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  4. Mitochondrial ncRNA targeting induces cell cycle arrest and tumor growth inhibition of MDA-MB-231 breast cancer cells through reduction of key cell cycle progression factors
Details

Mitochondrial ncRNA targeting induces cell cycle arrest and tumor growth inhibition of MDA-MB-231 breast cancer cells through reduction of key cell cycle progression factors

Journal
Cell Death & Disease
ISSN
2041-4889
Date Issued
2019
Author(s)
Christopher Fitzpatrick
Maximiliano F. Bendek
Macarena Briones
Nicole Farfán
Facultad de Medicina Clínica Alemana Universidad del Desarrollo  
Valeria A. Silva
Gino Nardocci
Martín Montecino
Anne Boland
Jean-François Deleuze
Jaime Villegas
Claudio Villota
Verónica Silva
LOBOS GONZALEZ, LORENA DE LOURDES  
Facultad de Medicina Clínica Alemana Universidad del Desarrollo  
Vincenzo Borgna
Eric Barrey
Luis O. Burzio
Verónica A. Burzio
Type
Resource Types::text::journal::journal article
Scopus ID
2-s2.0-85067064253
WoS ID
WOS:000470936100005
DOI
10.1038/s41419-019-1649-3
URL
https://investigadores.udd.cl/handle/123456789/2475
Cite this document
Fitzpatrick, C., Bendek, M. F., Briones, M., Farfán, N., Silva, V. A., Nardocci, G., Montecino, M., Boland, A., Deleuze, J.-F., Villegas, J., Villota, C., Silva, V., Lobos-Gonzalez, L., Borgna, V., Barrey, E., Burzio, L. O., & Burzio, V. A. (2019). Mitochondrial ncRNA targeting induces cell cycle arrest and tumor growth inhibition of MDA-MB-231 breast cancer cells through reduction of key cell cycle progression factors. Cell Death & Disease, 10(6), 423. https://doi.org/10.1038/s41419-019-1649-3
Subjects
long noncoding rnas

; 

microrna-binding-sites

; 

messenger-rnas

; 

expression

; 

survivin

; 

asncmtrna-2

; 

regulator

; 

5'-utr

; 

cdk1

; 

animals

; 

antagomirs

; 

apoptosis

; 

breast neoplasms

; 

cdc2 protein kinase

; 

cell cycle checkpoints

; 

cell line, tumor

; 

cell proliferation

; 

cyclin b1

; 

cyclin d1

; 

down-regulation

; 

female

; 

humans

; 

mice

; 

mice, inbred balb c

; 

micrornas

; 

mitochondria

; 

rna interference

; 

rna, long noncoding

; 

rna, small interfering

; 

andes 1537

; 

antineoplastic agent

; 

antisense oligonucleotide

; 

cell cycle protein

; 

cyclin b1

; 

cyclin d1

; 

mitochondrial rna

; 

survivin

; 

unclassified drug

; 

untranslated rna

; 

antagomir

; 

cdk1 protein, human

; 

cyclin b1

; 

cyclin d1

; 

cyclin dependent kinase 1

; 

long untranslated rna

; 

microrna

; 

small interfering rna

; 

animal experiment

; 

animal model

; 

antineoplastic activity

; 

apoptosis

; 

article

; 

breast cancer

; 

breast cancer cell line

; 

cancer inhibition

; 

cell cycle arrest

; 

cell cycle progression

; 

cell proliferation

; 

comparative study

; 

controlled study

; 

dna fragmentation

; 

down regulation

; 

genetic transfection

; 

human

; 

human cell

; 

in vivo study

; 

mda-mb-231 cell line

; 

mouse

; 

nonhuman

; 

priority journal

; 

protein expression

; 

rna sequence

; 

tumor cell

; 

tumor growth

; 

tumor xenograft

; 

upregulation

; 

western blotting

; 

zr-75-1 cell line

; 

animal

; 

apoptosis

; 

bagg albino mouse

; 

breast tumor

; 

cell cycle checkpoint

; 

chemistry

; 

female

; 

genetics

; 

metabolism

; 

mitochondrion

; 

pathology

; 

rna interference

; 

tumor cell line
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