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The oral selective oestrogen receptor degrader (SERD) AZD9496 is comparable to fulvestrant in antagonising ER and circumventing endocrine resistance

Authors :
Agostina Nardone
Rachel Schiff
Henry Brown
Meghana V. Trivedi
Martin Shea
Mark Pilling
Jamunarani Veeraraghavan
Chandandeep Nagi
Rinath Jeselsohn
Carmine De Angelis
Oona Delpuech
Maria Letizia Cataldo
Tamika Mitchell
C. Kent Osborne
Mothaffar F. Rimawi
Hazel M. Weir
Gary C. Chamness
Xiaoyong Fu
Susan G. Hilsenbeck
Pilling, Mark [0000-0002-7446-6597]
Apollo - University of Cambridge Repository
Nardone, A.
Weir, H.
Delpuech, O.
Brown, H.
De Angelis, C.
Cataldo, M. L.
Fu, X.
Shea, M. J.
Mitchell, T.
Veeraraghavan, J.
Nagi, C.
Pilling, M.
Rimawi, M. F.
Trivedi, M.
Hilsenbeck, S. G.
Chamness, G. C.
Jeselsohn, R.
Osborne, C. K.
Schiff, R.
Source :
British Journal of Cancer
Publication Year :
2018
Publisher :
Nature Publishing Group UK, 2018.

Abstract

BACKGROUND: The oestrogen receptor (ER) is an important therapeutic target in ER-positive (ER+) breast cancer. The selective ER degrader (SERD), fulvestrant, is effective in patients with metastatic breast cancer, but its intramuscular route of administration and low bioavailability are major clinical limitations. METHODS: Here, we studied the pharmacology of a new oral SERD, AZD9496, in a panel of in vitro and in vivo endocrine-sensitive and -resistant breast cancer models. RESULTS: In endocrine-sensitive models, AZD9496 inhibited cell growth and blocked ER activity in the presence or absence of oestrogen. In vivo, in the presence of oestrogen, short-term AZD9496 treatment, like fulvestrant, resulted in tumour growth inhibition and reduced expression of ER-dependent genes. AZD9496 inhibited cell growth in oestrogen deprivation-resistant and tamoxifen-resistant cell lines and xenograft models that retain ER expression. AZD9496 effectively reduced ER levels and ER-induced transcription. Expression analysis of short-term treated tumours showed that AZD9496 potently inhibited classic oestrogen-induced gene transcription, while simultaneously increasing expression of genes negatively regulated by ER, including genes potentially involved in escape pathways of endocrine resistance. CONCLUSIONS: These data suggest that AZD9496 is a potent anti-oestrogen that antagonises and degrades ER with anti-tumour activity in both endocrine-sensitive and endocrine-resistant models.

Details

Language :
English
ISSN :
15321827 and 00070920
Volume :
120
Issue :
3
Database :
OpenAIRE
Journal :
British Journal of Cancer
Accession number :
edsair.doi.dedup.....f1307add3c66d5075ec69b579adb4aed