Alexander Archakov
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Explore the profile of Alexander Archakov including associated specialties, affiliations and a list of published articles.
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43
Citations
627
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Recent Articles
1.
Archakov A, Kukharchuk V, Lisitsa A, Ponomarenko E, Romashova Y, Pleshakova T, et al.
Res Pharm Sci
. 2025 Feb;
19(6):656-668.
PMID: 39911895
Background And Purpose: Combined hyperlipidemia is associated with an increased risk of cardiovascular events. This clinical trial investigated phospholipovit (essential phospholipids, Institute of Biomedical Chemistry, Moscow, Russia), an ultra-small phospholipid...
2.
Novikova S, Tolstova T, Kurbatov L, Farafonova T, Tikhonova O, Soloveva N, et al.
Cells
. 2022 Oct;
11(20).
PMID: 36291090
Studies of induced granulocytic differentiation help to reveal molecular mechanisms of cell maturation. The nuclear proteome represents a rich source of regulatory molecules, including transcription factors (TFs). It is important...
3.
Vavilov N, Ilgisonis E, Lisitsa A, Ponomarenko E, Farafonova T, Tikhonova O, et al.
Curr Protein Pept Sci
. 2022 May;
23(4):290-298.
PMID: 35619260
Aims: The main goal of the Russian part of C-HPP is to detect and functionally annotate missing proteins (PE2-PE4) encoded by human chromosome 18. To achieve this goal, it is...
4.
Ilgisonis E, Vavilov N, Ponomarenko E, Lisitsa A, Poverennaya E, Zgoda V, et al.
Front Genet
. 2021 Jul;
12:674534.
PMID: 34194472
The cutoff level applied in sequencing analysis varies according to the sequencing technology, sample type, and study purpose, which can largely affect the coverage and reliability of the data obtained....
5.
Krasnov G, Shkrigunov T, Radko S, Ptitsyn K, Shapovalova V, Timoshenko O, et al.
Data Brief
. 2021 Jun;
36:107130.
PMID: 34095379
The chromosome-centric dataset was created by applying several technologies of transcriptome profiling. The described dataset is available at NCBI repository (BioProject ID PRJNA635536). The dataset referred to the same type...
6.
Radko S, Ptitsyn K, Novikova S, Kiseleva Y, Moysa A, Kurbatov L, et al.
Biomedicines
. 2020 May;
8(5).
PMID: 32456365
Selected reaction monitoring (SRM) is a mass spectrometric technique characterized by the exceptionally high selectivity and sensitivity of protein detection. However, even with this technique, the quantitative detection of low-...
7.
Poverennaya E, Kiseleva O, Ilgisonis E, Novikova S, Kopylov A, Ivanov Y, et al.
Proteomes
. 2020 May;
8(2).
PMID: 32456206
Despite direct or indirect efforts of the proteomic community, the fraction of blind spots on the protein map is still significant. Almost 11% of human genes encode missing proteins; the...
8.
Ivanov Y, Pleshakova T, Malsagova K, Kurbatov L, Popov V, Glukhov A, et al.
Sensors (Basel)
. 2019 Dec;
19(23).
PMID: 31795306
Information about the characteristics of measuring chips according to their storage conditions is of great importance for clinical diagnosis. In our present work, we have studied the capability of chips...
9.
Kuzikov A, Masamrekh R, Shkel T, Strushkevich N, Gilep A, Usanov S, et al.
Talanta
. 2019 Jan;
196:231-236.
PMID: 30683357
We used rapid one-step derivatization of 6β-hydroxylated hydrocortisone by sulfuric acid for fluorimetric determination of CYP3A4-dependent hydroxylase reaction in the electrochemical system. We have shown that CYP3A4 substrate - hydrocortisone...
10.
Paik Y, Lane L, Kawamura T, Chen Y, Cho J, LaBaer J, et al.
J Proteome Res
. 2018 Oct;
17(12):4042-4050.
PMID: 30269496
An important goal of the Human Proteome Organization (HUPO) Chromosome-centric Human Proteome Project (C-HPP) is to correctly define the number of canonical proteins encoded by their cognate open reading frames...