-
Je něco špatně v tomto záznamu ?
Gradient Magnetic Field Accelerates Division of E. coli Nissle 1917
S. Gorobets, O. Gorobets, I. Sharai, T. Polyakova, V. Zablotskii
Jazyk angličtina Země Švýcarsko
Typ dokumentu časopisecké články
NLK
Directory of Open Access Journals
od 2012
Free Medical Journals
od 2012
PubMed Central
od 2012
Europe PubMed Central
od 2012
ProQuest Central
od 2012-03-01
Open Access Digital Library
od 2012-01-01
Open Access Digital Library
od 2012-01-01
ROAD: Directory of Open Access Scholarly Resources
od 2012
PubMed
36672251
DOI
10.3390/cells12020315
Knihovny.cz E-zdroje
- MeSH
- buněčné dělení MeSH
- buněčný cyklus MeSH
- Escherichia coli * metabolismus MeSH
- magnetické pole * MeSH
- Publikační typ
- časopisecké články MeSH
Cell-cycle progression is regulated by numerous intricate endogenous mechanisms, among which intracellular forces and protein motors are central players. Although it seems unlikely that it is possible to speed up this molecular machinery by applying tiny external forces to the cell, we show that magnetic forcing of magnetosensitive bacteria reduces the duration of the mitotic phase. In such bacteria, the coupling of the cell cycle to the splitting of chains of biogenic magnetic nanoparticles (BMNs) provides a biological realization of such forcing. Using a static gradient magnetic field of a special spatial configuration, in probiotic bacteria E. coli Nissle 1917, we shortened the duration of the mitotic phase and thereby accelerated cell division. Thus, focused magnetic gradient forces exerted on the BMN chains allowed us to intervene in the processes of division and growth of bacteria. The proposed magnetic-based cell division regulation strategy can improve the efficiency of microbial cell factories and medical applications of magnetosensitive bacteria.
Citace poskytuje Crossref.org
- 000
- 00000naa a2200000 a 4500
- 001
- bmc23004595
- 003
- CZ-PrNML
- 005
- 20230425171620.0
- 007
- ta
- 008
- 230418s2023 sz f 000 0|eng||
- 009
- AR
- 024 7_
- $a 10.3390/cells12020315 $2 doi
- 035 __
- $a (PubMed)36672251
- 040 __
- $a ABA008 $b cze $d ABA008 $e AACR2
- 041 0_
- $a eng
- 044 __
- $a sz
- 100 1_
- $a Gorobets, Svitlana $u Faculty of Biotechnology and Biotechnics, National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute", 03056 Kyiv, Ukraine
- 245 10
- $a Gradient Magnetic Field Accelerates Division of E. coli Nissle 1917 / $c S. Gorobets, O. Gorobets, I. Sharai, T. Polyakova, V. Zablotskii
- 520 9_
- $a Cell-cycle progression is regulated by numerous intricate endogenous mechanisms, among which intracellular forces and protein motors are central players. Although it seems unlikely that it is possible to speed up this molecular machinery by applying tiny external forces to the cell, we show that magnetic forcing of magnetosensitive bacteria reduces the duration of the mitotic phase. In such bacteria, the coupling of the cell cycle to the splitting of chains of biogenic magnetic nanoparticles (BMNs) provides a biological realization of such forcing. Using a static gradient magnetic field of a special spatial configuration, in probiotic bacteria E. coli Nissle 1917, we shortened the duration of the mitotic phase and thereby accelerated cell division. Thus, focused magnetic gradient forces exerted on the BMN chains allowed us to intervene in the processes of division and growth of bacteria. The proposed magnetic-based cell division regulation strategy can improve the efficiency of microbial cell factories and medical applications of magnetosensitive bacteria.
- 650 12
- $a Escherichia coli $x metabolismus $7 D004926
- 650 _2
- $a buněčné dělení $7 D002455
- 650 _2
- $a buněčný cyklus $7 D002453
- 650 12
- $a magnetické pole $7 D060526
- 655 _2
- $a časopisecké články $7 D016428
- 700 1_
- $a Gorobets, Oksana $u Faculty of Physics and Mathematics, National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute", 03056 Kyiv, Ukraine $u Institute of Magnetism of the National Academy of Sciences of Ukraine and Ministry of Education and Science of Ukraine, 03142 Kyiv, Ukraine
- 700 1_
- $a Sharai, Iryna $u Faculty of Physics and Mathematics, National Technical University of Ukraine "Igor Sikorsky Kyiv Polytechnic Institute", 03056 Kyiv, Ukraine $u Institute of Magnetism of the National Academy of Sciences of Ukraine and Ministry of Education and Science of Ukraine, 03142 Kyiv, Ukraine $1 https://orcid.org/000000019472965X
- 700 1_
- $a Polyakova, Tatyana $u Institute of Physics of the Czech Academy of Sciences, Na Slovance 1999/2, 182 00 Prague, Czech Republic
- 700 1_
- $a Zablotskii, Vitalii $u Institute of Physics of the Czech Academy of Sciences, Na Slovance 1999/2, 182 00 Prague, Czech Republic $u International Magnetobiology Frontier Research Center (iMFRC), Science Island, Hefei 230000, China $1 https://orcid.org/0000000180277461
- 773 0_
- $w MED00194911 $t Cells $x 2073-4409 $g Roč. 12, č. 2 (2023)
- 856 41
- $u https://pubmed.ncbi.nlm.nih.gov/36672251 $y Pubmed
- 910 __
- $a ABA008 $b sig $c sign $y p $z 0
- 990 __
- $a 20230418 $b ABA008
- 991 __
- $a 20230425171616 $b ABA008
- 999 __
- $a ok $b bmc $g 1924970 $s 1190804
- BAS __
- $a 3
- BAS __
- $a PreBMC-MEDLINE
- BMC __
- $a 2023 $b 12 $c 2 $e 20230114 $i 2073-4409 $m Cells $n Cells $x MED00194911
- LZP __
- $a Pubmed-20230418