共 106 条
- [61] Sun X, Lv X, Yan Y, Et al., Hypoxia-mediated cancer stem cell resistance and targeted therapy, Biomed Pharmacother, 130, (2020)
- [62] Wang H, Zhao L, Zhu LT, Et al., Wogonin reverses hypoxia resistance of human colon cancer HCT116 cells via downregulation of HIF-1α and glycolysis, by inhibiting PI3K/Akt signaling pathway, Mol, Carcinog, 53, S1, pp. E107-E118, (2014)
- [63] Cardeno A, Sanchez-Hidalgo M, Rosillo MA, de la Lastra CA., Oleuropein, a secoiridoid derived from olive tree, inhibits the proliferation of human colorectal cancer cell through downregulation of HIF-1α, Nutr Cancer, 65, 1, pp. 147-156, (2013)
- [64] Brockmueller A, Girisa S, Motallebi M, Kunnumakkara AB, Shakibaei M., Calebin A targets the HIF-1α/NF-κB pathway to suppress colorectal cancer cell migration, Front Pharmacol, 14, (2023)
- [65] Kim SL, Park YR, Lee ST, Kim SW., Parthenolide suppresses hypoxia-inducible factor-1α signaling and hypoxia induced epithelial-mesenchymal transition in colorectal cancer, Int j Oncol, 51, 6, pp. 1809-1820, (2017)
- [66] Luo Q, Wang J, Zhao W, Et al., Vasculogenic mimicry in carcinogenesis and clinical applications, J Hematol Oncol, 13, 1, pp. 1-15, (2020)
- [67] Leng J, Lei L, Lei SF, Zhu Z, Ocampo A, Gany F., Use of traditional Chinese herbal medicine concurrently with conventional cancer treatment among Chinese cancer patients, J Immigr Minor Health, 22, 6, pp. 1240-1247, (2020)
- [68] Peng W, Zhang S, Zhang Z, Et al., Jianpi Jiedu decoction, a traditional Chinese medicine formula, inhibits tumorigenesis, metastasis, and angiogenesis through the mTOR/HIF-1α/VEGF pathway, J Ethnopharmacol, 224, pp. 140-148, (2018)
- [69] Zong S, Tang Y, Li W, Et al., A Chinese herbal formula suppresses colorectal cancer migration and vasculogenic mimicry through ROS/HIF-1 α/ MMP2 pathway in hypoxic microenvironment, Front Pharmacol, 11, (2020)
- [70] Mi C, Ma J, Wang KS, Et al., Imperatorin suppresses proliferation and angiogenesis of human colon cancer cells by targeting HIF-1α via the mTOR/p70S6K/4E-BP1 and MAPK pathways, J Ethnopharmacol, 203, pp. 27-38, (2017)