The Ω-3 fatty acid docosahexaenoic acid selectively induces apoptosis in tumor-derived cells and suppress tumor growth in gastric cancer
Journal
European Journal of Pharmacology
ISSN
0014-2999
Date Issued
2021
Author(s)
Lorena Ortega
Lorena Lobos-González
Mauricio Reyna-Jeldes
Daniela Cerda
Erwin De la Fuente-Ortega
Patricio Castro
Giuliano Bernal
Claudio Coddou
Type
Resource Types::text::journal::journal article
URL Institutional Repository
Cite this document
Ortega, L., Lobos-González, L., Reyna-Jeldes, M., Cerda, D., De La Fuente-Ortega, E., Castro, P., Bernal, G., & Coddou, C. (2021). The Ω-3 fatty acid docosahexaenoic acid selectively induces apoptosis in tumor-derived cells and suppress tumor growth in gastric cancer. European Journal of Pharmacology, 896, 173910. https://doi.org/10.1016/j.ejphar.2021.173910
Subjects
gastric cancer
;
omega-3 polyunsaturated fatty acids
;
docosahexaenoic acid
;
dha
;
apoptosis
;
adenocarcinoma
;
animals
;
antineoplastic agents
;
apoptosis
;
apoptosis regulatory proteins
;
cell line, tumor
;
cell proliferation
;
docosahexaenoic acids
;
female
;
gene expression regulation, neoplastic
;
humans
;
male
;
mice, inbred balb c
;
mice, inbred nod
;
mice, scid
;
signal transduction
;
stomach neoplasms
;
tumor burden
;
xenograft model antitumor assays
;
arachidonic acid
;
caspase 3
;
caspase 7
;
docosahexaenoic acid
;
icosapentaenoic acid
;
linolenic acid
;
antineoplastic agent
;
apoptosis regulatory protein
;
docosahexaenoic acid
;
ags cell line
;
animal cell
;
animal experiment
;
animal model
;
antineoplastic activity
;
antiproliferative activity
;
apoptosis
;
article
;
ascites
;
concentration response
;
controlled study
;
female
;
ges-1 cell line
;
hematological parameters
;
human
;
human cell
;
in vitro study
;
in vivo study
;
liver metastasis
;
male
;
mouse
;
mtt assay
;
nonhuman
;
real time polymerase chain reaction
;
staining
;
stomach cancer
;
treatment duration
;
treatment outcome
;
treatment response
;
tumor volume
;
western blotting
;
adenocarcinoma
;
animal
;
apoptosis
;
bagg albino mouse
;
cell proliferation
;
drug effect
;
drug screening
;
gene expression regulation
;
genetics
;
metabolism
;
nonobese diabetic mouse
;
pathology
;
scid mouse
;
signal transduction
;
stomach tumor
;
tumor cell line