Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Natalya S. Petrova"'
Autor:
Vasiliy G. Akimkin, Stanislav N. Kuzin, Tatyana A. Semenenko, Antonina A. Ploskireva, Dmitriy V. Dubodelov, Elena V. Tivanova, Natalia Yu. Pshenichcnaya, Anna V. Kalenskaya, Svetlana B. Yatsyshina, Olga Yu. Shipulina, Elena N. Rodionova, Natalya S. Petrova, Irina V. Soloveva, Olga A. Kvasova, Marina A. Vershinina, Marina V. Mamoshina, Vitalina V. Klushkina, Elena N. Kudryavceva, Nadezhda S. Churilova, Yarina V. Panasyuk, Natal'ya V. Vlasenko, Aleksey A. Ostroushko, Evgeniy S. Balmasov, Artem V. Mosunov
Publikováno v:
Annals of the Russian academy of medical sciences. 76:412-422
Background.The COVID-19 epidemic in the Russian Federation, which began in March 2020, caused serious damage to health of the population and led to severe economic losses. By December 28, 2020, 3 078 035 cases of COVID-19 and 55 265 lethal outcomes w
Autor:
Natalya S. Petrova
Publikováno v:
Russkii Arkhiv. 7:6-14
The research is based on the material of the information bulletins of the Communist Party and the VChK-OGPU-NKVD’ departments and memoirs of 1920–1930. Texts describing the meteorological magic rites in the Soviet countryside are analyzed. Compar
Publikováno v:
Practical Applications in Biomedical Engineering
RNA interference is an evolutionary conserved mechanism of specific gene silencing induced by double stranded RNA homologous to the target mRNA. Small interfering RNAs (siRNAs) are widely used for the control of gene expression in molecular biology a
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::3b510db80c38dd2034299bdcae771fdf
https://doi.org/10.5772/53945
https://doi.org/10.5772/53945
Autor:
Marina A. Zenkova, Aliya G. Venyaminova, Ivan V. Chernikov, Valentin V. Vlassov, IIya S. Dovydenko, Natalya S. Petrova, Mariya I. Meschaninova, Elena L. Chernolovskaya
Publikováno v:
Nucleic Acids Research
The conjugation of siRNA to molecules, which can be internalized into the cell via natural transport mechanisms, can result in the enhancement of siRNA cellular uptake. Herein, the carrier-free cellular uptake of nuclease-resistant anti-MDR1 siRNA eq
Autor:
Elena L. Chernolovskaya, Valentin V. Vlassov, Marina A. Zenkova, Natalya S. Petrova, Alya G. Venyaminova, Mariya I. Meschaninova
Publikováno v:
FEBS letters. 585(14)
The thermodynamic properties of siRNA duplexes are important for their silencing activity. siRNAs with high thermodynamic stability of both the central part of the duplex and in the whole, usually display low silencing activity. Destabilization of th
Autor:
Mariya I. Meschaninova, Natalya S. Petrova, Elena L. Chernolovskaya, Alya G. Venyaminova, Marina A. Zenkova, Valentin V. Vlassov
Publikováno v:
Oligonucleotides. 20(6)
The thermodynamic asymmetry of siRNA duplexes determines their silencing activity. Favorable asymmetry can be achieved by incorporation of mismatches into the 3' part of the sense strand, providing fork-siRNAs, which exhibit higher silencing activity
Autor:
Natalya S. Petrova (Kruglova), Mariya I. Meschaninova, Alya G. Venyaminova, Marina A. Zenkova, Valentin V. Vlassov, Elena L. Chernolovskaya
Publikováno v:
Oligonucleotides; Dec2010, Vol. 20 Issue 6, p297-308, 12p