Publications by authors named "V N Boyko"

Article Synopsis
  • - The study aimed to assess the safety, tolerability, pharmacokinetics, and effectiveness of sasanlimab, a monoclonal antibody targeting PD-1, in treating participants with advanced cancers, including a focus on non-small-cell lung cancer.
  • - An open-label design was used, with Phase Ib involving dose escalation and expansion in Asian participants, while Phase II included a global trial randomizing participants to receive either 300 mg every 4 weeks or 600 mg every 6 weeks.
  • - Results indicated that Phase Ib had no dose-limiting toxicities and Phase II showed manageable grade 3 treatment-related adverse events, with confirmed response rates of 26.8% and 15.0%
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Objective: Aim: Experimental justification for creation of bile offtake into the duodenum with minimally invasive methods in cases of obstruction of the distal part of common bile duct and failure of transpapillary interventions and studying the first results of such intervention application.

Patients And Methods: Materials and Methods: The anatomical relationships between the duodenum and the common bile duct in its distal parts starting from its retroduodenal part to the sphincter of Oddi were studied. The possibility of transillumination of the walls of the common bile duct and the duodenum by a light source introduced into the lumen of the common bile duct is determined.

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Binary AsSe alloys from the border of a glass-forming region (65 < < 70) subjected to nanomilling in dry and dry-wet modes are characterized by the XRPD, micro-Raman scattering (micro-RS) and revised positron annihilation lifetime (PAL) methods complemented by a disproportionality analysis using the quantum-chemical cluster modeling approach. These alloys are examined with respect to tetra-arsenic biselenide AsSe stoichiometry, realized in glassy g-AsSe, glassy-crystalline g/c-AsSe and glassy-crystalline g/c-AsSe. From the XRPD results, the number of rhombohedral As and cubic arsenolite AsO phases in As-Se alloys increases after nanomilling, especially in the wet mode realized in a PVP water solution.

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Polyamorphic transformations driven by high-energy mechanical ball milling (nanomilling) are recognized in a melt-quenched glassy alloy of tetra-arsenic triselenide (AsSe). We employed XRPD analysis complemented by thermophysical heat-transfer and micro-Raman spectroscopy studies. A straightforward interpretation of the medium-range structural response to milling-driven reamorphization is developed within a modified microcrystalline model by treating diffuse peak-halos in the XRPD patterns of this alloy as a superposition of the Bragg-diffraction contribution from inter-planar correlations, which are supplemented by the Ehrenfest-diffraction contribution from inter-atomic and/or inter-molecular correlations related to derivatives of thioarsenide AsSe molecules, mainly dimorphite-type AsSe ones.

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Article Synopsis
  • Missions into Deep Space this decade are concerning due to potential health risks from microgravity and galactic cosmic radiation, especially for kidneys.
  • Researchers used various biological and clinical analyses on samples from spaceflight-exposed mice, humans, and simulated environments.
  • Key findings reveal that spaceflight causes kidney-related issues like increased risk of kidney stones, changes in nephron structure, and damage from radiation exposure.
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