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Tony Mok

South China University of Technology · HK
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Area of research
Pulmonary and Respiratory Medicine · Oncology
Research interest
focuses on biomarker and molecular targeted therapy in lung cancer. Professor Mok was the Principal Investigator and first author on the landmark IRESSA® Pan-Asia Study (IPASS), which was the first study that confirmed the application of precision medicine for advanced lung cancer. He has also led and co-led multiple studies including the FASTACT 2, IMPRESS, ARCHER 1050, ALEX and AURA 3. These projects address various aspects on management of EGFR mutation positive lung cancer, and basically have defined the current practice. He dedicates his work on precision medicine for lung cancer by also engaging in clinical research on ALK positive lung cancer and immunotherapy. The series of clinical trials, led or co-led by Professor Mok, have defined precision medicine for lung cancer. His work ha
h-index
131
citations
106,749
works
1,081
NIH funding
primary concept
Medicine
email

Recent publications

Alectinib versus crizotinib in previously untreated ALK-positive advanced non-small cell lung cancer: final overall survival analysis of the phase III ALEX study.
2026cited by 5position: selecteddoi
Global advances and future directions in lung cancer care: expert consensus and strategic priorities
ESMO Open 2026cited by 4position: selecteddoi
Time-of-day immunochemotherapy in non-small cell lung cancer: a randomized phase 3 trial.
2026cited by 2position: contributordoi
First-Line Sacituzumab Govitecan Plus Pembrolizumab and Carboplatin in Metastatic Non-Small Cell Lung Cancer: Nonsquamous and Squamous Cohorts of the EVOKE-02 Study.
2026cited by 0position: contributordoi
Aumolertinib with carboplatin-pemetrexed versus aumolertinib for nonsmall cell lung cancer with EGFR and concomitant tumor suppressor genes (ACROSS2): An open-label, multicenter, randomized phase 3 study.
2026cited by 0position: contributordoi
Five-year outcomes of pembrolizumab versus chemotherapy in Chinese patients with non-small-cell lung cancer and programmed cell death ligand 1 tumor proportion score ≥1%: KEYNOTE-042 China study.
2026cited by 0position: selecteddoi
Patritumab deruxtecan (HER3-DXd) in resistant <i>EGFR</i> -mutated ( <i>EGFR</i> m) advanced non-small cell lung cancer (NSCLC) after a third-generation EGFR TKI: The phase 3 HERTHENA-Lung02 study.
Journal of Clinical Oncology 2025cited by 28position: firstdoi
First-Line Mobocertinib Versus Platinum-Based Chemotherapy in Patients With <i>EGFR</i> Exon 20 Insertion–Positive Metastatic Non–Small Cell Lung Cancer in the Phase III EXCLAIM-2 Trial
Journal of Clinical Oncology 2025cited by 22position: lastdoi
First-Line Mobocertinib Versus Platinum-Based Chemotherapy in Patients With <i>EGFR</i> Exon 20 Insertion-Positive Metastatic Non-Small Cell Lung Cancer in the Phase III EXCLAIM-2 Trial.
2025cited by 19position: contributordoi
D3S-001 in advanced solid tumors with KRASG12C mutations: a phase 1 trial
Nature Medicine 2025cited by 15position: lastdoi
D3S-001 in advanced solid tumors with KRAS&lt;sup&gt;G12C&lt;/sup&gt; mutations: a phase 1 trial.
2025cited by 12position: contributordoi
Savolitinib (Savo) combined with osimertinib (osi) versus chemotherapy (chemo) in EGFR-mutant (EGFRm) and <i>MET</i> -amplification ( <i>MET</i> amp) advanced NSCLC after disease progression (PD) on EGFR tyrosine kinase inhibitor (TKI): Results from a randomized phase 3 SACHI study.
Journal of Clinical Oncology 2025cited by 7position: middledoi
The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials.
2025cited by 3position: contributordoi
Precise diagnosis of small invasive pulmonary nodules driven by single-cell immune signatures in peripheral blood.
2025cited by 1position: contributordoi
Figure S6 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure S5 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure 2 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure 1 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure S1 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure 3 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Supplementary Data tables from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure S3 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure S11 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure S2 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure S4 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure S9 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure S3 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure S1 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure S9 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi
Figure 4 from The Impact of the Tumor Microenvironment on the Effect of IL-1β Blockade in NSCLC: Biomarker Analyses from CANOPY-1 and CANOPY-N Trials
2025cited by 0position: contributordoi

Grants

No grants ingested yet.

Frequent collaborators

Yi‐Long Wu · China Agricultural University55 papers (2013–2026) · 53 papers (2020–2026)Shun Lü · Central South University42 papers (2016–2025)Byoung Chul Cho · Université Grenoble Alpes40 papers (2019–2026)Sun Min Lim · Yonsei University33 papers (2024–2024) · 33 papers (2024–2024)Mi Ra Yu · Severance Hospital33 papers (2024–2024)Jing Zhang · Dalian Medical University33 papers (2024–2024)Haopeng Rui · WuXi AppTec (China)33 papers (2024–2024)Zhi Jian Chen · Shanghai Center For Bioinformation Technology33 papers (2024–2024)Wenqian Wang · 33 papers (2024–2024)Jingtao Lu · Zhejiang Hisun Pharmaceutical (China)33 papers (2024–2024)Cheng Chen · Shanghai Center For Bioinformation Technology33 papers (2024–2024)Jia Wang · Hunan Normal University33 papers (2024–2024)Solange Peters · Hôpital Beau-Séjour26 papers (2017–2026)James Chih‐Hsin Yang · National Institutes of Health22 papers (2015–2024)Byoung Chul Cho · Université Grenoble Alpes16 papers (2018–2025)Pasi A. Jänne · Harvard University13 papers (2012–2026)Gilberto de Castro · Twitter (United States)12 papers (2019–2023) · 11 papers (2019–2026)
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