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Xinchun Huang

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Open access Jul 2026

Aristolochic acid I accelerates lung adenocarcinoma progression coupled with the upregulation of core oncogenic networks: an integrated network toxicology and experimental study

Background Aristolochic Acid I (AAI) is a potent nephrotoxin and Group 1 carcinogen. Despite stringent regulatory restrictions, AAI-containing herbal remedies are still sporadically used to treat respiratory symptoms, presenting a previously underappreciated exposure risk for patients with lung adenocarcinoma (LUAD). However, the specific tumor-promoting effects of AAI on preexisting LUAD remain to be fully elucidated. Methods In this study, we integrated network toxicology, TCGA transcriptomic analysis, and molecular docking to identify core oncogenic networks potentially affected by AAI. The associated pro-tumor phenotypes and transcriptional regulatory abnormalities were subsequently investigated through a series of in vitro and in vivo experiments. Results Network analysis and TCGA data mining identified a cluster of seven hub genes—including ERBB2, SERPINE1, CCNA2, and CHEK1—that are crucial to LUAD progression and significantly associated with poor clinical prognosis. Molecular docking simulations suggested potential binding affinities between AAI and these target proteins. Functional assays demonstrated that acute AAI exposure significantly accelerated the proliferation, migration, and invasion of LUAD cell lines (PC9 and NCI-H1299) in vitro, while promoting macroscopic xenograft tumor growth in vivo. The RT-qPCR and WB results showed that AAI exposure was accompanied by an increase in the expression of core genes. Conclusion Our findings suggest that, beyond its established chronic mutagenic toxicity, AAI may act as a potent tumor promoter in LUAD. By potentially influencing key oncogenic networks, AAI accelerates the malignant progression of LUAD, underscoring the severe clinical hazards of AAI exposure in patients with preexisting lung malignancies.

Linchuan Mo, Fenglei Yu, Muyun Peng et al. · 0 citations
Review Open access Jul 2026

Research progress of small molecule targeted drugs for non-small cell lung cancer

Non-small cell lung cancer (NSCLC) constitutes approximately 85% of all lung cancer cases and remains a major clinical challenge with a poor overall prognosis. Molecular targeted therapy has thus emerged as a cornerstone of its treatment. This review summarizes the research progress of advances in small-molecule targeted agents against major driver oncogenes in NSCLC, including epidermal growth factor receptor (EGFR), anaplastic lymphoma kinase (ALK), and Kirsten rat sarcoma viral oncogene homolog (KRAS). We elaborate on the mechanism of action, clinical efficacy and treatment-related adverse events (TRAEs) of each generation of inhibitors, while updating the developmental status of innovative therapies and emerging. Notably, this article further integrates clinical data of investigational small-molecule targeted drugs that address emerging oncogenic drivers such as rat sarcoma viral oncogene homolog (RAS), human epidermal growth factor receptor 2 (HER2), and v-src avian sarcoma viral oncogene homolog (SRC), which have demonstrated promising clinical activity in early-phase trials. These findings highlight potential avenues for future development of NSCLC-targeted therapies. Despite iterative optimization across multiple generations, current targeted drugs for NSCLC still face prominent limitations, including acquired drug resistance and insufficient penetration across the blood-brain barrier (BBB). Moving forward, future research should prioritize accelerating the clinical translation of investigational drugs, exploring combination treatment regimens, identifying novel molecular targets, and optimizing the overall system of molecular targeted therapy. These efforts will help further improve clinical outcomes for patients with NSCLC.

Tingxiang Qiu, Xinchun Huang · 0 citations