1.Butyric acid and prospects for creation of new medicines based on its derivatives: a literature review
Lyudmila K. GERUNOVA ; Taras V. GERUNOV ; Lydia G. P’YANOVA ; Alexander V. LAVRENOV ; Anna V. SEDANOVA ; Maria S. DELYAGINA ; Yuri N. FEDOROV ; Natalia V. KORNIENKO ; Yana O. KRYUCHEK ; Anna A. TARASENKO
Journal of Veterinary Science 2024;25(2):e23-
The widespread use of antimicrobials causes antibiotic resistance in bacteria. The use of butyric acid and its derivatives is an alternative tactic. This review summarizes the literature on the role of butyric acid in the body and provides further prospects for the clinical use of its derivatives and delivery methods to the animal body. Thus far, there is evidence confirming the vital role of butyric acid in the body and the effectiveness of its derivatives when used as animal medicines and growth stimulants. Butyric acid salts stimulate immunomodulatory activity by reducing microbial colonization of the intestine and suppressing inflammation. Extraintestinal effects occur against the background of hemoglobinopathy, hypercholesterolemia, insulin resistance, and cerebral ischemia. Butyric acid derivatives inhibit histone deacetylase. Aberrant histone deacetylase activity is associated with the development of certain types of cancer in humans.Feed additives containing butyric acid salts or tributyrin are used widely in animal husbandry.They improve the functional status of the intestine and accelerate animal growth and development. On the other hand, high concentrations of butyric acid stimulate the apoptosis of epithelial cells and disrupt the intestinal barrier function. This review highlights the biological activity and the mechanism of action of butyric acid, its salts, and esters, revealing their role in the treatment of various animal and human diseases. This paper also discussed the possibility of using butyric acid and its derivatives as surface modifiers of enterosorbents to obtain new drugs with bifunctional action.
2.Targeting of the AKT/m-TOR Pathway: Biomarkers of Resistance to Cancer Therapy-- AKT/m-TOR Pathway and Resistance to Cancer Therapy.
Liudmila V SPIRINA ; Irina V KONDAKOVA ; Natalia V TARASENKO ; Elena M SLONIMSKAYA ; Evgeny A USYNIN ; Alexey K GORBUNOV ; Zahar A YURMAZOV ; Svetlana Yu CHIGEVSKAYA
Chinese Journal of Lung Cancer 2018;21(1):63-66
Resistance to cancer therapy continues to be a major limitation for the successful treatment of cancer. There are many published studies on therapy resistance in breast and prostate cancers; however, there are currently no data on molecular markers associated with resistance. The conflicting data were reported regarding the AKT/m-TOR signaling pathway components as markers predicting resistance. The AKT/m-TOR signaling pathway is involved in the development of many human cancers; its activation is related to cell proliferation, angiogenesis, apoptosis, as well as to therapy resistance. Molecular alterations in the AKT/m-TOR signaling pathway provide a platform to identify universal markers associated with the development of resistance to cancer therapy.
Animals
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Biomarkers, Tumor
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metabolism
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Drug Resistance, Neoplasm
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Humans
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Molecular Targeted Therapy
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methods
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Neoplasms
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drug therapy
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metabolism
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pathology
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Proto-Oncogene Proteins c-akt
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metabolism
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Signal Transduction
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drug effects
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TOR Serine-Threonine Kinases
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metabolism