PURPOSE: Neuroblastoma, a common pediatric tumor of the sympathetic nervous system, is characterized by clinical heterogeneity. The Trk family neurotrophin receptors play an important role in this behavior. Expression of TrkA is associated with favorable clinical features and outcome, whereas TrkB expression is associated with an unfavorable prognosis. We wanted to determine if the Trk-selective inhibitor lestaurtinib had therapeutic efficacy in a preclinical neuroblastoma model. EXPERIMENTAL DESIGN: We performed intervention trials of lestaurtinib alone or in combination with other agents in TrkB-overexpressing neuroblastoma xenograft models. RESULTS: Lestaurtinib alone significantly inhibited tumor growth compared to vehicle-treated animals [P = 0.0004 for tumor size and P = 0.011 for event-free survival (EFS)]. Lestaurtinib also enhanced the antitumor efficacy of the combinations of topotecan plus cyclophosphamide (P < 0.0001 for size and P < 0.0001 for EFS) or irinotecan plus temozolomide (P = 0.011 for size and P = 0.012 for EFS). There was no additive benefit of combining either 13-cis-retinoic acid or fenretinide with lestaurtinib compared to lestaurtinib alone. There was dramatic growth inhibition combining lestaurtinib with bevacizumab (P < 0.0001), but this combination had substantial systemic toxicity. CONCLUSIONS: We show that lestaurtinib can inhibit the growth of neuroblastoma both in vitro and in vivo and can substantially enhance the efficacy of conventional chemotherapy, presumably by inhibition of the Trk/brain-derived neurotrophic factor autocrine survival pathway. It may also enhance the efficacy of selected biological agents, but further testing is required to rule out unanticipated toxicities. Our data support the incorporation of Trk inhibitors, such as lestaurtinib, in clinical trials of neuroblastoma or other tumors relying on Trk signaling pathways for survival.
PURPOSE:Neuroblastoma, a common pediatric tumor of the sympathetic nervous system, is characterized by clinical heterogeneity. The Trk family neurotrophin receptors play an important role in this behavior. Expression of TrkA is associated with favorable clinical features and outcome, whereas TrkB expression is associated with an unfavorable prognosis. We wanted to determine if the Trk-selective inhibitor lestaurtinib had therapeutic efficacy in a preclinical neuroblastoma model. EXPERIMENTAL DESIGN: We performed intervention trials of lestaurtinib alone or in combination with other agents in TrkB-overexpressing neuroblastoma xenograft models. RESULTS:Lestaurtinib alone significantly inhibited tumor growth compared to vehicle-treated animals [P = 0.0004 for tumor size and P = 0.011 for event-free survival (EFS)]. Lestaurtinib also enhanced the antitumor efficacy of the combinations of topotecan plus cyclophosphamide (P < 0.0001 for size and P < 0.0001 for EFS) or irinotecan plus temozolomide (P = 0.011 for size and P = 0.012 for EFS). There was no additive benefit of combining either 13-cis-retinoic acid or fenretinide with lestaurtinib compared to lestaurtinib alone. There was dramatic growth inhibition combining lestaurtinib with bevacizumab (P < 0.0001), but this combination had substantial systemic toxicity. CONCLUSIONS: We show that lestaurtinib can inhibit the growth of neuroblastoma both in vitro and in vivo and can substantially enhance the efficacy of conventional chemotherapy, presumably by inhibition of the Trk/brain-derived neurotrophic factor autocrine survival pathway. It may also enhance the efficacy of selected biological agents, but further testing is required to rule out unanticipated toxicities. Our data support the incorporation of Trk inhibitors, such as lestaurtinib, in clinical trials of neuroblastoma or other tumors relying on Trk signaling pathways for survival.
Authors: A E Evans; K D Kisselbach; D J Yamashiro; N Ikegaki; A M Camoratto; C A Dionne; G M Brodeur Journal: Clin Cancer Res Date: 1999-11 Impact factor: 12.531
Authors: J Thompson; E O George; C A Poquette; P J Cheshire; L B Richmond; S S de Graaf; M Ma; C F Stewart; P J Houghton Journal: Clin Cancer Res Date: 1999-11 Impact factor: 12.531
Authors: P J Houghton; C F Stewart; P J Cheshire; L B Richmond; M N Kirstein; C A Poquette; M Tan; H S Friedman; T P Brent Journal: Clin Cancer Res Date: 2000-10 Impact factor: 12.531
Authors: A Acheson; J C Conover; J P Fandl; T M DeChiara; M Russell; A Thadani; S P Squinto; G D Yancopoulos; R M Lindsay Journal: Nature Date: 1995-03-30 Impact factor: 49.962
Authors: A Nakagawara; M Arima-Nakagawara; N J Scavarda; C G Azar; A B Cantor; G M Brodeur Journal: N Engl J Med Date: 1993-03-25 Impact factor: 91.245
Authors: Garrett M Brodeur; Jane E Minturn; Ruth Ho; Anisha M Simpson; Radhika Iyer; Carly R Varela; Jennifer E Light; Venkatadri Kolla; Audrey E Evans Journal: Clin Cancer Res Date: 2009-05-05 Impact factor: 12.531
Authors: Jamie L Croucher; Radhika Iyer; Nanxin Li; Valentina Molteni; Jon Loren; W Perry Gordon; Tove Tuntland; Bo Liu; Garrett M Brodeur Journal: Cancer Chemother Pharmacol Date: 2014-11-14 Impact factor: 3.333
Authors: Radhika Iyer; Carly R Varela; Jane E Minturn; Ruth Ho; Anisha M Simpson; Jennifer E Light; Audrey E Evans; Huaqing Zhao; Kenneth Thress; Jeffrey L Brown; Garrett M Brodeur Journal: Cancer Chemother Pharmacol Date: 2012-05-24 Impact factor: 3.333
Authors: Varadha Balaji Venkadakrishnan; Adam D DePriest; Sangeeta Kumari; Dhirodatta Senapati; Salma Ben-Salem; Yixue Su; Giridhar Mudduluru; Qiang Hu; Eduardo Cortes; Elena Pop; James L Mohler; Gissou Azabdaftari; Kristopher Attwood; Rajal B Shah; Christina Jamieson; Scott M Dehm; Cristina Magi-Galluzzi; Eric Klein; Nima Sharifi; Song Liu; Hannelore V Heemers Journal: Oncogene Date: 2019-02-11 Impact factor: 9.867
Authors: Robin E Norris; Jane E Minturn; Garrett M Brodeur; John M Maris; Peter C Adamson Journal: Cancer Chemother Pharmacol Date: 2011-04-12 Impact factor: 3.333
Authors: Jane E Minturn; Audrey E Evans; Judith G Villablanca; Gregory A Yanik; Julie R Park; Suzanne Shusterman; Susan Groshen; Edward T Hellriegel; Debra Bensen-Kennedy; Katherine K Matthay; Garrett M Brodeur; John M Maris Journal: Cancer Chemother Pharmacol Date: 2011-02-22 Impact factor: 3.333
Authors: S Faraj; M Bahri; S Fougeray; A El Roz; J Fleurence; J Véziers; M D Leclair; E Thébaud; F Paris; S Birklé Journal: Oncoimmunology Date: 2017-09-21 Impact factor: 8.110