Resveratrol Analogs and Prodrugs Differently Affect the Survival of Breast Cancer Cells Impairing Estrogen/Estrogen Receptor α/Neuroglobin Pathway.
Female
Humans
Neuroglobin
/ pharmacology
Breast Neoplasms
/ metabolism
Resveratrol
/ pharmacology
Estrogen Receptor alpha
/ metabolism
Prodrugs
/ pharmacology
Globins
/ metabolism
Nerve Tissue Proteins
/ metabolism
Gold
/ pharmacology
Metal Nanoparticles
Estradiol
/ pharmacology
Paclitaxel
/ pharmacology
Cell Line, Tumor
Apoptosis
Estrogens
/ pharmacology
breast cancer cells
estrogen receptor α
gold nanoparticles
resveratrol
resveratrol analogs
Journal
International journal of molecular sciences
ISSN: 1422-0067
Titre abrégé: Int J Mol Sci
Pays: Switzerland
ID NLM: 101092791
Informations de publication
Date de publication:
21 Jan 2023
21 Jan 2023
Historique:
received:
16
12
2022
revised:
16
01
2023
accepted:
19
01
2023
entrez:
11
2
2023
pubmed:
12
2
2023
medline:
15
2
2023
Statut:
epublish
Résumé
Breast cancer is the first leading tumor in women in terms of incidence worldwide. Seventy percent of cases are estrogen receptor (ER) α-positive. In these malignancies, 17β-estradiol (E2) via ERα increases the levels of neuroglobin (NGB), a compensatory protein that protects cancer cells from stress-induced apoptosis, including chemotherapeutic drug treatment. Our previous data indicate that resveratrol (RSV), a plant-derived polyphenol, prevents E2/ERα-induced NGB accumulation in this cellular context, making E2-dependent breast cancer cells more prone to apoptosis. Unfortunately, RSV is readily metabolized, thus preventing its effectiveness. Here, four different RSV analogs have been developed, and their effect on the ERα/NGB pathway has been compared with RSV conjugated with highly hydrophilic gold nanoparticles as prodrug to evaluate if RSV derivatives maintain the breast cancer cells' susceptibility to the chemotherapeutic drug paclitaxel as the original compound. Results demonstrate that RSV conjugation with gold nanoparticles increases RSV efficacy, with respect to RSV analogues, reducing NGB levels and enhancing the pro-apoptotic action of paclitaxel, even preventing the anti-apoptotic action exerted by E2 treatment on these cells. Overall, RSV conjugation with gold nanoparticles makes this complex a promising agent for medical application in breast cancer treatment.
Identifiants
pubmed: 36768470
pii: ijms24032148
doi: 10.3390/ijms24032148
pmc: PMC9916867
pii:
doi:
Substances chimiques
Neuroglobin
0
Resveratrol
Q369O8926L
Estrogen Receptor alpha
0
Prodrugs
0
Globins
9004-22-2
Nerve Tissue Proteins
0
Gold
7440-57-5
Estradiol
4TI98Z838E
Paclitaxel
P88XT4IS4D
Estrogens
0
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM
Subventions
Organisme : Ministry of Education, Universities and Research
ID : PRIN 2017 n°2017SNRXH3
Organisme : Ministry of Education, Universities and Research
ID : ARTICOLO 1, COMMI 314-337 LEGGE 232/2016
Références
Cancer Lett. 2008 Oct 8;269(2):243-61
pubmed: 18550275
Nanomaterials (Basel). 2021 Mar 27;11(4):
pubmed: 33801708
Curr Genomics. 2006;7(8):497-508
pubmed: 18369406
Nutrients. 2018 Dec 03;10(12):
pubmed: 30513922
Arch Toxicol. 2016 Jun;90(6):1335-47
pubmed: 26838042
Molecules. 2022 Aug 12;27(16):
pubmed: 36014390
Food Chem Toxicol. 2017 May;103:223-232
pubmed: 28315369
Int J Mol Sci. 2022 Dec 01;23(23):
pubmed: 36499460
Mol Biol Cell. 2002 Oct;13(10):3720-9
pubmed: 12388769
J Am Chem Soc. 2018 Jul 18;140(28):8990-8996
pubmed: 29927576
Cancer Treat Rev. 2010 Feb;36(1):43-53
pubmed: 19910122
Mol Nutr Food Res. 2009 May;53 Suppl 1:S7-15
pubmed: 19194969
Oncogene. 2004 Sep 2;23(40):6702-11
pubmed: 15273734
Mol Endocrinol. 1994 Jun;8(6):693-703
pubmed: 7935485
Cell Death Dis. 2014 Oct 09;5:e1449
pubmed: 25299774
Front Pharmacol. 2022 Aug 22;13:943967
pubmed: 36071845
Exp Ther Med. 2016 Jan;11(1):164-170
pubmed: 26889234
Free Radic Biol Med. 2008 Nov 1;45(9):1205-16
pubmed: 18762244
Nanomaterials (Basel). 2020 Sep 23;10(10):
pubmed: 32977463
Bioconjug Chem. 2017 Jun 21;28(6):1791-1800
pubmed: 28574255
CA Cancer J Clin. 2021 May;71(3):209-249
pubmed: 33538338
Biomolecules. 2020 Jul 27;10(8):
pubmed: 32726968
J Cell Physiol. 2018 Jul;233(7):5087-5103
pubmed: 29219195
Antioxidants (Basel). 2019 Jul 25;8(8):
pubmed: 31349656
Biomolecules. 2022 Mar 14;12(3):
pubmed: 35327641
Int J Mol Sci. 2020 Mar 18;21(6):
pubmed: 32197410
ISRN Pharm. 2012;2012:195727
pubmed: 22830056
Endocrinology. 2000 Oct;141(10):3657-67
pubmed: 11014220
Mol Aspects Med. 2016 Dec;52:1-48
pubmed: 27825818
Neural Regen Res. 2021 Dec;16(12):2353-2358
pubmed: 33907006
J Biol Chem. 2004 Feb 6;279(6):5025-34
pubmed: 14617632
Neurosignals. 2010;18(4):223-35
pubmed: 21335947
Breast Cancer Res Treat. 2012 Jun;133(2):427-36
pubmed: 21909982
Cancers (Basel). 2020 Jan 09;12(1):
pubmed: 31936631
Nanomaterials (Basel). 2021 Sep 28;11(10):
pubmed: 34684982
Nutrients. 2021 Jan 19;13(1):
pubmed: 33477894
Crit Rev Food Sci Nutr. 2019;59(13):2040-2051
pubmed: 29405736
Cancer Lett. 2009 Oct 18;284(1):1-6
pubmed: 19261378
IUBMB Life. 2016 Aug;68(8):645-51
pubmed: 27312786
Ann Oncol. 2007 Sep;18(9):1477-83
pubmed: 17515403
Br J Cancer. 2003 Feb 10;88(3):406-12
pubmed: 12569384
Int J Mol Sci. 2018 Sep 05;19(9):
pubmed: 30189583
Cancers (Basel). 2020 Jul 19;12(7):
pubmed: 32707666
Cancer Res. 2009 Mar 1;69(5):1722-7
pubmed: 19244106
J Cell Physiol. 2019 Apr;234(4):3147-3157
pubmed: 30421506
Oncol Rep. 2016 Mar;35(3):1457-62
pubmed: 26648165
Nanotechnology. 2016 Nov 11;27(45):455101
pubmed: 27694702
Eur J Med Chem. 2002 May;37(5):391-8
pubmed: 12008053
Front Nutr. 2018 Sep 21;5:87
pubmed: 30298133
Bioorg Med Chem. 2020 Sep 15;28(18):115673
pubmed: 32828431