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Issue | Title | |
Vol 9, No 1 (2017) | Targeted proteins involved in the neuroprotective effects of lithium citrate | Abstract similar documents |
I. Yu. Torshin, O. A. Gromova, L. A. Mayorova, A. Yu. Volkov | ||
"... of lithium are two proteins, such as glycogen synthase-3β (GSK-3β) and inositol monophosphatase 1 (IMPA1 ..." | ||
Vol 14, No 5 (2022) | On the role of glycogen synthase kinases in the molecular mechanisms of stress conditions and prospects for the use of lithium ascorbate | Abstract similar documents |
I. Yu. Torshin, O. A. Gromova, O. A. Limanova | ||
"... kinases GSK-3α and GSK-3β, whose excessive activity aggravates the course of chronic stress, has ..." | ||
Vol 9, No 3 (2017) | Neuroprotective properties of lithium salts during glutamate-induced stress | Abstract similar documents |
A. V. Pronin, O. A. Gromova, I. Yu. Torshin, E. V. Stelmashuk, O. P. Aleksandrova, E. E. Genrikhs, L. G. Khaspekov | ||
"... Organic lithium salts are a promising area for searching for effective and safe neuroprotective ..." | ||
Vol 8, No 4 (2016) | MexiB 6 AS A RESULT OF FORTIFICATION OF ETHYLMETHYLHYDROXYPYRIDINE SUCCINATE WITH MAGNESIUM AND PYRIDOXINE: PROTEOME EFFECTS | Abstract similar documents |
O. A. Gromova, I. Yu. Torshin, A. G. Kalacheva, V. A. Semenov, K. V. Rudakov | ||
"... белков протеома. Важным условием эффективности ЭМГПС является обеспеченность организма пиридоксином и ..." | ||
Vol 13, No 2 (2021) | Chemoreactom analysis of cytidyldiphosphocholine indicates synergistic combinations of neuroprotective agents | Abstract similar documents |
I. Yu. Torshin, O. A. Gromova, L. A. Mayorova, T. R. Grishina, L. E. Fedotova, A. N. Gromov, I. S. Sardaryan | ||
"... , pharmacokinetic and pharmacodynamic parameters, the effect on the metabolome and proteome, the survival of neurons ..." | ||
Vol 14, No 2 (2022) | Drug-induced tremor | Abstract similar documents |
T. M. Ostroumova, V. A. Tolmacheva, O. D. Ostroumova | ||
"... , lithium, tacrolimus and valproic acid. DIT mechanisms include dopamine receptors block, gamma-aminobutyric ..." | ||
Vol 12, No 5 (2020) | Chemotranscriptome analysis of the ethylmethylhydroxypyridine succinate molecule in the context of postgenomic pharmacology | Abstract similar documents |
O. A. Gromova, I. Yu. Torshin, A. I. Sorokin, V. A. Semenov, L. V. Stakhovskaya | ||
"... to the genome, transcriptome, proteome, and reactome. The transcriptomic activity of ethylmethylhydroxypyridine ..." | ||
Vol 15, No 3 (2023) | Molecular mechanisms of synergistic analgesic and neuroprotective action of B group vitamins according to the results of proteomic analysis | Abstract similar documents |
O. A. Gromova, I. Yu. Torshin | ||
"... We present the results of a systemic biological analysis of human proteome proteins, biological ..." | ||
Vol 9, No 1 (2017) | The triple synergy of ethylmethylhydroxypyridine succinate, magnesium, and vitamin B6: Molecular mechanisms | Abstract similar documents |
O. A. Gromova, A. G. Kalacheva, I. Yu. Torshin, T. R. Grishina, I. K. Tomilova | ||
"... of proteome proteins. Results. The pharmacological effects of the EMHPS molecule characterized by nootropic ..." | ||
Vol 12, No 2 (2020) | Systematic analysis of the molecular pathophysiology of tenosynovitis: promise for using chondroitin sulfate and glucosamine sulfate | Abstract similar documents |
I. Yu. Torshin, O. A. Gromova, A. M. Lila, O. A. Limanova | ||
"... -glucosamination of proteome proteins. To date, no randomized clinical or cohort (non-interventional) studies ..." | ||
Vol 8, No 3 (2016) | Chemoreactome analysis of ethylmethylhydroxypyridine succinate | Abstract similar documents |
O. A. Gromova, I. Yu. Torshin, L. E. Fedotova, A. N. Gromov | ||
"... (simulation of the affinity profile of the examined molecular structure for various proteome proteins). A new ..." | ||
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