KRAS G12C in advanced NSCLC: Prevalence, co-mutations, and testing

被引:59
作者
Lim, Tony Kiat Hon [1 ]
Skoulidis, Ferdinandos [2 ]
Kerr, Keith M. [3 ]
Ahn, Myung-Ju [4 ]
Kapp, Joshua R. [5 ]
Soares, Fernando A. [6 ,7 ]
Yatabe, Yasushi [8 ]
机构
[1] Singapore Gen Hosp, Div Pathol, Singapore, Singapore
[2] Univ Texas MD Anderson Canc Ctr, Dept Thorac & Head & Neck Med Oncol, Houston, TX USA
[3] Univ Aberdeen, Med Sch, Dept Pathol, Aberdeen, Scotland
[4] Sungkyunkwan Univ, Sch Med, Dept Med, Samsung Med Ctr, Seoul, South Korea
[5] Amgen Europe GmbH, Rotkreuz, Switzerland
[6] DOr Inst Res & Educ IDOR, Sao Paulo, Brazil
[7] Univ Sao Paulo, Fac Dent, Sao Paulo, Brazil
[8] Natl Canc Ctr, Dept Diagnost Pathol, 5-1-1 Tsukiji,Chuo Ku, Tokyo 1040045, Japan
关键词
Clinical practice; Driver oncogene; Real -world evidence; Targeted therapy; Sotorasib; Adagrasib; CELL LUNG-CANCER; CLINICAL-PRACTICE; INTERNATIONAL-ASSOCIATION; KRAS MUTATIONS; RAS MUTATIONS; INHIBITORS; IMPACT; SUBTYPES; PROTEINS; EFFICACY;
D O I
10.1016/j.lungcan.2023.107293
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
KRAS is the most commonly mutated oncogene in advanced, non-squamous, non-small cell lung cancer (NSCLC) in Western countries. Of the various KRAS mutants, KRAS G12C is the most common variant (-40%), repre-senting 10-13% of advanced non-squamous NSCLC. Recent regulatory approvals of the KRASG12C-selective inhibitors sotorasib and adagrasib for patients with advanced or metastatic NSCLC harboring KRAS G12C have transformed KRAS into a druggable target. In this review, we explore the evolving role of KRAS from a prognostic to a predictive biomarker in advanced NSCLC, discussing KRAS G12C biology, real-world prevalence, clinical relevance of co-mutations, and approaches to molecular testing.Real-world evidence demonstrates significant geographic differences in KRAS G12C prevalence (8.9-19.5% in the US, 9.3-18.4% in Europe, 6.9-9.0% in Latin America, and 1.4-4.3% in Asia) in advanced NSCLC. Addi-tionally, the body of clinical data pertaining to KRAS G12C co-mutations such as STK11, KEAP1, and TP53 is increasing. In real-world evidence, KRAS G12C-mutant NSCLC was associated with STK11, KEAP1, and TP53 co-mutations in 10.3-28.0%, 6.3-23.0%, and 17.8-50.0% of patients, respectively.Whilst sotorasib and adagrasib are currently approved for use in the second-line setting and beyond for pa-tients with advanced/metastatic NSCLC, testing and reporting of the KRAS G12C variant should be included in routine biomarker testing prior to first-line therapy. KRAS G12C test results should be clearly documented in patients' health records for actionability at progression. Where available, next-generation sequencing is rec-ommended to facilitate simultaneous testing of potentially actionable biomarkers in a single run to conserve tissue. Results from molecular testing should inform clinical decisions in treating patients with KRAS G12C- mutated advanced NSCLC.
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页数:14
相关论文
共 120 条
[1]   AACR Project GENIE: Powering Precision Medicine through an International Consortium [J].
Andre, Fabrice ;
Arnedos, Monica ;
Baras, Alexander S. ;
Baselga, Jose ;
Bedard, Philippe L. ;
Berger, Michael F. ;
Bierkens, Mariska ;
Calvo, Fabien ;
Cerami, Ethan ;
Chakravarty, Debyani ;
Dang, Kristen K. ;
Davidson, Nancy E. ;
Del Vecchio, Fitz Catherine ;
Dogan, Semih ;
DuBois, Raymond N. ;
Ducar, Matthew D. ;
Futreal, P. Andrew ;
Gao Jianjiong ;
Garcia, Francisco ;
Gardos, Stu ;
Gocke, Christopher D. ;
Gross, Benjamin E. ;
Guinney, Justin ;
Heins, Zachary J. ;
Hintzen, Stephanie ;
Horlings, Hugo ;
Hudecek, Jan ;
Hyman, David M. ;
Kamel-Reid, Suzanne ;
Kandoth, Cyriac ;
Kinyua, Walter ;
Kumari, Priti ;
Kundra, Ritika ;
Ladanyi, Marc ;
Lefebvre, Celine ;
LeNoue-Newton, Michele L. ;
Lepisto, Eva M. ;
Levy, Mia A. ;
Lindeman, Neal, I ;
Lindsay, James ;
Liu, David ;
Lu Zhibin ;
MacConaill, Laura E. ;
Ian, Maurer ;
Maxwell, David S. ;
Meijer, Gerrit A. ;
Meric-Bernstam, Funda ;
Micheel, Christine M. ;
Miller, Clinton ;
Mills, Gordon .
CANCER DISCOVERY, 2017, 7 (08) :818-831
[2]  
[Anonymous], 2023, DROPPED REF
[3]   Molecular profile of KRAS G12C-mutant colorectal and non-small-cell lung cancer [J].
Araujo, Luiz Henrique ;
Souza, Bianca Mendes ;
Leite, Laura Rabelo ;
Parma, Sabrina A. F. ;
Lopes, Natalia P. ;
Malta, Frederico S. V. ;
Freire, Maira C. M. .
BMC CANCER, 2021, 21 (01)
[4]   Treatment Outcomes and Clinical Characteristics of Patients with KRAS-G12C-Mutant Non-Small Cell Lung Cancer [J].
Arbour, Kathryn C. ;
Rizvi, Hira ;
Plodkowski, Andrew J. ;
Hellmann, Matthew D. ;
Knezevic, Andrea ;
Heller, Glenn ;
Yu, Helena A. ;
Ladanyi, Marc ;
Kris, Mark G. ;
Arcila, Maria E. ;
Rudin, Charles M. ;
Lito, Piro ;
Riely, Gregory J. .
CLINICAL CANCER RESEARCH, 2021, 27 (08) :2209-2215
[5]   Effects of Co-occurring Genomic Alterations on Outcomes in Patients with KRAS-Mutant Non-Small Cell Lung Cancer [J].
Arbour, Kathryn C. ;
Jordan, Emmett ;
Kim, Hyunjae Ryan ;
Dienstag, Jordan ;
Yu, Helena A. ;
Sanchez-Vega, Francisco ;
Lito, Piro ;
Berger, Michael ;
Solit, David B. ;
Hellmann, Matthew ;
Kris, Mark G. ;
Rudin, Charles M. ;
Ni, Ai ;
Arcila, Maria ;
Ladanyi, Marc ;
Riely, Gregory J. .
CLINICAL CANCER RESEARCH, 2018, 24 (02) :334-340
[6]   Impact of KRAS mutation subtype and concurrent pathogenic mutations on non-small cell lung cancer outcomes [J].
Aredo, Jacqueline, V ;
Padda, Sukhmani K. ;
Kunder, Christian A. ;
Han, Summer S. ;
Neal, Joel W. ;
Shrager, Joseph B. ;
Wakelee, Heather A. .
LUNG CANCER, 2019, 133 :144-150
[7]   A Small Molecule RAS-Mimetic Disrupts RAS Association with Effector Proteins to Block Signaling [J].
Athuluri-Divakar, Sai Krishna ;
Vasquez-Del Carpio, Rodrigo ;
Dutta, Kaushik ;
Baker, Stacey J. ;
Cosenza, Stephen C. ;
Basu, Indranil ;
Gupta, Yogesh K. ;
Reddy, M. V. Ramana ;
Ueno, Lynn ;
Hart, Jonathan R. ;
Vogt, Peter K. ;
Mulholland, David ;
Guha, Chandan ;
Aggarwal, Aneel K. ;
Reddy, E. Premkumar .
CELL, 2016, 165 (03) :643-655
[8]   Acquired Resistance to KRASG12C Inhibition in Cancer [J].
Awad, M. M. ;
Liu, S. ;
Rybkin, I. I. ;
Arbour, K. C. ;
Dilly, J. ;
Zhu, V. W. ;
Johnson, M. L. ;
Heist, R. S. ;
Patil, T. ;
Riely, G. J. ;
Jacobson, J. O. ;
Yang, X. ;
Persky, N. S. ;
Root, D. E. ;
Lowder, K. E. ;
Feng, H. ;
Zhang, S. S. ;
Haigis, K. M. ;
Hung, Y. P. ;
Sholl, L. M. ;
Wolpin, B. M. ;
Wiese, J. ;
Christiansen, J. ;
Lee, J. ;
Schrock, A. B. ;
Lim, L. P. ;
Garg, K. ;
Li, M. ;
Engstrom, L. D. ;
Waters, L. ;
Lawson, J. D. ;
Olson, P. ;
Lito, P. ;
Ou, S. -H. I. ;
Christensen, J. G. ;
Janne, P. A. ;
Aguirre, A. J. .
NEW ENGLAND JOURNAL OF MEDICINE, 2021, 384 (25) :2382-2393
[9]  
Bareschino Maria Anna, 2011, J Thorac Dis, V3, P122, DOI 10.3978/j.issn.2072-1439.2010.12.08
[10]   The potential utility of re-mining results of somatic mutation testing: KRAS status in lung adenocarcinoma [J].
Biernacka, Anna ;
Tsongalis, Peter D. ;
Peterson, Jason D. ;
de Abreu, Francine B. ;
Black, Candice C. ;
Gutmann, Edward J. ;
Liu, Xiaoying ;
Tafe, Laura J. ;
Amos, Christopher I. ;
Tsongalis, Gregory J. .
CANCER GENETICS, 2016, 209 (05) :195-198