Works by Grigorieva, Olga A.


Results: 33
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    Alpha1A- and Beta3-Adrenoceptors Interplay in Adipose Multipotent Mesenchymal Stromal Cells: A Novel Mechanism of Obesity-Driven Hypertension.

    Published in:
    Cells (2073-4409), 2023, v. 12, n. 4, p. 585, doi. 10.3390/cells12040585
    By:
    • Chechekhin, Vadim;
    • Ivanova, Anastasia;
    • Kulebyakin, Konstantin;
    • Sysoeva, Veronika;
    • Naida, Daria;
    • Arbatsky, Mikhail;
    • Basalova, Nataliya;
    • Karagyaur, Maxim;
    • Skryabina, Mariya;
    • Efimenko, Anastasia;
    • Grigorieva, Olga;
    • Kalinina, Natalia;
    • Tkachuk, Vsevolod;
    • Tyurin-Kuzmin, Pyotr
    Publication type:
    Article
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    Novel Immortalized Human Multipotent Mesenchymal Stromal Cell Line for Studying Hormonal Signaling.

    Published in:
    International Journal of Molecular Sciences, 2024, v. 25, n. 4, p. 2421, doi. 10.3390/ijms25042421
    By:
    • Primak, Alexandra;
    • Kalinina, Natalia;
    • Skryabina, Mariya;
    • Usachev, Vladimir;
    • Chechekhin, Vadim;
    • Vigovskiy, Maksim;
    • Chechekhina, Elizaveta;
    • Voloshin, Nikita;
    • Kulebyakin, Konstantin;
    • Kulebyakina, Maria;
    • Grigorieva, Olga;
    • Tyurin-Kuzmin, Pyotr;
    • Basalova, Nataliya;
    • Efimenko, Anastasia;
    • Dzhauari, Stalik;
    • Antropova, Yulia;
    • Plyushchii, Ivan;
    • Akopyan, Zhanna;
    • Sysoeva, Veronika;
    • Tkachuk, Vsevolod
    Publication type:
    Article
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    Mesenchymal stromal cells facilitate resolution of pulmonary fibrosis by miR-29c and miR-129 intercellular transfer.

    Published in:
    Experimental & Molecular Medicine EMM, 2023, v. 55, n. 7, p. 1399, doi. 10.1038/s12276-023-01017-w
    By:
    • Nataliya, Basalova;
    • Mikhail, Arbatskiy;
    • Vladimir, Popov;
    • Olga, Grigorieva;
    • Maksim, Vigovskiy;
    • Ivan, Zaytsev;
    • Ekaterina, Novoseletskaya;
    • Georgy, Sagaradze;
    • Natalia, Danilova;
    • Pavel, Malkov;
    • Andrey, Cherniaev;
    • Maria, Samsonova;
    • Maxim, Karagyaur;
    • Anastasiya, Tolstoluzhinskaya;
    • Uliana, Dyachkova;
    • Zhanna, Akopyan;
    • Vsevolod, Tkachuk;
    • Natalia, Kalinina;
    • Anastasiya, Efimenko
    Publication type:
    Article
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    Age‐related changes in human skeletal muscle transcriptome and proteome are more affected by chronic inflammation and physical inactivity than primary aging.

    Published in:
    Aging Cell, 2024, v. 23, n. 4, p. 1, doi. 10.1111/acel.14098
    By:
    • Kurochkina, Nadia S.;
    • Orlova, Mira A.;
    • Vigovskiy, Maksim A.;
    • Zgoda, Viktor G.;
    • Vepkhvadze, Tatiana F.;
    • Vavilov, Nikita E.;
    • Makhnovskii, Pavel A.;
    • Grigorieva, Olga A.;
    • Boroday, Yakov R.;
    • Philippov, Vladislav V.;
    • Lednev, Egor M.;
    • Efimenko, Anastasia Yu.;
    • Popov, Daniil V.
    Publication type:
    Article
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