Publications by authors named "Tretyakova M"

Cerebral vein thrombosis is a rare, life-threatening condition that has now become more commonly diagnosed due to advancements in imaging techniques. Our purpose is to improve understanding of pathogenesis, diagnosis and pregnancy and IVF management in patients with a history of cerebral thrombosis. We present an overview of the modern tactics of anticoagulant therapy for cerebral thrombosis with a focus on pregnancy, the use of hormone therapy, and assisted reproductive technologies.

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  • - Thrombotic microangiopathy (TMA) is a group of disorders where small blood vessel clotting causes organ damage, including conditions like thrombotic thrombocytopenic purpura (TTP) and hemolytic-uremic syndrome (HUS), each with unique causes and impacts on health.
  • - In TMA, inflammation leads to endothelial damage and activates platelet and coagulation processes, often linked to low ADAMTS13 enzyme levels, particularly in cancer patients undergoing chemotherapy, which raises thrombotic risk by increasing the VWF/ADAMTS13 ratio.
  • - Treatment focuses on diagnosing the specific cause and may include therapies to inhibit complement activation, supportive care, and plasmapheresis
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Importance: Antiphospholipid syndrome in neonates and children is a rare, but in some cases life-threatening condition with arterial and/or venous thrombosis and/or non-thrombotic neurological, skin, ophthalmological and other manifestations.

Observations: This review highlights the available information about the features of pediatric APS, including the rare catastrophic form, the differences between pediatric and adult APS, and the role of genetic thrombophilia in APS manifestation.

Conclusions And Relevance: The clinical manifestations and treatment options for APS in children may differ from those in adults, and prescribing therapy can be challenging due to the unique clinical and morphological characteristics of the pediatric patient.

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  • Lu-labeled small-molecule PSMA tracers show promise as therapeutic agents for advanced prostate cancer, with potential improvements through optimized molecular design.* -
  • Six novel DCL urea-based PSMA ligands were synthesized, achieving satisfactory yields and over 95% radiochemical labeling efficiency for preclinical evaluation.* -
  • The study found that molecular modifications, like substituents on the aromatic fragment, significantly affect binding affinity and biodistribution, with certain variants showing improved accumulation in target tissues, although some had unfavorable pharmacokinetics.*
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  • Developing protein therapeutics requires optimizing their pharmacokinetic and pharmacodynamic properties, particularly to prolong their half-lives in the body.
  • A study compared various half-life extension technologies (PAS polypeptides, XTEN polypeptides, and an albumin binding domain) using an HER2 affibody-drug conjugate, revealing that while these extensions lowered HER2 affinity slightly, they maintained cytotoxic effectiveness.
  • The results indicated that the ABD-enhanced construct had the highest tumor uptake and the best overall performance, despite not having the longest half-life compared to others tested.
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HER2 status determination is a necessary step for the proper choice of therapy and selection of patients for the targeted treatment of cancer. Targeted radiotracers such as radiolabeled DARPins provide a noninvasive and effective way for the molecular imaging of HER2 expression. This study aimed to evaluate tumor-targeting properties of three Tc-labeled DARPin G3 variants containing Gly-Gly-Gly-Cys (GC), (Gly-Gly-Gly-Ser)-Cys ((GS)C), or Glu-Glu-Glu-Cys (EC) amino acid linkers at the C-terminus and conjugated to the HYNIC chelating agent, as well as to compare them with the clinically evaluated DARPin G3 labeled with Tc(CO) using the (HE)-tag at the N-terminus.

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Unlike classic APS, CAPS causes multiple microthrombosis due to an increased inflammatory response, known as a "thrombotic storm". CAPS typically develops after infection, trauma, or surgery and begins with the following symptoms: fever, thrombocytopenia, muscle weakness, visual and cognitive disturbances, abdominal pain, renal failure, and disseminated intravascular coagulation. Although the presence of antiphospholipid antibodies in the blood is one of the diagnostic criteria, the level of these antibodies can fluctuate significantly, which complicates the diagnostic process and can lead to erroneous interpretation of rapidly developing symptoms.

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Background: Acute toxic myocardial damage may be accompanied by the development of cardiogenic shock (CS), the mortality from which is still unacceptably high. Since there is no specific antidote for many types of toxins, treatment of such patients includes various measures of hemodynamic and respiratory support. The paper presents a case of refractory CS due to possible aluminum phosphide (AP) poisoning.

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: Contracting COVID-19 during pregnancy can harm both the mother and the unborn child. Pregnant women are highly likely to develop respiratory viral infection complications with critical conditions caused by physiological changes in the immune and cardiopulmonary systems. Asymptomatic COVID-19 in pregnant women may be accompanied by fetal inflammatory response syndrome, which has adverse consequences for the newborn's life and health.

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  • Antibody drug conjugates (ADCs) targeting cancer cell receptors, like HER2, are effective yet often face resistance, prompting research for better alternatives.
  • A new drug conjugate, Z-ABD-mcMMAF, showed strong binding to HER2 and demonstrated the highest cytotoxic effect on cancer cells compared to other agents like DM1 and MMAE.
  • In mouse studies, the MMAF-based conjugate led to complete tumor regression in 50% of cases, highlighting its superior anti-tumor efficacy and favorable toxicity profile compared to the DM1 variant.
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The spread of tumor cells throughout the body by traveling through the bloodstream is a critical step in metastasis, which continues to be the main cause of cancer-related death. The detection and analysis of circulating tumor cells (CTCs) is important for understanding the biology of metastasis and the development of antimetastatic therapy. However, the isolation of CTCs is challenging due to their high heterogeneity and low representation in the bloodstream.

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Non-invasive radionuclide imaging of human epidermal growth factor receptor type 2 (HER2) expression in breast, gastroesophageal, and ovarian cancers may stratify patients for treatment using HER2-targeted therapeutics. Designed ankyrin repeat proteins (DARPins) are a promising type of targeting probe for radionuclide imaging. In clinical studies, the DARPin [Tc]Tc-(HE)-G3 labeled using a peptide-based chelator His-Glu-His-Glu-His-Glu ((HE)), provided clear imaging of HER2 expressing breast cancer 2-4 h after injection.

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Targeted drug conjugates based on Affibody molecules fused to an albumin-binding domain (ABD) for half-life extension have demonstrated potent anti-tumor activity in preclinical therapeutic studies. Furthermore, optimization of their molecular design might increase the cytotoxic effect on tumors and minimize systemic toxicity. This study aimed to investigate the influence of length and composition of a linker between the human epidermal growth factor receptor 2 (HER2)-targeted affibody molecule (Z) and the ABD domain on functionality and biodistribution of affibody-drug conjugates containing a microtubulin inhibitor mertansin (mcDM1) (AffiDCs).

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Metastasis is the leading cause of cancer death and can be realized through the phenomenon of tumor cell fusion. The fusion of tumor cells with other tumor or normal cells leads to the appearance of tumor hybrid cells (THCs) exhibiting novel properties such as increased proliferation and migration, drug resistance, decreased apoptosis rate, and avoiding immune surveillance. Experimental studies showed the association of THCs with a high frequency of cancer metastasis; however, the underlying mechanisms remain unclear.

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Two alkylated verdazyl radicals (AlkVZs) were investigated as active compounds for photoinitiated controlled MCF-7 cell death. Observed results unambiguously showed that AlkVZ could be a potential structural moiety for the design of a novel family of photodynamic therapy agents. The main advantage of the proposed substances is an oxygen-independent generation of active radicals, which play a pivotal role in the treatment of oxygen-deficient tumors.

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Vehicle emission particles (VEPs) represent a significant part of air pollution in urban areas. However, the toxicity of this category of particles in different aquatic organisms is still unexplored. This work aimed to extend the understanding of the toxicity of the vehicle exhaust particles in two species of marine diatomic microalgae, the planktonic crustacean , and the sea urchin .

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Thrombosis in pregnancy is a major cause of maternal and fetal morbidity and mortality. Risk stratification of venous thromboembolism (VTE) during pregnancy is complex. The hypercoagulability observed in pregnant women can reduce bleeding during childbirth, but may cause thrombosis especially in the presence of additional prothrombotic risk factors such as antiphospholipid antibodies or genetic thrombophilic defects.

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There has been great progress in Huntington's disease (HD) research. Yet, effective treatments to halt disease before the onset of disabling symptoms are still unavailable. Scientific breakthroughs require an active and lasting commitment from families.

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Coal dust is a source of pollution not only for atmospheric air but also for the marine environment. In places of storage and handling of coal near water bodies, visible pollution of the water area can be observed. Coal, despite its natural origin, can be referred to as anthropogenic sources of pollution.

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Background: The current recommended therapy of obstetric antiphospholipid syndrome (APS) is a long-term anticoagulant therapy that affects the final event, namely, when the thrombosis has already occurred. Unfortunately, this schedule is not always effective and fails despite the correct risk stratification and an adequate adjusted dose.

Materials And Methods: From 2013 to 2020 we observed 217 women with antiphospholipid antibodies and obstetric morbidities who were treated with conventional treatment protocol (aspirin low doses ± LMWH).

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  • The novel coronavirus is a top concern for the international medical community due to its complex effects on the body and varying research findings.
  • Vascular complications have emerged as the most severe consequence of COVID-19, significantly contributing to patient mortality.
  • Certain groups, particularly pregnant women and those with specific medical histories, are at heightened risk, making the use of low-molecular-weight heparins important for prevention and treatment.
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There is a global problem of increment of the number of children with clinical features that mimic Kawasaki Disease (KD) during the ongoing Coronavirus Disease 2019 (COVID-19) pandemic. The disease was first reported by Tomisaku Kawasaki, a Japanese pediatrician, in a four-year-old child with a rash and fever at the Red Cross Hospital in Tokyo in January 1961. Now Kawasaki disease is recognized worldwide.

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Snow precipitation and snowpack are commonly used to assess the condition of the aerial environment. Another way to monitor air quality is to study trees and shrubs, which are natural barriers for capturing air pollution, including atmospheric particulate matter. The hypothesis of the current study was that using fresh snow precipitation and washout from vegetation for the monitoring of air pollution can produce comparable results.

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For last months, humanity has faced a formidable unknown enemy, which is presented as a new coronavirus infection. Despite the fact that the causative agents of new diseases appear at a certain frequency and that the virus SARS-CoV-2 has certain common properties with its predecessors, at the moment we are dealing with a new unknown pathogenesis of the development of severe complications in patients with risk factors. A final understanding of pathological process mechanisms is the goal of the scientific community.

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Metastasis being the main cause of breast cancer (BC) mortality represents the complex and multistage process. The entrance of tumor cells into the blood vessels and the appearance of circulating tumor cells (CTCs) seeding and colonizing distant tissues and organs are one of the key stages in the metastatic cascade. Like the primary tumor, CTCs are extremely heterogeneous and presented by clusters and individual cells which consist of phenotypically and genetically distinct subpopulations.

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