Related Experiment Video
Updated: Jan 29, 2026

Training Persons with Spinal Cord Injury to Ambulate Using a Powered Exoskeleton
Published on: June 16, 2016
Nanovector-Mediated Drug Delivery in Spinal Cord Injury: A Multitarget Approach
Simonetta Papa1, Filippo Rossi2, Irma Vismara1
1Dipartimento di Neuroscienze , Istituto di Ricerche Farmacologiche Mario Negri IRCCS , via La Masa 19 , 20156 Milan , Italy.
Abstract:
Many preclinical studies seek cures for spinal cord injury (SCI), but when the results are translated to clinical trials they give scant efficacy. One possible reason is that most strategies use treatments directed toward a single pathological mechanism, while a multitherapeutic approach needs to be tested to significantly improve outcomes after SCI. Most of the preclinical reports gave better outcomes when a combination of different compounds was used instead of a single drug. This promising approach, however, must still be improved because it raises some criticism: (i) the blood-spinal cord barrier limits drug distribution, (ii) it is hard to understand the interactions among the pharmacological components after systemic administration, and (iii) the timing of treatments is crucial: the spread of the lesion is a process finely regulated over time, so therapies must be scheduled at precise times during the postinjury course. Nanomedicine could be useful to overcome these limitations. Nanotools allow finely regulated drug administration in terms of cell selectivity and release kinetics. We believe that excellent therapeutic results could be obtained by exploiting this tool in multitherapy. Combining nanoparticles loaded with different compounds that act on the main pathological pathways could overcome the restrictions of traditional drug delivery routes, a major limit for the clinical application of multitherapy. This review digs into these topics, discussing the critical aspects of multitherapies now proposed and suggesting new points of view.
Insights
Multitherapy shows promise for spinal cord injury (SCI) but faces delivery challenges. Nanomedicine offers a solution by enabling targeted, timed delivery of multiple compounds to improve SCI treatment efficacy.
Area of Science:
- Regenerative Medicine
- Nanotechnology
- Neuroscience
Background:
- Preclinical spinal cord injury (SCI) research often fails in clinical translation due to single-target therapies.
- Multitherapy approaches show superior preclinical outcomes but face challenges like drug delivery and timing.
Purpose of the Study:
- To review the limitations of current SCI multitherapy strategies.
- To explore the potential of nanomedicine in overcoming these limitations for improved SCI treatment.
Main Methods:
- Literature review of preclinical SCI studies and nanomedicine applications.
- Analysis of challenges in drug distribution, component interaction, and treatment timing for SCI multitherapy.
- Discussion of nanoparticle-based drug delivery systems for targeted and controlled release.
Main Results:
- Single-drug treatments for SCI exhibit limited clinical efficacy.
- Multitherapy strategies demonstrate enhanced preclinical results compared to single agents.
- Nanomedicine offers potential solutions for targeted delivery, controlled release kinetics, and overcoming the blood-spinal cord barrier.
Conclusions:
- Nanomedicine-based multitherapy holds significant potential for advancing spinal cord injury treatment.
- Optimized nanoparticle formulations can address critical delivery and timing issues in SCI therapy.
- This approach could overcome major hurdles for the clinical application of multitherapy in SCI recovery.
Related Concept Videos
Spinal Cord
The Spinal Cord
Spinal Cord: Information Processing
Sensory Information Processing
Sensory information processing begins at the sensory receptors located in the skin and other tissues, which detect somatic sensory stimuli such as touch, temperature, or pain. These receptors function as catalysts, initiating...
Spinal Cord: Gross Anatomy
Spinal Cord: Cross-sectional Anatomy
Gray Matter and its Components
Central to the gray matter is...
Drug Delivery: Overview
Enteral delivery involves administering drugs directly through swallowing, sublingual placement, or buccal application. Orally administered drugs predominantly navigate the...

