Abstract

Abstract NTRK (Neurotrophic tyrosine kinase receptor)family, also named as TRK (Tropomyosin receptor kinase),is composedof three transmembrane protein receptors, TrkA, TrkB and TrkC,which play important rolesin neuronal differentiation and survival. Over-activation of NTRK1, NTRK2 and NTRK3 due to chromosomal rearrangement and mutations, was found in congenital fibrosarcoma, secretory breast carcinoma cancer and other types ofcancer. The identification of NTRK fusions as diver cancer genes has led to rapid development of anticancer therapeutic agents, including LOXO101, LOXO195 and TPX0005.Ba/F3 line is a popular system for studying both kinases and their inhibitors, because some protein kinases can render the Ba/F3 cells to be depended on the activation of the kinases instead of IL-3 supplement, while their inhibitors can antagonize the kinase-dependent growth effects. Our group used Ba/F3 cells togenerate a celllinepanel with 14 different NTRK fusion genes or mutations for NTRK inhibitor screening and development. Inaddition to use the cell lines for in vitro assays, thetransformed Ba/F3 linescan grow well in immune-deficient miceas in vivo models. LOXO101—a NTRK inhibitor—was used to test tumor growth inhibition, the results showedthat threewild-type fusion cell lineswere sensitive to LOXO101, but not other tumor models containing NTRK gatekeeper mutations. All the tumor models were sensitive to TPX0005, another NTRK inhibitor. Ourdata indicatethatthe celllinepanel of Ba/F3is apowerful cell model for new NTRK inhibitor discovery and development. Citation Format: Feng Hao, Zhaoshuai Bai, Guoqian Wang, Feng He, Changpeng Liu, Jinying Ning. Ba/F3 NTRK cell panel, a powerful cell model for NTRK inhibitor discovery and development [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2019; 2019 Mar 29-Apr 3; Atlanta, GA. Philadelphia (PA): AACR; Cancer Res 2019;79(13 Suppl):Abstract nr 1926.

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