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Ramirez-Sanchez, J.

Publications and source records attributed to Ramirez-Sanchez, J..

2 recordsLinked to original sources

JM-20 administration to animals with lesion of the nigrostriatal dopamine pathway induced by 6-hydroxydopamine, partially reverses motor damage and oxidative stress

Previous studies have shown that JM-20, a new chemical hybrid molecule, protects against rotenone and 6-hydroxydopamine neurotoxicity. Also, we demonstrated that JM-20 blocks the formation of toxic alpha-synuclein aggregated species and aminochrome cytotoxicity. The present study sought to determine the neuroprotective property of JM-20 in animals with a partial lesion of the nigrostriatal dopamine pathway induced by 6-hydroxydopamine (6-OHDA). For in vivo studies, adult male Wistar rats were lesioned in the right substantia nigra pars compacta (SNpc) with 6-OHDA administration. Fifteen days after surgery, the animals asymmetry levels were assessed. Those with asymmetry values higher than 50% were divided into two groups: animals that did not receive any treatment and those that were administered with JM-20 (40 mg/kg, intragastric via gavage) for 27 days. Every seven days, the asymmetry values of the animals were analyzed until day 42 after the surgery. At the end of the experiment, the animals were euthanized and the SNpc and striatum were taken out for the analysis of oxidative stress. Our results reveal a behavioral function progressively recovered in the JM-20-treated animals, diminishing the percentage of motor asymmetry. Also, it improves some oxidative stress markers in the SNpc and the striatum of these animals. Our study provides the preclinical evidence to support the long-term neuroprotective potential of JM-20 in 6-OHDA hemiparkinson rat model, pointing out to its possible use as a disease-modifying agent in PD.

neuroscience↗

A randomized, controlled, two-center preclinical trial assessing the efficacy of a new benzodiazepine-dihydropyridine hybrid molecule (JM-20) in rodent models of ischemic stroke

JM-20 is a novel multifunctional benzodiazepine molecule with potent neuroprotective effects in rat focal cerebral ischemia. To confirm previous results obtained in single laboratories with small sample sizes, and to provide a robust preclinical evidence base for potential clinical development in stroke, we have performed a two-center preclinical trial with sufficiently large group sizes to detect relevant effects, minimizing biases in experimental design as much as possible (randomization, blinding, predefined in- and exclusion criteria) and increasing external and construct validities by performing experimental focal cerebral ischemia by different surgeons in two different laboratories on two continents, including two species (480 mice and 55 rats), different suppliers, young, young adult, and mature adult animals (range 2 -16 months) as well as comorbid animals (diabetes). While JM-20 improved functional outcomes after middle cerebral artery occlusion in young adult mice at day 7 and appeared to reduce mortality (not statistically significant), it had no effect in mature adult or comorbid (STZ-induced diabetes) mice. Effect sizes, where statistically significant, were modest, and much lower than those reported in the previous studies. Meta-analysis of all individual mouse data did not reveal statistically significant different functional outcomes or mortalities between vehicle- and JM-20-treated animals, although neuroscores and survival were slightly better in JM-20-treated animals. In the less severe model of permanent cortical focal cerebral ischemia in rats, JM-20 significantly reduced brain infarction. We conclude that we were able to confirm the neuroprotective potential of JM-20. However, effect sizes were substantially lower as previously described in small, monocentric trials. Further study is needed to determine whether JM-20 could be effective in less severe cases of focal cerebral ischemia or when used in combination with thrombolysis.

pharmacology and toxicology↗