Publications by authors named "Tarasova I"

Objective: To compare biomarkers of neurovascular unit (NVU) - S100β, NSE, BDNF and indicators of the brain electrical activity in patients who underwent coronary artery bypass grafting (CABG) depending on the use of different versions of multi-tasking cognitive training (CT).

Material And Methods: The study included 89 people, of whom 47 completed the CTI (postural and three cognitive tasks (counting backwards, verbal fluency and the open-ended task «Unusual use of an ordinary object») and 42 patients, who underwent CTII (visuomotor reaction and the same cognitive tasks) in the early postoperative CABG period. The patients of both groups underwent complex testing of psychomotor, executive functions, attention, short-term memory and EEG study in the perioperative period of CABG.

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Objective: To evaluate clinical efficacy of preoperative carbohydrate loading as a component of ERAS in esophageal reconstructive surgery.

Material And Methods: Post hoc analysis included 162 patients who underwent esophageal reconstructive interventions with ERAS principles between 2014 and 2024. The main group (=61, CHO+) included patients who were metabolically loaded with carbohydrates in preoperative period with 12.

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Article Synopsis
  • * All patients underwent a surgical procedure called fundoplication, and results were assessed 6 and 12 months post-surgery.
  • * After surgery, 92.8% experienced relief from reflux symptoms, and 94.5% showed improvement in hemoglobin and iron levels without needing iron supplements.
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Gallbladder stones are present in 10-20 % of the population of Western countries, and the incidence rate has almost tripled over the past 30 years. Asymptomatic cholecystitis is more common than it is mentioned in the literature. Approximately 80 % of the GI have no clinical manifestations.

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Article Synopsis
  • Multidrug-resistant strains, particularly those linked to farm animals, are a growing concern for human health due to their ability to cause severe intestinal and extraintestinal diseases.
  • This study focuses on APEC 36, a strain isolated from a chicken with a serious infection, analyzing its genome and finding it has multiple antibiotic resistance mechanisms, mainly antibiotic efflux.
  • APEC 36 also contains unique genetic traits, such as a rare beta-lactamase variant and genes linked to toxins and iron uptake, indicating that it could pose significant threats to human health.
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Current stage of proteomic research in the field of biology, medicine, development of new drugs, population screening, or personalized approaches to therapy dictates the need to analyze large sets of samples within the reasonable experimental time. Until recently, mass spectrometry measurements in proteomics were characterized as unique in identifying and quantifying cellular protein composition, but low throughput, requiring many hours to analyze a single sample. This was in conflict with the dynamics of changes in biological systems at the whole cellular proteome level upon the influence of external and internal factors.

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Article Synopsis
  • Alveolar proteinosis is a rare lung disease where protein-lipid complexes build up in the lungs, disrupting normal function.
  • It affects about 2 to 4 people per million adults.
  • The text discusses a specific case of this disease in a patient who previously had coronavirus pneumonia.
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Advances in high-throughput high-resolution mass spectrometry and the development of thermal proteome profiling approach (TPP) have made it possible to accelerate a drug target search. Since its introduction in 2014, TPP quickly became a method of choice in chemical proteomics for identifying drug-to-protein interactions on a proteome-wide scale and mapping the pathways of these interactions, thus further elucidating the unknown mechanisms of action of a drug under study. However, the current TPP implementations based on tandem mass spectrometry (MS/MS), associated with employing lengthy peptide separation protocols and expensive labeling techniques for sample multiplexing, limit the scaling of this approach for the ever growing variety of drug-to-proteomes.

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Background: There is growing interest in finding methods to enhance cognitive function and comprehend the neurophysiological mechanisms that underlie these improvements. It is assumed that non-pharmacological interventions have better results in cognitive recovery. The aim of this study was to assess the effect of multi-task cognitive training (MTT) on electroencephalographic (EEG) changes and markers of the neurovascular unit in patients undergoing coronary artery bypass grafting (CABG).

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Previous studies examining the molecular and genetic basis of cognitive impairment, particularly in cohorts of long-living adults, have mainly focused on associations at the genome or transcriptome level. Dozens of significant dementia-associated genes have been identified, including APOE, APOC1, and TOMM40. However, most of these studies did not consider the intergenic interactions and functional gene modules involved in cognitive function, nor did they assess the metabolic changes in individual brain regions.

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Aging is a natural process with varying effects. As we grow older, our bodies become more susceptible to aging-associated diseases. These diseases, individually or collectively, lead to the formation of distinct aging phenotypes.

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Article Synopsis
  • - Antibody-secreting plasma cells (PCs) develop in secondary lymphoid organs but can also be found in various tissues throughout the body, each with unique functional adaptations based on their environment.
  • - Surprisingly, all tissue-resident plasma cells (TrPCs) exhibit long lifespans, which is influenced by internal factors such as the type of immunoglobulin they produce.
  • - The bone marrow serves as a unique reservoir for PCs from different origins, preserving features of their original tissue's transcriptional programming, highlighting how their longevity is shaped by both initial signals and their current tissue environment.
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Epigenetic aging is a hot topic in the field of aging research. The present study estimated epigenetic age in long-lived individuals, who are currently actively being studied worldwide as an example of successful aging due to their longevity. We used Bekaert's blood-based age prediction model to estimate the epigenetic age of 50 conditionally "healthy" and 45 frail long-livers over 90 years old.

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Objective: To identify the features of the cognitive status in patients with cardiac surgery profile with senile asthenia syndrome (SAS) and preasthenia.

Material And Methods: A study included 272 patients admitted for coronary artery bypass grafting (CABG). Screening for preasthenia and SAS in patients before surgery was performed using the Brief Battery of Physical Functioning Tests.

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Background: The multi-tasking approach may be promising for cognitive rehabilitation in cardiac surgery patients due to a significant effect on attentional and executive functions. This study aimed to compare the neuropsychological changes in patients who have undergone two variants of multi-tasking training and a control group in the early postoperative period of coronary artery bypass grafting (CABG).

Methods: One hundred and ten CABG patients were divided into three groups: cognitive training (CT) I (a postural balance task with mental arithmetic, verbal fluency, and divergent tasks) ( = 30), CT II (a simple visual-motor reaction with mental arithmetic, verbal fluency, and divergent tasks) ( = 40), and control ( = 40).

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One hundred and one years ago Eduard Nikitich Vantsyan (1921-1989), an outstanding Soviet surgeon, B.V. Petrovsky's pupil, Doctor of Medicine, Professor, Corresponding Member of the USSR Academy of Medical Sciences, was born (Fig.

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In recent years, ultrafast liquid chromatography/mass spectrometry methods have been extensively developed for the use in proteome profiling in biochemical studies. These methods are intended for express monitoring of cell response to biotic stimuli and elucidation of correlation of molecular changes with biological processes and phenotypical changes. New technologies, including the use of nanomaterials, are actively introduced to increase agricultural production.

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The proteogenomic search pipeline developed in this work has been applied for reanalysis of 40 publicly available shotgun proteomic datasets from various human tissues comprising more than 8000 individual LC-MS/MS runs, of which 5442 .raw data files were processed in total. This reanalysis was focused on searching for ADAR-mediated RNA editing events, their clustering across samples of different origins, and classification.

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Background: On-pump coronary artery bypass grafting (CABG) is associated with a high risk of neurological complications in patients with severe carotid stenosis. Moreover, early postoperative cognitive dysfunction (POCD) incidence remains high in patients undergoing simultaneous coronary and carotid surgery. Recent studies have shown that even moderate carotid stenosis (≥50%) is associated with postoperative cognitive decline after CABG.

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Various external and internal factors damaging DNA constantly disrupt the stability of the genome. Cells use numerous dedicated DNA repair systems to detect damage and restore genomic integrity in a timely manner. Ribonucleotide reductase (RNR) is a key enzyme providing dNTPs for DNA repair.

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Objective: To investigate enteral nutrition as a component of postoperative rehabilitation after reconstructive esophageal and gastric surgeries.

Material And Methods: The study included 217 patients who underwent reconstructive esophageal and gastric surgeries between 2010 and 2020. In the main group (=121), patients underwent postoperative enhanced recovery program (ERAS).

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Protein quantitation in tissue cells or physiological fluids based on liquid chromatography/mass spectrometry is one of the key sources of information on the mechanisms of cell functioning during chemotherapeutic treatment. Information on significant changes in protein expression upon treatment can be obtained by chemical proteomics and requires analysis of the cellular proteomes, as well as development of experimental and bioinformatic methods for identification of the drug targets. Low throughput of whole proteome analysis based on liquid chromatography and tandem mass spectrometry is one of the main factors limiting the scale of these studies.

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Omics technologies focus on uncovering the complex nature of molecular mechanisms in cells and organisms, including biomarkers and drug targets discovery. Aiming at these tasks, we see that information extracted from omics data is still underused. In particular, characteristics of differentially regulated molecules can be combined in a single score to quantify the signaling pathway activity.

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Chemical proteomics, emerging rapidly in recent years, has become a main approach to identifying interactions between the small molecules and proteins in the cells on a proteome scale and mapping the signaling and/or metabolic pathways activated and regulated by these interactions. The methods of chemical proteomics allow not only identifying proteins targeted by drugs, characterizing their toxicity and discovering possible off-target proteins, but also elucidation of the fundamental mechanisms of cell functioning under conditions of drug exposure or due to the changes in physiological state of the organism itself. Solving these problems is essential for both basic research in biology and clinical practice, including approaches to early diagnosis of various forms of serious diseases or prediction of the effectiveness of therapeutic treatment.

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Recently, we presented the DirectMS1 method of ultrafast proteome-wide analysis based on minute-long LC gradients and MS1-only mass spectra acquisition. Currently, the method provides the depth of human cell proteome coverage of 2500 proteins at a 1% false discovery rate (FDR) when using 5 min LC gradients and 7.3 min runtime in total.

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