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このアイテムの引用には次の識別子を使用してください: http://hdl.handle.net/10564/4364

タイトル: Sulforaphane Potentiates Gemcitabine-Mediated Anti-Cancer Effects against Intrahepatic Cholangiocarcinoma by Inhibiting HDAC Activity
その他のタイトル: スルフォラファンは HDAC 活性阻害を介してゲムシタビンの肝内胆管癌に対する抗癌効果を増強させる
著者: Tomooka, Fumimasa
Kaji, Kosuke
Nishimura, Norihisa
Kubo, Takahiro
Iwai, Satoshi
Shibamoto, Akihiko
Suzuki, Junya
Kitagawa, Koh
Namisaki, Tadashi
Akahane, Takemi
Mitoro, Akira
Yoshiji, Hitoshi
キーワード: chemoresistance
angiogenesis
EMT
cell cycle arrest
apoptosis
発行日: 2023年2月
出版者: MDPI
引用: Cells. 2023 Feb, vol.12, no.5, article no.687
抄録: Intrahepatic cholangiocarcinoma (iCCA), the second most common primary liver cancer, has high mortality rates because of its limited treatment options and acquired resistance to chemotherapy. Sulforaphane (SFN), a naturally occurring organosulfur compound found in cruciferous vegetables, exhibits multiple therapeutic properties, such as histone deacetylase (HDAC) inhibition and anti-cancer effects. This study assessed the effects of the combination of SFN and gemcitabine (GEM) on human iCCA cell growth. HuCCT-1 and HuH28 cells, representing moderately differentiated and undifferentiated iCCA, respectively, were treated with SFN and/or GEM. SFN concentration dependently reduced total HDAC activity and promoted total histone H3 acetylation in both iCCA cell lines. SFN synergistically augmented the GEM-mediated attenuation of cell viability and proliferation by inducing G2/M cell cycle arrest and apoptosis in both cell lines, as indicated by the cleavage of caspase-3. SFN also inhibited cancer cell invasion and decreased the expression of pro-angiogenic markers (VEGFA, VEGFR2, HIF-1α, and eNOS) in both iCCA cell lines. Notably, SFN effectively inhibited the GEM-mediated induction of epithelial-mesenchymal transition (EMT). A xenograft assay demonstrated that SFN and GEM substantially attenuated human iCCA cell-derived tumor growth with decreased Ki67+ proliferative cells and increased TUNEL+ apoptotic cells. The anti-cancer effects of every single agent were markedly augmented by concomitant use. Consistent with the results of in vitro cell cycle analysis, G2/M arrest was indicated by increased p21 and p-Chk2 expression and decreased p-Cdc25C expression in the tumors of SFN- and GEM-treated mice. Moreover, treatment with SFN inhibited CD34-positive neovascularization with decreased VEGF expression and GEM-induced EMT in iCCA-derived xenografted tumors. In conclusion, these results suggest that combination therapy with SFN with GEM is a potential novel option for iCCA treatment.
内容記述: 権利情報:© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
URI: http://hdl.handle.net/10564/4364
ISSN: 2073-4409
DOI: https://doi.org/10.3390/cells12050687
学位授与番号: 24601甲第913号
学位授与年月日: 2024-03-14
学位名: 博士(医学)
学位授与機関: 奈良県立医科大学
出現コレクション:2023年度

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