Publications by authors named "Kapustova V"

Extramedullary multiple myeloma (EMM) is an aggressive form of multiple myeloma (MM). This study represents the most comprehensive next-generation sequencing analysis of EMM tumors (N = 14) to date, uncovering key molecular features and describing the tumor microenvironment. We observed the co-occurrence of 1q21 gain/amplification and MAPK pathway mutations in 79% of EMM samples, suggesting that these are crucial mutational events in EMM development.

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Induction therapy followed by CD34 cell mobilisation and autologous transplantation represents standard of care for multiple myeloma (MM). However, the anti-CD38 monoclonal antibodies daratumumab and isatuximab have been associated with mobilisation impairment, yet the mechanism remains unclear. In this study, we investigated the effect of three different regimens (dara-VCd, isa-KRd and VTd) on CD34 cells using flow cytometry and transcriptomics.

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Article Synopsis
  • The study examines primary plasma cell leukemia (PCL), previously defined by ≥ 20% circulating plasma cells, now suggested to be diagnosed by a lower threshold of ≥ 2% CTCs, indicating it might just be ultra-high-risk multiple myeloma (MM).
  • Researchers measured CTC levels in 395 newly diagnosed transplant-ineligible MM patients and found that those with 2%-20% CTCs had poorer survival outcomes compared to those with < 2%, emphasizing the clinical relevance of a lower cutoff.
  • The findings support using the 2% cutoff as a potential biomarker for identifying hidden primary PCL and advocate for flow cytometry assessment during MM diagnosis to improve patient stratification and treatment decisions.
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Three out of four RNA components of ribosomes are encoded by 45S ribosomal DNA (rDNA) loci, which are organized as long head-to-tail tandem arrays of nearly identical units, spanning several megabases of sequence. Due to this structure, the rDNA loci are the major sources of gaps in genome assemblies, and gene copy number, sequence composition, and expression status of particular arrays remain elusive, especially in complex genomes harboring multiple loci. Here we conducted a multi-omics study to decipher the 45S rDNA loci in hexaploid bread wheat.

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Background: Cultivated grasses are an important source of food for domestic animals worldwide. Increased knowledge of their genomes can speed up the development of new cultivars with better quality and greater resistance to biotic and abiotic stresses. The most widely grown grasses are tetraploid ryegrass species (Lolium) and diploid and hexaploid fescue species (Festuca).

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Reference genomes of important cereals, including barley, emmer wheat and bread wheat, were released recently. Their comparison with genome size estimates obtained by flow cytometry indicated that the assemblies represent not more than 88-98% of the complete genome. This work is aimed at identifying the missing parts in two cereal genomes and proposing techniques to make the assemblies more complete.

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