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- Hsu-Kai Huang, Shin-Yi Lee, Shu-Fen Huang, Yu-San Lin, Shih-Chi Chao, Shu-Fu Huang, Shih-Chun Lee, Tzu-Hurng Cheng, Shih-Hurng Loh, and Yi-Ting Tsai.
- Division of Thoracic Surgery, Department of Surgery, Tri-Service General Hospital, National Defense Medical Center, Taipei 11490, Taiwan.
- Am. J. Chin. Med. 2020 Jan 1; 48 (1): 201-222.
AbstractAggressive tumor cells mainly rely on glycolysis, and further release vast amounts of lactate and protons by monocarboxylate transporter (MCT), which causes a higher intracellular pH (pH i ) and acidic extracellular pH. Isoorientin, a principle flavonoid compound extracted from several plant species, shows various pharmacological activities. However, effects of isoorientin on anticancer and MCT await to explore in human lung cancer cells. Human lung cancer tissues were obtained from cancer patients undergoing surgery, while the human lung adenocarcinoma cells (A549) were bought commercially. Change of pH i was detected by microspectrofluorometry method with a pH-sensitive fluorescent dye, BCECF. MTT and wound-healing assay were used to detect the cell viability and migration, respectively. Western blot techniques and immunocytochemistry staining were used to detect the protein expression. Our results indicated that the expression of MCTs1/4 and CD147 were upregulated significantly in human lung tissues. In experiments of A549 cells, under HEPES-buffer, the resting pH i was 7.47, and isoorientin (1-300 μ M) inhibited functional activity of MCT concentration-dependently (up to - 4 2 %). Pretreatment with isoorientin (3-100 μ M) for 24 h, MCT activity and cell migration were significantly inhibited ( - 2 5 % and - 4 0 %, respectively), while the cell viability was not affected. Moreover, the expression of MCTs1/4, CD147, and matrix metalloproteinase (MMP) 2/9 were significantly down regulated. In summary, MCTs1/4 and CD147 are significantly upregulated in human lung adenocarcinoma tissues, and isoorientin inhibits cells-migration by inhibiting activity/expression of MCTs1/4 and MMPs2/9 in human lung cancer cells. These novel findings suggest that isoorientin could be a promising pharmacological agent for lung cancer.
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