NSG-Pro mouse model for uncovering resistance mechanisms and unique vulnerabilities in human luminal breast cancers

NSG-Pro 小鼠模型用于揭示人类腔内乳腺癌的耐药机制和独特弱点

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作者:Yunguang Sun, Ning Yang, Fransiscus E Utama, Sameer S Udhane, Junling Zhang, Amy R Peck, Alicia Yanac, Katherine Duffey, John F Langenheim, Vindhya Udhane, Guanjun Xia, Jess F Peterson, Julie M Jorns, Marja T Nevalainen, Romain Rouet, Peter Schofield, Daniel Christ, Christopher J Ormandy, Anne L Ros

Abstract

Most breast cancer deaths are caused by estrogen receptor-α–positive (ER+) disease. Preclinical progress is hampered by a shortage of therapy-naïve ER+ tumor models that recapitulate metastatic progression and clinically relevant therapy resistance. Human prolactin (hPRL) is a risk factor for primary and metastatic ER+ breast cancer. Because mouse prolactin fails to activate hPRL receptors, we developed a prolactin-humanized Nod-SCID-IL2Rγ (NSG) mouse (NSG-Pro) with physiological hPRL levels. Here, we show that NSG-Pro mice facilitate establishment of therapy-naïve, estrogen-dependent PDX tumors that progress to lethal metastatic disease. Preclinical trials provide first-in-mouse efficacy of pharmacological hPRL suppression on residual ER+ human breast cancer metastases and document divergent biology and drug responsiveness of tumors grown in NSG-Pro versus NSG mice. Oncogenomic analyses of PDX lines in NSG-Pro mice revealed clinically relevant therapy-resistance mechanisms and unexpected, potently actionable vulnerabilities such as DNA-repair aberrations. The NSG-Pro mouse unlocks previously inaccessible precision medicine approaches for ER+ breast cancers.

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