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Published on: May 2, 2025
Broad-spectrum neuroprotection exerted by DDD-028 in a mouse model of chemotherapy-induced neuropathy
Elena Lucarini1, Laura Micheli1, Raghavan Rajagopalan2
1Department of Neuroscience, Psychology, Drug Research and Child Health (NEUROFARBA), Pharmacology and Toxicology Section, University of Florence, Florence, Italy.
Abstract:
Neurotoxicity of chemotherapeutics involves peculiar alterations in the structure and function, including abnormal nerve signal transmission, of both the peripheral and central nervous system. The lack of effective pharmacological approaches to prevent chemotherapy-induced neurotoxicity necessitates the identification of innovative therapies. Recent evidence suggests that repeated treatment with the pentacyclic pyridoindole derivative DDD-028 can exert both pain-relieving and glial modulatory effects in mice with paclitaxel-induced neuropathy. This work is aimed at assessing whether DDD-028 is a disease-modifying agent by protecting the peripheral nervous tissues from chemotherapy-induced damage. Neuropathy was induced in animals by paclitaxel injection (2.0 mg kg -1 i.p). DDD-028 (10 mg kg -1 ) and the reference drug, pregabalin (30 mg kg -1 ), were administered per os daily starting concomitantly with the first injection of paclitaxel and continuing 10 days after the end of paclitaxel treatment. The behavioural tests confirmed the antihyperalgesic efficacy of DDD-028 on paclitaxel-induced neuropathic pain. Furthermore, the electrophysiological analysis revealed the capacity of DDD-028 to restore near-normal sensory nerve conduction in paclitaxel-treated animals. Histopathology evidence indicated that DDD-028 was able to counteract effectively paclitaxel-induced peripheral neurotoxicity by protecting against the loss of intraepidermal nerve fibers, restoring physiological levels of neurofilament in nerve tissue and plasma, and preventing morphological alterations occurring in the sciatic nerves and dorsal root ganglia. Overall, DDD-028 is more effective than pregabalin in preventing chemotherapy-induced neurotoxicity. Thus, based on its potent antihyperalgesic and neuroprotective efficacy, DDD-028 seems to be a viable prophylactic medication to limit the development of neuropathies consequent to chemotherapy.
Insights
The novel compound DDD-028 effectively prevents chemotherapy-induced nerve damage and pain in mice. It demonstrates superior neuroprotective effects compared to pregabalin, offering a promising new therapy for chemotherapy-induced neuropathies.
Area of Science:
- Neuroscience
- Pharmacology
- Toxicology
Background:
- Chemotherapy often causes neurotoxicity, damaging peripheral and central nervous systems.
- Current treatments for chemotherapy-induced neurotoxicity are limited.
- DDD-028, a pyridoindole derivative, shows potential for pain relief and glial modulation.
Purpose of the Study:
- To evaluate DDD-028 as a disease-modifying agent against chemotherapy-induced peripheral neurotoxicity.
- To assess DDD-028's neuroprotective capabilities in paclitaxel-induced neuropathy.
Main Methods:
- Paclitaxel induced neuropathy in mice.
- Animals received DDD-028 or pregabalin daily.
- Behavioral tests, electrophysiology, and histopathology analyzed neurotoxicity and treatment efficacy.
Main Results:
- DDD-028 significantly reduced pain hypersensitivity.
- Electrophysiological tests showed DDD-028 restored nerve signal conduction.
- Histopathology confirmed DDD-028 protected nerve fibers, neurofilaments, and nerve morphology.
Conclusions:
- DDD-028 is a potent antihyperalgesic and neuroprotective agent.
- DDD-028 is more effective than pregabalin in preventing chemotherapy-induced neurotoxicity.
- DDD-028 shows promise as a prophylactic medication for chemotherapy-induced neuropathies.

