Publications by authors named "Bykova T"

Article Synopsis
  • Haploidentical stem cell transplantation (haplo-SCT) helps children with a genetic problem that affects their bone marrow when they can’t find a matching donor.
  • A study looked at 162 patients and found that the best type of T-cell removal, called TCRαβ/CD19 depletion, led to better survival rates and fewer serious side effects.
  • Overall, the study shows that haplo-SCT is a safe option and that the TCRαβ/CD19 method could give kids with these conditions a better chance to live without severe complications.
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Article Synopsis
  • - The study investigates the effectiveness of post-transplant cyclophosphamide (PTCy) in preventing graft-versus-host disease (GVHD) in pediatric acute leukemia patients who underwent matched allogeneic hematopoietic stem cell transplantation (allo-HSCT).
  • - A retrospective analysis of 190 children shows that PTCy-based GVHD prophylaxis led to significantly lower rates of acute and chronic GVHD after transplants from matched unrelated donors (MUD) compared to standard treatments.
  • - The findings suggest PTCy is a promising and effective option for GVHD prevention in pediatric patients, particularly in MUD settings, while showing similar efficacy to traditional methods in matched sibling donor (MSD) transplants. *
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  • This analysis reviewed trends in 5185 hematopoietic cell transplantations (HCT) between 1990 and 2022, including 3237 allogeneic (alloHCT) and 1948 autologous (autoHCT) transplants.
  • There was a significant improvement in event-free survival (EFS) for both autoHCT and alloHCT over time, attributed to a decrease in relapse rates and non-relapse mortality, respectively.
  • Specific survival improvements were noted for various conditions, with autoHCT showing better outcomes in Hodgkin's disease and multiple myeloma, while alloHCT advancements were observed mainly in leukemia and lymphomas.
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Composites with a copper matrix attract the attention of researchers due to their ability to combine high ductility, heat conductivity, and electrical conductivity of the matrix with the high hardness and strength of the reinforcing phases. In this paper, we present the results of studying the effect of thermal deformation processing of a Сu-Ti-C-B composite produced by self-propagating high-temperature synthesis (SHS) on its ability to deform plastically without failure. The composite consists of a copper matrix and reinforced particles of titanium carbide TiC (sized up to 1.

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Purpose: Allogeneic hematopoietic stem cell transplantation (HSCT) is an established therapy for many inborn errors of immunity (IEI). The indications for HSCT have expanded over the last decade. The study aimed to collect and analyze the data on HSCT activity in IEI in Russia.

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Risk factors for severe SARS-Cov-2 infection course are poorly described in children following hematopoietic cell transplantation (HCT). In this international study, we analyzed factors associated with a severe course (intensive care unit (ICU) admission and/or mortality) in post-HCT children. Eighty-nine children (58% male; median age 9 years (min-max 1-18)) who received an allogeneic (85; 96%) or an autologous (4; 4%) HCT were reported from 28 centers (18 countries).

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Chronic graft versus host disease (cGVHD) remains a major complication of allogeneic hematopoietic stem cell transplantation (allo-HSCT). It significantly decreases survival and quality of life. The present study demonstrates retrospective data on extracorporeal photopheresis (ECP) in children with cGVHD.

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Article Synopsis
  • - The study analyzed 106 patients with Diamond-Blackfan Anemia (DBA) who underwent stem cell transplantation (SCT) from different donor types between 1985 and 2016, with a median age of 6.8 years.
  • - The success rates showed an 86% engraftment incidence, with neutrophil recovery occurring around 18 days and platelet recovery by 36 days post-transplant, along with a 3-year overall survival rate of 84%.
  • - While older patients faced higher mortality risks, results were generally similar between those receiving sibling versus unrelated donor transplants, and the study suggests SCT may be a viable option for young patients dependent on transfusions.
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Acute and chronic steroid-refractory graft-versus-host disease (srGVHD) is a life-threatening complication of allogeneic stem cell transplantation. There are a number of reports on case series describing efficacy of ruxolitinib in both acute and chronic srGVHD. We conducted a prospective study (NCT02997280) in 75 patients with srGVHD (32 acute, 43 chronic, 41 adults, and 34 children).

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Introduction: Allogenic transplantation of hemopoetic stem cells (allo-THSC) is one of the most effective treatment methods for Hurler syndrome, aimed at maximal correction of complications related to the genetic disorder. Presence of infection in the recipient is an adverse risk factor, affecting the possibility of starting the conditioning regimen and THSC peforming in general.

Aim: To assess the condition of the nasal cavity and paranasal sinuses in Hurler syndrome patients before the allo-THSC, dynamics of these changes after the transplantation taking into account the correction of alpha-L-iduronidase enzyme level with donor blood cells.

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Article Synopsis
  • Many studies indicate that how drugs interact with DNA can significantly impact their effectiveness against viruses, bacteria, and tumors.
  • Researchers synthesized new planar fluorenone compounds (3a-7d) and nonplanar biphenyls (11a-d) to explore their DNA interactions, confirming their structures using various analytical methods.
  • The study found that the affinity of the fluorenones for DNA was much stronger than that of the biphenyls, and molecular docking showed that the biphenyls could effectively bind to specific DNA sequences.
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Selectively fluorinated hydrocarbons continue to attract attention for tuning pharmacokinetic properties in agrochemical and pharmaceutical discovery programmes. This study identifies benzylic bromination of phenyl all-cis-2,3,5,6-tetrafluorocyclohexane 2 as a key reaction for accessing building blocks containing the all-cis-2,3,5,6-tetrafluorocyclohexane ring system. These cyclohexanes are of interest as the fluorines are only on one face of the cyclohexane, and this imparts an unusual polar aspect, very different to an otherwise hydrophobic cyclohexane.

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Introduction: Although a number of studies were published on the efficacy of post-transplantation cyclophosphamide (PTCy) for graft-versus-host disease (GVHD) prophylaxis, no large studies prospectively evaluated this strategy in related, unrelated, and haploidentical grafts.

Methods: In this study, GVHD prophylaxis for 57 matched bone marrow (MBM) grafts consisted of single-agent PTCy, for 88 matched PBSC grafts (MPBSC) consisted of PTCy, tacrolimus, and mycophenolate mofetil (MMF) 30 mg/kg, and for 55 mismatched grafts (MMGs) consisted of PTCy, tacrolimus and MMF 45 mg/kg.

Results: The study met the primary endpoint to demonstrate equivalent rates of acute GVHD grade II-IV (11%, 17%,19%, P = .

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This paper reports the synthesis of three amine stereoisomers of the tetrafluorocyclohexyl ring system, as building blocks for discovery chemistry programmes. The synthesis starts from a Birch reduction of benzonitrile, followed by an in situ methyl iodide quench. The resultant 2,5-cyclohexadiene was progressed via double epoxidations and then hydrofluorination ring opening reactions.

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We have studied the dependence of cell viability on cell autophagy in control and senescent E1A+cHa-Ras transformed rat embryo fibroblasts. pp242, a TORC1/C2 kinase inhibitor, was used as a trigger of cell autophagy. Cell senescence was induced in the cells by sodium butyrate.

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Autophagy is a conservative process of misfolded protein and damaged organelle degradation that serves to support cellular viability. Autophagy is often induced in response to stress, DNA damage, retinoids, starvation and growth factor withdrawal. The aim of the present work was to study autophagic response of E1A+cHa-Ras-transformed cells to irradiation and to analyze the role of MEK/ERK pathway in regulation of autophagy induced by irradiation.

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We have studied the dependence of cell viability on cell autophagy in control and senescent E1A+cHa-Ras transformed rat embryo fibroblasts. pp242, a TORC1/C2 kinase inhibitor, was used as a trigger of cell autophagy. Cell senescence was induced in the cells by sodium butyrate.

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This paper reports the preparation of methyl substituted all-cis tetrafluorocyclohexanes prepared from a Birch reduction of benzoic acid, worked up with a methyl iodide quench. The resultant methylcyclohexadiene carboxylic acid was reduced to the alcohol, protected as an ether and then a sequence of functional group manipulations carried out to introduce four fluorines. The cyclohexadienyl ring was then epoxidised and the C-O bonds sequentially converted through deoxyfluorination reactions to two sets of isomers of all-cis tetrafluorocyclohexane isomers.

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mTOR is a critical target for controlling cell cycle progression, senescence and cell death in mammalian cancer cells. Here we studied the role of mTOR-dependent autophagy in implementating the antiprolifrative effect of mTORC1-specific inhibitor rapamycin and ATP-competitive mTOR kinase inhibitor pp242. We carried out a comprehensive analysis of pp242- and rapamycin-induced autophagy in ERas tumor cells.

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We have investigated the role of apoptosis resistance gene bcl-2 in the activation of cellular senescence program induced by histone deacetylase inhibitor (HDACi) sodium butyrate (NaBut) in transformed rat fibroblasts. This study was conducted in a resistant to apoptosis induction cell line of rat embryo fibroblasts transfor- med by oncogenes E1A, cHa-ras and bcl-2 (ERasBcl). The parent cell line transformed with only EJA and cHa-ras (ERas) was used as a control.

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A key regulator of cellular senescence, mTORC1 complex, is the target of many signaling cascades including Ras/Raf/MEK/ERK-signaling cascade. In this paper we investigated the role of MEK/ERK-branch of this cascade in the process of cellular senescence induced by histone deacetylase inhibitor (HDACI) sodium butyrate (NaBut), in transformed rat embryo fibroblasts. Suppression of MEK/ERK activity by inhibitor PD0325901 does not prevent activation of mTORC1 complex induced by NaBut treatment.

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Macrophage is a key cell of immune system, it participates in antiviral, antimicrobial and antitumor defense of the organism, also in regeneration and reparation of tissues. Macrophage coordinates functioning of immune system, participates in tumor growth progression. The process of inflammation consists of two stages.

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Cells respond to genotoxic stress by activating the DNA damage response (DDR). When injury is severe or irreparable, cells induce apoptosis or cellular senescence to prevent transmission of the lesions to the daughter cells upon cell division. Resistance to apoptosis is a hallmark of cancer that challenges the efficacy of cancer therapy.

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Primary rodent cells undergo replicative senescence, independent from telomere shortening. We have recently shown that treatment with rapamycin during passages 3-7 suppressed replicative senescence in rat embryonic fibroblasts (REFs), which otherwise occurred by 10-14 passages. Here, we further investigated rapamycin-primed cells for an extended number of passages.

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Aim: To evaluate the efficiency of extracorporeal photopheresis (ECP) in the treatment of patients with refractory chronic graft-versus-host disease (cGVHD) after allogeneic hematopoietic stem cell transplantation (allo-HSCT).

Subjects And Methods: The study included 49 patients aged 2 to 55 years. Allo-HSCT was carried out in 38 (79%) patients with acute leukemias, 5 (10%) with chronic leukemias, 4 (8%) with myelodysplastic syndrome/myeloproliferative disease, and 2 (3%) with other hematologic diseases.

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