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1. L3MBTL1, a polycomb protein, promotes Osimertinib acquired resistance through epigenetic regulation of DNA damage response in lung adenocarcinoma

2. Pan-cancer analysis combined with experiments predicts NNMT as a therapeutic target for human cancers

3. Identification and Analysis of SND1 as an Oncogene and Prognostic Biomarker for Lung Adenocarcinoma

4. Neutrophil infiltration associated genes on the prognosis and tumor immune microenvironment of lung adenocarcinoma

5. Exploring the therapeutic potential of targeting polycomb repressive complex 2 in lung cancer

6. Case Report: ALK rearranged locally advanced lung adenocarcinoma showing inconsistent radiographic findings and pathological responses during neoadjuvant alectinib therapy

7. Construction of a circular RNA–microRNA–messenger RNA regulatory network of hsa_circ_0043256 in lung cancer by integrated analysis

8. LINC01798/miR-17-5p axis regulates ITGA8 and causes changes in tumor microenvironment and stemness in lung adenocarcinoma

9. Genomic analysis of TNF-related genes with prognosis and characterization of the tumor immune microenvironment in lung adenocarcinoma

10. Systematic pan-cancer analysis showed that RAD51AP1 was associated with immune microenvironment, tumor stemness, and prognosis

11. Immune Microenvironment Comparation Study between EGFR Mutant and EGFR Wild Type Lung Adenocarcinoma Patients Based on TCGA Database

12. Pyroptosis-Related LncRNA Signatures Correlate With Lung Adenocarcinoma Prognosis

13. Combining EGFR-TKI With SAHA Overcomes EGFR-TKI-Acquired Resistance by Reducing the Protective Autophagy in Non-Small Cell Lung Cancer

14. ARID1A, ARID1B, and ARID2 Mutations Serve as Potential Biomarkers for Immune Checkpoint Blockade in Patients With Non-Small Cell Lung Cancer

15. Neutrophil infiltration associated genes on the prognosis and tumor immune microenvironment of lung adenocarcinoma.

16. L3MBTL1, a polycomb protein, promotes Osimertinib Acquired resistance through Epigenetic Regulation of DNA damage response in lung adenocarcinoma

17. Development and Validation of a Combined Hypoxia and Immune Prognostic Classifier for Lung Adenocarcinoma

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