Mutational landscape determines sensitivity to PD-1 blockade in non–small cell lung cancer
Naiyer A. Rizvi,Naiyer A. Rizvi,Matthew D. Hellmann,Matthew D. Hellmann,Alexandra Snyder,Alexandra Snyder,Pia Kvistborg,Vladimir Makarov,Jonathan J. Havel,William Lee,Jianda Yuan,Phillip Wong,Teresa S. Ho,Martin L. Miller,Natasha Rekhtman,Andre L. Moreira,Fawzia Ibrahim,Cameron Bruggeman,Billel Gasmi,Roberta Zappasodi,Yuka Maeda,Chris Sander,Edward B. Garon,Taha Merghoub,Jedd D. Wolchok,Jedd D. Wolchok,Ton N. Schumacher,Timothy A. Chan,Timothy A. Chan +28 more
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TLDR
Treatment efficacy was associated with a higher number of mutations in the tumors, and a tumor-specific T cell response paralleled tumor regression in one patient, suggesting that the genomic landscape of lung cancers shapes response to anti–PD-1 therapy.Abstract:
Immune checkpoint inhibitors, which unleash a patient’s own T cells to kill tumors, are revolutionizing cancer treatment. To unravel the genomic determinants of response to this therapy, we used whole-exome sequencing of non–small cell lung cancers treated with pembrolizumab, an antibody targeting programmed cell death-1 (PD-1). In two independent cohorts, higher nonsynonymous mutation burden in tumors was associated with improved objective response, durable clinical benefit, and progression-free survival. Efficacy also correlated with the molecular smoking signature, higher neoantigen burden, and DNA repair pathway mutations; each factor was also associated with mutation burden. In one responder, neoantigen-specific CD8+ T cell responses paralleled tumor regression, suggesting that anti–PD-1 therapy enhances neoantigen-specific T cell reactivity. Our results suggest that the genomic landscape of lung cancers shapes response to anti–PD-1 therapy.read more
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Nivolumab versus Docetaxel in Advanced Nonsquamous Non–Small-Cell Lung Cancer
Hossein Borghaei,Luis Paz-Ares,Leora Horn,D. R. Spigel,M. Steins,Neal Ready,L.Q. Chow,Everett E. Vokes,Enriqueta Felip,Esther Holgado,F. Barlesi,M. Kohlhufl,Oscar Arrieta,Marco Angelo Burgio,J. Fayette,H. Lena,Elena Poddubskaya,David E. Gerber,Scott N. Gettinger,Charles M. Rudin,Naiyer A. Rizvi,L. Crina,G. R. Blumenschein,Scott J. Antonia,C. Dorange,C. T. Harbison,F. Graf Finckenstein,Julie R. Brahmer +27 more
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PD-1 Blockade in Tumors with Mismatch-Repair Deficiency
Dung T. Le,Jennifer N. Uram,Hao Wang,Bjarne Bartlett,Holly Kemberling,Aleksandra Eyring,Andrew D. Skora,Brandon Luber,Nilofer S. Azad,Daniel A. Laheru,Barbara A. Biedrzycki,Ross C. Donehower,Atif Zaheer,George A. Fisher,Todd S. Crocenzi,James J. Lee,Steven M. Duffy,Richard M. Goldberg,Richard M. Goldberg,Albert de la Chapelle,Albert de la Chapelle,Minori Koshiji,Feriyl Bhaijee,Thomas Huebner,Ralph H. Hruban,Laura D. Wood,Nathan Cuka,Drew M. Pardoll,Nickolas Papadopoulos,Kenneth W. Kinzler,Shibin Zhou,Toby C. Cornish,Janis M. Taube,Robert A. Anders,James R. Eshleman,Bert Vogelstein,Luis A. Diaz +36 more
TL;DR: This study showed that mismatch-repair status predicted clinical benefit of immune checkpoint blockade with pembrolizumab, and high somatic mutation loads were associated with prolonged progression-free survival.
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PD-1 and PD-L1 Immune Checkpoint Blockade to Treat Breast Cancer
Andreas D. Hartkopf,Florin-Andrei Taran,Markus Wallwiener,Christina B. Walter,Bernhard K. Krämer,Eva-Maria Grischke,Sara Y. Brucker +6 more
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Journal ArticleDOI
Pembrolizumab for the treatment of non-small cell lung cancer
Edward B. Garon,Naiyer A. Rizvi,Rina Hui,Natasha B. Leighl,Ani Sarkis Balmanoukian,Joseph Paul Eder,Amita Patnaik,Charu Aggarwal,Matthew A. Gubens,Leora Horn,Enric Carcereny,Myung-Ju Ahn,Enriqueta Felip,Jong-Seok Lee,Matthew D. Hellmann,Omid Hamid,Jonathan W. Goldman,Jean-Charles Soria,Marisa Dolled-Filhart,Ruth Z. Rutledge,Jin Zhang,Jared Lunceford,Reshma A. Rangwala,Gregory M. Lubiniecki,Charlotte Roach,Kenneth Emancipator,Leena Gandhi +26 more
TL;DR: Pembrolizumab had an acceptable side-effect profile and showed antitumor activity in patients with advanced non-small-cell lung cancer and PD-L1 expression in at least 50% of tumor cells correlated with improved efficacy of pembrolIZumab.
References
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Lba43antitumor activity of pembrolizumab (pembro; mk-3475) and correlation with programmed death ligand 1 (pd-l1) expression in a pooled analysis of patients (pts) with advanced non–small cell lung carcinoma (nsclc)
Edward B. Garon,Leena Gandhi,Naiyer A. Rizvi,Rina Hui,Ani Sarkis Balmanoukian,Amita Patnaik,Joseph Paul Eder,G.R. Blumenshein,Charu Aggarwal,J-C. Soria,M-J. Ahn,Matthew A. Gubens,S.S. Ramalingam,Elizabeth Johnson,H.-T. Arkenau,Gregory M. Lubiniecki,Jin Zhang,Ruth Z. Rutledge,Kenneth Emancipator,Natasha B. Leighl +19 more
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Journal ArticleDOI
The immunoprotective MHC II epitope of a chemically induced tumor harbors a unique mutation in a ribosomal protein
TL;DR: The mutated L11 epitope is shown to be an immunoprotective epitope in vivo by several criteria and adopted transfer of CD4+ clones into BALB/c mice renders the mice specifically resistant to Meth A sarcoma.
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