Shun-Qing, Liang

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Journal Article

Yang, Haitang; Gao, Yanyun; Xu, Duo; Xu, Ke; Shun-Qing, Liang; Yang, Zhang; Scherz, Amina; Hall, Sean R R; Forster, Stefan; Berezowska, Sabina; Yao, Feng; Ochsenbein, Adrian F; Marti, Thomas M; Kocher, Gregor J; Schmid, Ralph A; Dorn, Patrick; Peng, Ren-Wang (2023). MEK1 drives oncogenic signaling and interacts with PARP1 for genomic and metabolic homeostasis in malignant pleural mesothelioma. Cell death discovery, 9(1), p. 55. Nature 10.1038/s41420-023-01307-2

Yang, Zhang; Shun-Qing, Liang; Zhao, Liang; Yang, Haitang; Marti, Thomas M; Hegedüs, Balazs; Gao, Yanyun; Zheng, Bin; Chen, Chun; Wang, Wenxiang; Dorn, Patrick; Kocher, Gregor J; Schmid, Ralph A; Peng, Ren-Wang (2022). Metabolic synthetic lethality by targeting NOP56 and mTOR in KRAS-mutant lung cancer. Journal of experimental & clinical cancer research, 41(1), p. 25. BioMed Central 10.1186/s13046-022-02240-5

Xu, Duo; Shun-Qing, Liang; Yang, Haitang; Bruggmann, Rémy; Berezowska, Sabina; Zhang, Yang; Marti, Thomas; Hall, Sean Ralph Robert; Gao, Yanyun; Kocher, Gregor J.; Schmid, Ralph A.; Peng, Ren-Wang (2020). CRISPR screening identifies WEE1 as a combination target for standard chemotherapy in malignant pleural mesothelioma. Molecular cancer therapeutics, 19(2), pp. 661-672. American Association for Cancer Research AACR 10.1158/1535-7163.MCT-19-0724

Xu, Duo; Yang, Haitang; Zhang, Yang; Berezowska, Sabina; Gao, Yanyun; Shun-Qing, Liang; Marti, Thomas M.; Hall, Sean R. R.; Dorn, Patrick; Kocher, Gregor J.; Schmid, Ralph A.; Peng, Ren-Wang (2019). Endoplasmic Reticulum Stress Signaling as a Therapeutic Target in Malignant Pleural Mesothelioma. Cancers, 11(10) MDPI AG 10.3390/cancers11101502

Yang, Haitang; Shun-Qing, Liang; Xu, Duo; Zhang, Yang; Marti, Thomas M.; Gao, Yanyun; Kocher, Gregor J.; Zhao, Heng; Schmid, Ralph A.; Peng, Ren-Wang (2019). HSP90/AXL/eIF4E-regulated unfolded protein response as an acquired vulnerability in drug-resistant KRAS-mutant lung cancer. Oncogenesis, 8(9), p. 45. Springer Nature 10.1038/s41389-019-0158-7

Shun-Qing, Liang; Bührer, Elias; Berezowska, Sabina Anna; Marti, Thomas; Xu, Duo; Froment, Laurène; Yang, Haitang; Hall, Sean; Vassella, Erik; Zhang, Yang; Kocher, Gregor; Amrein, Michael Alex; Riether, Carsten; Ochsenbein, Adrian; Schmid, Ralph; Peng, Ren-Wang (2019). mTOR mediates a mechanism of resistance to chemotherapy and defines a rational combination strategy to treat KRAS-mutant lung cancer. Oncogene, 38(5), pp. 622-636. Nature Publishing Group 10.1038/s41388-018-0479-6

Yang, Haitang; Shun-Qing, Liang; Schmid, Ralph A.; Peng, Ren-Wang (2019). New Horizons in KRAS-Mutant Lung Cancer: Dawn After Darkness. Frontiers in oncology, 9, p. 953. Frontiers Research Foundation 10.3389/fonc.2019.00953

Yang, Haitang; Xu, Jianlin; Yao, Feng; Shun-Qing, Liang; Zhao, Heng (2018). Analysis of unexpected small cell lung cancer following surgery as the primary treatment. Journal of cancer research and clinical oncology, 144(12), pp. 2441-2447. Springer 10.1007/s00432-018-2766-6

Xu, Duo; Shun-Qing, Liang; Yang, Haitang; Lüthi, Ursina; Riether, Carsten; Berezowska, Sabina Anna; Marti, Thomas; Hall, Sean; Bruggmann, Rémy; Kocher, Gregor; Schmid, Ralph; Peng, Ren-Wang (2018). Increased sensitivity to apoptosis upon endoplasmic reticulum stress-induced activation of the unfolded protein response in chemotherapy-resistant malignant pleural mesothelioma. British journal of cancer, 119(1), pp. 65-75. Nature Publishing Group 10.1038/s41416-018-0145-3

Shun-Qing, Liang; Marti, Thomas; Dorn, Patrick; Froment, Laurène; Hall, Sean; Berezowska, Sabina Anna; Kocher, Gregor; Schmid, Ralph; Peng, Ren-Wang (2016). 18P Epithelial-to-mesenchymal transition (EMT) is required for resistance to anti-folate chemotherapy in lung cancer. Journal of thoracic oncology, 11(4Suppl), S63-S63. Elsevier 10.1016/S1556-0864(16)30132-0

Shun-Qing, Liang; Marti, Thomas; Dorn, Patrick; Froment, Laurène; Hall, Sean; Berezowska, Sabina Anna; Kocher, Gregor; Schmid, Ralph; Peng, Renwang (2015). Blocking the epithelial-to-mesenchymal transition pathway abrogates resistance to anti-folate chemotherapy in lung cancer. Cell death & disease, 6(e1824), e1824. Nature Publishing Group 10.1038/cddis.2015.195

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