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Correction

Correction: Plyasova et al. Penetration into Cancer Cells via Clathrin-Dependent Mechanism Allows L-Asparaginase from Rhodospirillum rubrum to Inhibit Telomerase. Pharmaceuticals 2020, 13, 286

by
Anna A. Plyasova
1,
Marina V. Pokrovskaya
1,
Olga M. Lisitsyna
2,
Vadim S. Pokrovsky
3,4,
Svetlana S. Alexandrova
1,
Abdullah Hilal
1,
Nikolay N. Sokolov
1 and
Dmitry D. Zhdanov
1,4,*
1
Institute of Biomedical Chemistry, Pogodinskaya st. 10/8, 119121 Moscow, Russia
2
International Biotechnology Center “Generium” LLC, Vladimirskaya st. 14, 601125 Volginsky, Russia
3
N.N. Blokhin Cancer Research Center, Kashirskoe Shosse 24, 115478 Moscow, Russia
4
Department of Biochemistry, Peoples Friendship University of Russia (RUDN University), Miklukho-Maklaya st. 6, 117198 Moscow, Russia
*
Author to whom correspondence should be addressed.
Pharmaceuticals 2024, 17(6), 684; https://doi.org/10.3390/ph17060684
Submission received: 9 May 2024 / Accepted: 14 May 2024 / Published: 27 May 2024
In the original publication [1], there was a mistake in Figure 3 as published. This accident occurred as a result of working with many captures. The corrected Figure 3 appears below. The authors state that the scientific conclusions are unaffected. This correction was approved by the Academic Editor. The original publication has also been updated.

Reference

  1. Plyasova, A.A.; Pokrovskaya, M.V.; Lisitsyna, O.M.; Pokrovsky, V.S.; Alexandrova, S.S.; Hilal, A.; Sokolov, N.N.; Zhdanov, D.D. Penetration into Cancer Cells via Clathrin-Dependent Mechanism Allows L-Asparaginase from Rhodospirillum rubrum to Inhibit Telomerase. Pharmaceuticals 2020, 13, 286. [Google Scholar] [CrossRef] [PubMed]
Figure 3. Induction of FITC-positive cells after treatment with FITC-conjugated L-ASNases. (A) Representative fluorescent microscopy images of SKBR3 cell incubated with different FITC-conjugated L-ASNases for 12 h and stained with DAPI (green, FITC, and blue, DAPI, magnification ×40). (B) Quantification of the FITC mean optical density (OD) in cells. * p ≤ 0.05 vs. cells incubated with free FITC.
Figure 3. Induction of FITC-positive cells after treatment with FITC-conjugated L-ASNases. (A) Representative fluorescent microscopy images of SKBR3 cell incubated with different FITC-conjugated L-ASNases for 12 h and stained with DAPI (green, FITC, and blue, DAPI, magnification ×40). (B) Quantification of the FITC mean optical density (OD) in cells. * p ≤ 0.05 vs. cells incubated with free FITC.
Pharmaceuticals 17 00684 g001
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MDPI and ACS Style

Plyasova, A.A.; Pokrovskaya, M.V.; Lisitsyna, O.M.; Pokrovsky, V.S.; Alexandrova, S.S.; Hilal, A.; Sokolov, N.N.; Zhdanov, D.D. Correction: Plyasova et al. Penetration into Cancer Cells via Clathrin-Dependent Mechanism Allows L-Asparaginase from Rhodospirillum rubrum to Inhibit Telomerase. Pharmaceuticals 2020, 13, 286. Pharmaceuticals 2024, 17, 684. https://doi.org/10.3390/ph17060684

AMA Style

Plyasova AA, Pokrovskaya MV, Lisitsyna OM, Pokrovsky VS, Alexandrova SS, Hilal A, Sokolov NN, Zhdanov DD. Correction: Plyasova et al. Penetration into Cancer Cells via Clathrin-Dependent Mechanism Allows L-Asparaginase from Rhodospirillum rubrum to Inhibit Telomerase. Pharmaceuticals 2020, 13, 286. Pharmaceuticals. 2024; 17(6):684. https://doi.org/10.3390/ph17060684

Chicago/Turabian Style

Plyasova, Anna A., Marina V. Pokrovskaya, Olga M. Lisitsyna, Vadim S. Pokrovsky, Svetlana S. Alexandrova, Abdullah Hilal, Nikolay N. Sokolov, and Dmitry D. Zhdanov. 2024. "Correction: Plyasova et al. Penetration into Cancer Cells via Clathrin-Dependent Mechanism Allows L-Asparaginase from Rhodospirillum rubrum to Inhibit Telomerase. Pharmaceuticals 2020, 13, 286" Pharmaceuticals 17, no. 6: 684. https://doi.org/10.3390/ph17060684

APA Style

Plyasova, A. A., Pokrovskaya, M. V., Lisitsyna, O. M., Pokrovsky, V. S., Alexandrova, S. S., Hilal, A., Sokolov, N. N., & Zhdanov, D. D. (2024). Correction: Plyasova et al. Penetration into Cancer Cells via Clathrin-Dependent Mechanism Allows L-Asparaginase from Rhodospirillum rubrum to Inhibit Telomerase. Pharmaceuticals 2020, 13, 286. Pharmaceuticals, 17(6), 684. https://doi.org/10.3390/ph17060684

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