Literature DB >> 27245569

Comprehensive Genomic Profiling Identifies a Subset of Crizotinib-Responsive ALK-Rearranged Non-Small Cell Lung Cancer Not Detected by Fluorescence In Situ Hybridization.

Siraj M Ali1, Thomas Hensing2, Alexa B Schrock3, Justin Allen3, Eric Sanford3, Kyle Gowen3, Atul Kulkarni4, Jie He3, James H Suh3, Doron Lipson3, Julia A Elvin3, Roman Yelensky3, Zachary Chalmers3, Juliann Chmielecki3, Nir Peled5, Samuel J Klempner6, Kashif Firozvi7, Garrett M Frampton3, Julian R Molina8, Smitha Menon9, Julie R Brahmer10, Heber MacMahon11, Jan Nowak12, Sai-Hong Ignatius Ou6, Marjorie Zauderer13, Marc Ladanyi13, Maureen Zakowski13, Neil Fischbach14, Jeffrey S Ross15, Phil J Stephens3, Vincent A Miller3, Heather Wakelee16, Shridar Ganesan17, Ravi Salgia18.   

Abstract

INTRODUCTION: For patients with non-small cell lung cancer (NSCLC) to benefit from ALK inhibitors, sensitive and specific detection of ALK genomic rearrangements is needed. ALK break-apart fluorescence in situ hybridization (FISH) is the U.S. Food and Drug Administration approved and standard-of-care diagnostic assay, but identification of ALK rearrangements by other methods reported in NSCLC cases that tested negative for ALK rearrangements by FISH suggests a significant false-negative rate. We report here a large series of NSCLC cases assayed by hybrid-capture-based comprehensive genomic profiling (CGP) in the course of clinical care.
MATERIALS AND METHODS: Hybrid-capture-based CGP using next-generation sequencing was performed in the course of clinical care of 1,070 patients with advanced lung cancer. Each tumor sample was evaluated for all classes of genomic alterations, including base-pair substitutions, insertions/deletions, copy number alterations and rearrangements, as well as fusions/rearrangements.
RESULTS: A total of 47 patients (4.4%) were found to harbor ALK rearrangements, of whom 41 had an EML4-ALK fusion, and 6 had other fusion partners, including 3 previously unreported rearrangement events: EIF2AK-ALK, PPM1B-ALK, and PRKAR1A-ALK. Of 41 patients harboring ALK rearrangements, 31 had prior FISH testing results available. Of these, 20 were ALK FISH positive, and 11 (35%) were ALK FISH negative. Of the latter 11 patients, 9 received crizotinib based on the CGP results, and 7 achieved a response with median duration of 17 months.
CONCLUSION: Comprehensive genomic profiling detected canonical ALK rearrangements and ALK rearrangements with noncanonical fusion partners in a subset of patients with NSCLC with previously negative ALK FISH results. In this series, such patients had durable responses to ALK inhibitors, comparable to historical response rates for ALK FISH-positive cases. IMPLICATIONS FOR PRACTICE: Comprehensive genomic profiling (CGP) that includes hybrid capture and specific baiting of intron 19 of ALK is a highly sensitive, alternative method for identification of drug-sensitive ALK fusions in patients with non-small cell lung cancer (NSCLC) who had previously tested negative using standard ALK fluorescence in situ hybridization (FISH) diagnostic assays. Given the proven benefit of treatment with crizotinib and second-generation ALK inhibitors in patients with ALK fusions, CGP should be considered in patients with NSCLC, including those who have tested negative for other alterations, including negative results using ALK FISH testing. ©AlphaMed Press.

Entities:  

Keywords:  ALK; Crizotinib; Fluorescence in situ hybridization; Fusion; Genomic profiling

Mesh:

Substances:

Year:  2016        PMID: 27245569      PMCID: PMC4912370          DOI: 10.1634/theoncologist.2015-0497

Source DB:  PubMed          Journal:  Oncologist        ISSN: 1083-7159


  15 in total

1.  Identification of a novel HIP1-ALK fusion variant in Non-Small-Cell Lung Cancer (NSCLC) and discovery of ALK I1171 (I1171N/S) mutations in two ALK-rearranged NSCLC patients with resistance to Alectinib.

Authors:  Sai-Hong Ignatius Ou; Samuel J Klempner; Joel R Greenbowe; Michele Azada; Alexa B Schrock; Siraj M Ali; Jeffrey S Ross; Philip J Stephens; Vincent A Miller
Journal:  J Thorac Oncol       Date:  2014-12       Impact factor: 15.609

Review 2.  New targetable oncogenes in non-small-cell lung cancer.

Authors:  Geoffrey R Oxnard; Adam Binder; Pasi A Jänne
Journal:  J Clin Oncol       Date:  2013-02-11       Impact factor: 44.544

Review 3.  Genomic alterations in lung adenocarcinoma.

Authors:  Siddhartha Devarakonda; Daniel Morgensztern; Ramaswamy Govindan
Journal:  Lancet Oncol       Date:  2015-07       Impact factor: 41.316

Review 4.  Refining the treatment of NSCLC according to histological and molecular subtypes.

Authors:  Anish Thomas; Stephen V Liu; Deepa S Subramaniam; Giuseppe Giaccone
Journal:  Nat Rev Clin Oncol       Date:  2015-05-12       Impact factor: 66.675

5.  First-line crizotinib versus chemotherapy in ALK-positive lung cancer.

Authors:  Benjamin J Solomon; Tony Mok; Dong-Wan Kim; Yi-Long Wu; Kazuhiko Nakagawa; Tarek Mekhail; Enriqueta Felip; Federico Cappuzzo; Jolanda Paolini; Tiziana Usari; Shrividya Iyer; Arlene Reisman; Keith D Wilner; Jennifer Tursi; Fiona Blackhall
Journal:  N Engl J Med       Date:  2014-12-04       Impact factor: 91.245

6.  Acquired resistance of EGFR-mutant lung adenocarcinomas to afatinib plus cetuximab is associated with activation of mTORC1.

Authors:  Valentina Pirazzoli; Caroline Nebhan; Xiaoling Song; Anna Wurtz; Zenta Walther; Guoping Cai; Zhongming Zhao; Peilin Jia; Elisa de Stanchina; Erik M Shapiro; Molly Gale; Ruonan Yin; Leora Horn; David P Carbone; Philip J Stephens; Vincent Miller; Scott Gettinger; William Pao; Katerina Politi
Journal:  Cell Rep       Date:  2014-05-09       Impact factor: 9.423

7.  Differential protein stability and ALK inhibitor sensitivity of EML4-ALK fusion variants.

Authors:  Johannes M Heuckmann; Hyatt Balke-Want; Florian Malchers; Martin Peifer; Martin L Sos; Mirjam Koker; Lydia Meder; Christine M Lovly; Lukas C Heukamp; William Pao; Ralf Küppers; Roman K Thomas
Journal:  Clin Cancer Res       Date:  2012-08-21       Impact factor: 12.531

8.  Development and validation of a clinical cancer genomic profiling test based on massively parallel DNA sequencing.

Authors:  Garrett M Frampton; Alex Fichtenholtz; Geoff A Otto; Kai Wang; Sean R Downing; Jie He; Michael Schnall-Levin; Jared White; Eric M Sanford; Peter An; James Sun; Frank Juhn; Kristina Brennan; Kiel Iwanik; Ashley Maillet; Jamie Buell; Emily White; Mandy Zhao; Sohail Balasubramanian; Selmira Terzic; Tina Richards; Vera Banning; Lazaro Garcia; Kristen Mahoney; Zac Zwirko; Amy Donahue; Himisha Beltran; Juan Miguel Mosquera; Mark A Rubin; Snjezana Dogan; Cyrus V Hedvat; Michael F Berger; Lajos Pusztai; Matthias Lechner; Chris Boshoff; Mirna Jarosz; Christine Vietz; Alex Parker; Vincent A Miller; Jeffrey S Ross; John Curran; Maureen T Cronin; Philip J Stephens; Doron Lipson; Roman Yelensky
Journal:  Nat Biotechnol       Date:  2013-10-20       Impact factor: 54.908

9.  Crizotinib versus chemotherapy in advanced ALK-positive lung cancer.

Authors:  Alice T Shaw; Dong-Wan Kim; Kazuhiko Nakagawa; Takashi Seto; Lucio Crinó; Myung-Ju Ahn; Tommaso De Pas; Benjamin Besse; Benjamin J Solomon; Fiona Blackhall; Yi-Long Wu; Michael Thomas; Kenneth J O'Byrne; Denis Moro-Sibilot; D Ross Camidge; Tony Mok; Vera Hirsh; Gregory J Riely; Shrividya Iyer; Vanessa Tassell; Anna Polli; Keith D Wilner; Pasi A Jänne
Journal:  N Engl J Med       Date:  2013-06-01       Impact factor: 91.245

Review 10.  Tyrosine kinase gene rearrangements in epithelial malignancies.

Authors:  Alice T Shaw; Peggy P Hsu; Mark M Awad; Jeffrey A Engelman
Journal:  Nat Rev Cancer       Date:  2013-10-17       Impact factor: 60.716

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  45 in total

Review 1.  ALK alterations and inhibition in lung cancer.

Authors:  Tri Le; David E Gerber
Journal:  Semin Cancer Biol       Date:  2016-09-13       Impact factor: 15.707

2.  Liquid biopsy in the practice of neo-oncology.

Authors:  Smadar Geva; Laila C Roisman; Nir Peled
Journal:  J Thorac Dis       Date:  2016-10       Impact factor: 2.895

3.  Clinical Utility of Cell-Free DNA for the Detection of ALK Fusions and Genomic Mechanisms of ALK Inhibitor Resistance in Non-Small Cell Lung Cancer.

Authors:  Caroline E McCoach; Collin M Blakely; Kimberly C Banks; Benjamin Levy; Ben M Chue; Victoria M Raymond; Anh T Le; Christine E Lee; Joseph Diaz; Saiama N Waqar; William T Purcell; Dara L Aisner; Kurtis D Davies; Richard B Lanman; Alice T Shaw; Robert C Doebele
Journal:  Clin Cancer Res       Date:  2018-03-29       Impact factor: 12.531

4.  Genomic heterogeneity of ALK fusion breakpoints in non-small-cell lung cancer.

Authors:  Jason N Rosenbaum; Ryan Bloom; Jason T Forys; Jeff Hiken; Jon R Armstrong; Julie Branson; Samantha McNulty; Priya D Velu; Kymberlie Pepin; Haley Abel; Catherine E Cottrell; John D Pfeifer; Shashikant Kulkarni; Ramaswamy Govindan; Eric Q Konnick; Christina M Lockwood; Eric J Duncavage
Journal:  Mod Pathol       Date:  2018-01-12       Impact factor: 7.842

Review 5.  Targeting ALK: Precision Medicine Takes on Drug Resistance.

Authors:  Jessica J Lin; Gregory J Riely; Alice T Shaw
Journal:  Cancer Discov       Date:  2017-01-25       Impact factor: 39.397

Review 6.  TRK Inhibition: A New Tumor-Agnostic Treatment Strategy.

Authors:  Shivaani Kummar; Ulrik N Lassen
Journal:  Target Oncol       Date:  2018-10       Impact factor: 4.493

7.  Impact of EML4-ALK Variant on Resistance Mechanisms and Clinical Outcomes in ALK-Positive Lung Cancer.

Authors:  Jessica J Lin; Viola W Zhu; Satoshi Yoda; Beow Y Yeap; Alexa B Schrock; Ibiayi Dagogo-Jack; Nicholas A Jessop; Ginger Y Jiang; Long P Le; Kyle Gowen; Philip J Stephens; Jeffrey S Ross; Siraj M Ali; Vincent A Miller; Melissa L Johnson; Christine M Lovly; Aaron N Hata; Justin F Gainor; Anthony J Iafrate; Alice T Shaw; Sai-Hong Ignatius Ou
Journal:  J Clin Oncol       Date:  2018-01-26       Impact factor: 44.544

8.  ALK Fusions in a Wide Variety of Tumor Types Respond to Anti-ALK Targeted Therapy.

Authors:  Jeffrey S Ross; Siraj M Ali; Omotayo Fasan; Jared Block; Sumanta Pal; Julia A Elvin; Alexa B Schrock; James Suh; Sahar Nozad; Sungeun Kim; Hwa Jeong Lee; Christine E Sheehan; David M Jones; Jo-Anne Vergilio; Shakti Ramkissoon; Eric Severson; Sugganth Daniel; David Fabrizio; Garrett Frampton; Vince A Miller; Philip J Stephens; Laurie M Gay
Journal:  Oncologist       Date:  2017-10-27

9.  Comparison of next-generation sequencing and immunohistochemistry analysis for targeted therapy-related genomic status in lung cancer patients.

Authors:  Lin Nong; Zhenzhen Zhang; Yan Xiong; Yalin Zheng; Xin Li; Dong Li; Qiye He; Ting Li
Journal:  J Thorac Dis       Date:  2019-12       Impact factor: 2.895

10.  Comprehensive NGS Panel Validation for the Identification of Actionable Alterations in Adult Solid Tumors.

Authors:  Paula Martínez-Fernández; Patricia Pose; Raquel Dolz-Gaitón; Arantxa García; Inmaculada Trigo-Sánchez; Enrique Rodríguez-Zarco; MJose Garcia-Ruiz; Ibon Barba; Marta Izquierdo-García; Jennifer Valero-Garcia; Carlos Ruiz; Marián Lázaro; Paula Carbonell; Pablo Gargallo; Carlos Méndez; Juan José Ríos-Martín; Alberto Palmeiro-Uriach; Natalia Camarasa-Lillo; Jerónimo Forteza-Vila; Inés Calabria
Journal:  J Pers Med       Date:  2021-04-29
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