efficacy of the therapy in a traumatic spinal cord injury paradigm. Using these criteria, 122 studies were identified and reviewed in detail. Wide variations exist in the animal species, injury models, and experimental designs reported in the preclinical literature on the therapies reviewed. The review highlights the extent of investigation that has occurred in these specific therapies, and points out gaps in our knowledge that would be potentially valuable prior to human translation.
Insights
This review examines preclinical research on non-invasive neuroprotective therapies for acute spinal cord injury (SCI). It highlights the need for standardized research to guide effective human clinical translation.
Area of Science:
- Neuroscience
- Regenerative Medicine
- Clinical Translation
Background:
- Spinal cord injury (SCI) research is yielding numerous therapies for clinical trials.
- Many therapies aim to reduce secondary damage and preserve neurological function when administered early.
Purpose of the Study:
- To systematically review preclinical research on non-invasive neuroprotective therapies for acute SCI.
- To identify therapies with high translational potential for human application.
Main Methods:
- Systematic literature review of in vivo preclinical studies.
- Focused on therapies with existing or adaptable human clinical use.
- Included 122 identified and reviewed studies.
Main Results:
- Reviewed therapies include erythropoietin, NSAIDs, anti-CD11d antibodies, minocycline, progesterone, estrogen, magnesium, riluzole, polyethylene glycol, atorvastatin, inosine, and pioglitazone.
- Significant variability noted in animal models, injury paradigms, and experimental designs across studies.
- Identified the extent of preclinical investigation for these specific therapies.
Conclusions:
- Preclinical research on neuroprotective therapies for SCI is extensive but lacks standardization.
- Gaps in knowledge and methodological inconsistencies hinder direct translation to human clinical trials.
- Further standardized research is crucial for advancing SCI treatment.

