The Experts below are selected from a list of 702 Experts worldwide ranked by ideXlab platform
Ji Young Kim - One of the best experts on this subject based on the ideXlab platform.
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abstract 703 an Anthelmintic drug flubendazole exerts antitumor effects in triple negative breast cancer via targeting cancer stem like properties
Cancer Research, 2019Co-Authors: Yoon Jae Kim, Taemin Cho, Seojin Jang, Jung Min Park, Soeun Park, Minsu Park, Ji Young Kim, Jae Hong SeoAbstract:Triple-negative breast cancer (TNBC) remains challenging due to the absence of established molecular targets for the phenotype. These tumors tend to be more aggressive with a higher risk of recurrence and metastasis, leading to poorer clinical outcomes. Flubendazole (FLU) is a widely used Anthelmintic Agent that also exhibits anticancer activity in several cancer types. The objective of the present study was to investigate the effects of FLU on cell proliferation, apoptosis and breast cancer stem cell (BCSC)-like properties in TNBC. The effect of FLU on TNBC cell lines in vitro was evaluated in terms of apoptosis, cell cycle distribution, caspase-3/-7 activity and BCSC-like characteristics. An orthotopic allograft model with 4T1 mammospheres was used to examine the effect of FLU on tumor growth and angiogenesis in vivo. FLU efficiently induced apoptosis with accompanied by activation of caspase-3 and -7, and PARP cleavage in TNBC. FLU-induced apoptosis is associated with the accumulation of G2/M phase cells by tubulin degradation, leading to mitotic catastrophe. Interestingly, FLU significantly suppressed BCSC-like properties in TNBC, as evidenced by a marked inhibition of ALDH1 activity, the CD44high/CD24low and CD49fhigh/CD24high subpopulations, and the subsequent impairment of mammosphere formation in vitro. This appears to contribute toward the suppression of BCSC-enriched tumor burden and intra-tumoral angiogenesis in TNBC allografts, together with a significant downregulation of ALDH1A1 and CD49f expression in vivo. Our findings suggest that FLU kills not only rapid proliferating tumor cells but also effectively eradicates BCSC-like cells in vitro and in vivo. These findings warrant further investigation of flubendazole as a potential treatment for triple-negative breast cancer. Citation Format: Yoon-Jae Kim, Eunhye Oh, Tae-Min Cho, Seojin Jang, Jung Min Park, Soeun Park, Minsu Park, Ji Young Kim, Jae Hong Seo. An Anthelmintic drug, flubendazole, exerts antitumor effects in triple-negative breast cancer via targeting cancer stem-like properties [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2019; 2019 Mar 29-Apr 3; Atlanta, GA. Philadelphia (PA): AACR; Cancer Res 2019;79(13 Suppl):Abstract nr 703.
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flubendazole elicits anti metastatic effects in triple negative breast cancer via stat3 inhibition
International Journal of Cancer, 2018Co-Authors: Yoon Jae Kim, Taemin Cho, Seojin Jang, Jae Hong Seo, Daeil Sung, Lee Farrand, Ji Young KimAbstract:Tumor metastasis remains the cause of 90% of cancer-related deaths. Cancer stem cells (CSC) are thought to be responsible for the aggressive and metastatic nature of triple-negative breast cancers (TNBC), and new therapeutic strategies are being devised to target them. Flubendazole (FLU) is a widely used Anthelmintic Agent that also exhibits anticancer activity in several cancer types. The aim of this study was to characterize the mechanism of action of FLU on breast cancer stem cell (BCSC)-like properties and metastasis in TNBC. FLU treatment caused a significant induction of apoptosis, accompanied by G2/M phase accumulation, caspase-3/-7 activation and the dysregulation of STAT3 activation in TNBC cells. The latter phenomenon was associated with impairment of cancer stem-like traits, concomitant with a reduction in the CD24low /CD44high , CD24high /CD49fhigh subpopulation, ALDH1 activity and mammosphere formation. The BCSC-enriched populations exhibited enhanced metastasis with higher STAT3 activation, while FLU administration inhibited tumor growth, angiogenesis and lung and liver metastasis, coinciding with decreased MMP-2 and MMP-9 levels in circulating blood. FLU kills not only rapid proliferating tumor cells but also effectively eradicates BCSC-like cells in vitro and in vivo. Our findings warrant further investigation of FLU as a treatment for metastatic TNBC.
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flubendazole overcomes trastuzumab resistance by targeting cancer stem like properties and her2 signaling in her2 positive breast cancer
Cancer Letters, 2018Co-Authors: Yoon Jae Kim, Taemin Cho, Jae Hong Seo, Daeil Sung, Lee Farrand, Youngkwan Cho, Ji Young KimAbstract:Abstract Although trastuzumab provides significant clinical benefit for HER2-positive breast cancers, responses are limited by the emergence of resistance. Trastuzumab resistance is a multi-factorial phenomenon thought to arise from the presence of cancer stem cells and interactions between truncated p95HER2 and HER family members. Flubendazole (FLU) is a potent Anthelmintic Agent with an exceptional safety profile. Evidence also suggests that it can act as an anticancer Agent in several cancer cell types. We sought to investigate the effect of FLU on apoptosis, HER2/Akt signaling, breast cancer stem cell (BCSC)-like properties and trastuzumab resistance in HER2-positive breast cancer cells. FLU treatment induced apoptosis, associated with a significant downregulation of truncated p95HER2, phospho-HER2, phospho-HER3 and phospho-Akt levels, as well as suppression of HER2/HER3 hetero-dimerization in both trastuzumab-sensitive and –resistant lines. FLU effectively targeted BCSC-like properties including aldehyde dehydrogenase 1 (ALDH1) expression and the CD44high/CD24low phenotype, concomitant with a suppression of mammosphere-forming ability. FLU administration also caused significant tumor suppression in trastuzumab-resistant xenografts, coinciding with the downregulation of BCSC-related markers and intracellular HER2. These findings highlight the mechanisms of action of FLU in overcoming trastuzumab resistance in breast cancer.
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abstract 115 flubendazole targets cancer stem like properties and the her2 akt signaling pathway in her2 positive breast cancer with trastuzumab resistance
Cancer Research, 2017Co-Authors: Daeil Sung, Yoon Jae Kim, Taemin Cho, Ji Young Kim, Youngkwan Cho, Jae Hong SeoAbstract:Background and Propose: HER2-positive breast cancers are associated with an aggressive phenotype and trastuzumab resistance leading to poor clinical outcomes. Flubendazole (FLU) is a potent Anthelmintic Agent that inhibits microtubule polymerization, and also exhibits anticancer activity in several cancer types. The objective of the present study was to investigate the effect of FLU on apoptosis, HER2/Akt signaling pathway, cancer stem cell (CSC)-like properties and trastuzumab-resistance in HER2-positive breast cancer cells. Methods: FLU-induced antitumor effects were characterized by MTS assay, Sub-G1 and G2/M-phase arrest population, Annexin-V analysis, ALDH1 activity assay, Western blotting and immunofluorescence. For in vivo study, trastuzumab-resistant JIMT1 cells were injected into the mammary fat pads of BALB/c nude mice. We then determined the tumor growth and CSC-like properties. Results and conclusion: FLU significantly reduced cell viability and induced apoptosis with accompanied by activation of caspase-3, -7, and -8, as well as PARP cleavage in HER2-positive cell lines (MDA-MB-453, SKBR3 and BT474). FLU-induced apoptosis is associated with significant decreases in expression levels of HER2, p-HER2 (Tyr1221/1222), HER3, and p-HER3 (Tyr1289). FLU treatment also resulted in G2/M-phase arrest of the cell cycle, as evidenced by a marked downregulation of phospho-Histone H3 expression. These results were closely related to the decline of CSC-like properties, coinciding with the suppression of ALDH1 activity. These effects were also observed in trastuzumab-resistant JIMT-1 cells, and significant reductions in tumor growth and ALDH1A1 downregulation were observed in xenograft models together with downregulation of HER2 expression in vivo. Our findings suggest that FLU may be potentially effective for the treatment of HER2-positive breast cancer with trastuzumab resistance. Note: This abstract was not presented at the meeting. Citation Format: Daeil Sung, Youngkwan Cho, Eunhye Oh, Tae-Min Cho, Yoon-Jae Kim, Ji Young Kim, Jae hong Seo. Flubendazole targets cancer stem-like properties and the HER2/Akt signaling pathway in HER2-positive breast cancer with trastuzumab resistance [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 115. doi:10.1158/1538-7445.AM2017-115
Jae Hong Seo - One of the best experts on this subject based on the ideXlab platform.
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abstract 703 an Anthelmintic drug flubendazole exerts antitumor effects in triple negative breast cancer via targeting cancer stem like properties
Cancer Research, 2019Co-Authors: Yoon Jae Kim, Taemin Cho, Seojin Jang, Jung Min Park, Soeun Park, Minsu Park, Ji Young Kim, Jae Hong SeoAbstract:Triple-negative breast cancer (TNBC) remains challenging due to the absence of established molecular targets for the phenotype. These tumors tend to be more aggressive with a higher risk of recurrence and metastasis, leading to poorer clinical outcomes. Flubendazole (FLU) is a widely used Anthelmintic Agent that also exhibits anticancer activity in several cancer types. The objective of the present study was to investigate the effects of FLU on cell proliferation, apoptosis and breast cancer stem cell (BCSC)-like properties in TNBC. The effect of FLU on TNBC cell lines in vitro was evaluated in terms of apoptosis, cell cycle distribution, caspase-3/-7 activity and BCSC-like characteristics. An orthotopic allograft model with 4T1 mammospheres was used to examine the effect of FLU on tumor growth and angiogenesis in vivo. FLU efficiently induced apoptosis with accompanied by activation of caspase-3 and -7, and PARP cleavage in TNBC. FLU-induced apoptosis is associated with the accumulation of G2/M phase cells by tubulin degradation, leading to mitotic catastrophe. Interestingly, FLU significantly suppressed BCSC-like properties in TNBC, as evidenced by a marked inhibition of ALDH1 activity, the CD44high/CD24low and CD49fhigh/CD24high subpopulations, and the subsequent impairment of mammosphere formation in vitro. This appears to contribute toward the suppression of BCSC-enriched tumor burden and intra-tumoral angiogenesis in TNBC allografts, together with a significant downregulation of ALDH1A1 and CD49f expression in vivo. Our findings suggest that FLU kills not only rapid proliferating tumor cells but also effectively eradicates BCSC-like cells in vitro and in vivo. These findings warrant further investigation of flubendazole as a potential treatment for triple-negative breast cancer. Citation Format: Yoon-Jae Kim, Eunhye Oh, Tae-Min Cho, Seojin Jang, Jung Min Park, Soeun Park, Minsu Park, Ji Young Kim, Jae Hong Seo. An Anthelmintic drug, flubendazole, exerts antitumor effects in triple-negative breast cancer via targeting cancer stem-like properties [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2019; 2019 Mar 29-Apr 3; Atlanta, GA. Philadelphia (PA): AACR; Cancer Res 2019;79(13 Suppl):Abstract nr 703.
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flubendazole elicits anti metastatic effects in triple negative breast cancer via stat3 inhibition
International Journal of Cancer, 2018Co-Authors: Yoon Jae Kim, Taemin Cho, Seojin Jang, Jae Hong Seo, Daeil Sung, Lee Farrand, Ji Young KimAbstract:Tumor metastasis remains the cause of 90% of cancer-related deaths. Cancer stem cells (CSC) are thought to be responsible for the aggressive and metastatic nature of triple-negative breast cancers (TNBC), and new therapeutic strategies are being devised to target them. Flubendazole (FLU) is a widely used Anthelmintic Agent that also exhibits anticancer activity in several cancer types. The aim of this study was to characterize the mechanism of action of FLU on breast cancer stem cell (BCSC)-like properties and metastasis in TNBC. FLU treatment caused a significant induction of apoptosis, accompanied by G2/M phase accumulation, caspase-3/-7 activation and the dysregulation of STAT3 activation in TNBC cells. The latter phenomenon was associated with impairment of cancer stem-like traits, concomitant with a reduction in the CD24low /CD44high , CD24high /CD49fhigh subpopulation, ALDH1 activity and mammosphere formation. The BCSC-enriched populations exhibited enhanced metastasis with higher STAT3 activation, while FLU administration inhibited tumor growth, angiogenesis and lung and liver metastasis, coinciding with decreased MMP-2 and MMP-9 levels in circulating blood. FLU kills not only rapid proliferating tumor cells but also effectively eradicates BCSC-like cells in vitro and in vivo. Our findings warrant further investigation of FLU as a treatment for metastatic TNBC.
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flubendazole overcomes trastuzumab resistance by targeting cancer stem like properties and her2 signaling in her2 positive breast cancer
Cancer Letters, 2018Co-Authors: Yoon Jae Kim, Taemin Cho, Jae Hong Seo, Daeil Sung, Lee Farrand, Youngkwan Cho, Ji Young KimAbstract:Abstract Although trastuzumab provides significant clinical benefit for HER2-positive breast cancers, responses are limited by the emergence of resistance. Trastuzumab resistance is a multi-factorial phenomenon thought to arise from the presence of cancer stem cells and interactions between truncated p95HER2 and HER family members. Flubendazole (FLU) is a potent Anthelmintic Agent with an exceptional safety profile. Evidence also suggests that it can act as an anticancer Agent in several cancer cell types. We sought to investigate the effect of FLU on apoptosis, HER2/Akt signaling, breast cancer stem cell (BCSC)-like properties and trastuzumab resistance in HER2-positive breast cancer cells. FLU treatment induced apoptosis, associated with a significant downregulation of truncated p95HER2, phospho-HER2, phospho-HER3 and phospho-Akt levels, as well as suppression of HER2/HER3 hetero-dimerization in both trastuzumab-sensitive and –resistant lines. FLU effectively targeted BCSC-like properties including aldehyde dehydrogenase 1 (ALDH1) expression and the CD44high/CD24low phenotype, concomitant with a suppression of mammosphere-forming ability. FLU administration also caused significant tumor suppression in trastuzumab-resistant xenografts, coinciding with the downregulation of BCSC-related markers and intracellular HER2. These findings highlight the mechanisms of action of FLU in overcoming trastuzumab resistance in breast cancer.
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abstract 115 flubendazole targets cancer stem like properties and the her2 akt signaling pathway in her2 positive breast cancer with trastuzumab resistance
Cancer Research, 2017Co-Authors: Daeil Sung, Yoon Jae Kim, Taemin Cho, Ji Young Kim, Youngkwan Cho, Jae Hong SeoAbstract:Background and Propose: HER2-positive breast cancers are associated with an aggressive phenotype and trastuzumab resistance leading to poor clinical outcomes. Flubendazole (FLU) is a potent Anthelmintic Agent that inhibits microtubule polymerization, and also exhibits anticancer activity in several cancer types. The objective of the present study was to investigate the effect of FLU on apoptosis, HER2/Akt signaling pathway, cancer stem cell (CSC)-like properties and trastuzumab-resistance in HER2-positive breast cancer cells. Methods: FLU-induced antitumor effects were characterized by MTS assay, Sub-G1 and G2/M-phase arrest population, Annexin-V analysis, ALDH1 activity assay, Western blotting and immunofluorescence. For in vivo study, trastuzumab-resistant JIMT1 cells were injected into the mammary fat pads of BALB/c nude mice. We then determined the tumor growth and CSC-like properties. Results and conclusion: FLU significantly reduced cell viability and induced apoptosis with accompanied by activation of caspase-3, -7, and -8, as well as PARP cleavage in HER2-positive cell lines (MDA-MB-453, SKBR3 and BT474). FLU-induced apoptosis is associated with significant decreases in expression levels of HER2, p-HER2 (Tyr1221/1222), HER3, and p-HER3 (Tyr1289). FLU treatment also resulted in G2/M-phase arrest of the cell cycle, as evidenced by a marked downregulation of phospho-Histone H3 expression. These results were closely related to the decline of CSC-like properties, coinciding with the suppression of ALDH1 activity. These effects were also observed in trastuzumab-resistant JIMT-1 cells, and significant reductions in tumor growth and ALDH1A1 downregulation were observed in xenograft models together with downregulation of HER2 expression in vivo. Our findings suggest that FLU may be potentially effective for the treatment of HER2-positive breast cancer with trastuzumab resistance. Note: This abstract was not presented at the meeting. Citation Format: Daeil Sung, Youngkwan Cho, Eunhye Oh, Tae-Min Cho, Yoon-Jae Kim, Ji Young Kim, Jae hong Seo. Flubendazole targets cancer stem-like properties and the HER2/Akt signaling pathway in HER2-positive breast cancer with trastuzumab resistance [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 115. doi:10.1158/1538-7445.AM2017-115
Yoon Jae Kim - One of the best experts on this subject based on the ideXlab platform.
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abstract 703 an Anthelmintic drug flubendazole exerts antitumor effects in triple negative breast cancer via targeting cancer stem like properties
Cancer Research, 2019Co-Authors: Yoon Jae Kim, Taemin Cho, Seojin Jang, Jung Min Park, Soeun Park, Minsu Park, Ji Young Kim, Jae Hong SeoAbstract:Triple-negative breast cancer (TNBC) remains challenging due to the absence of established molecular targets for the phenotype. These tumors tend to be more aggressive with a higher risk of recurrence and metastasis, leading to poorer clinical outcomes. Flubendazole (FLU) is a widely used Anthelmintic Agent that also exhibits anticancer activity in several cancer types. The objective of the present study was to investigate the effects of FLU on cell proliferation, apoptosis and breast cancer stem cell (BCSC)-like properties in TNBC. The effect of FLU on TNBC cell lines in vitro was evaluated in terms of apoptosis, cell cycle distribution, caspase-3/-7 activity and BCSC-like characteristics. An orthotopic allograft model with 4T1 mammospheres was used to examine the effect of FLU on tumor growth and angiogenesis in vivo. FLU efficiently induced apoptosis with accompanied by activation of caspase-3 and -7, and PARP cleavage in TNBC. FLU-induced apoptosis is associated with the accumulation of G2/M phase cells by tubulin degradation, leading to mitotic catastrophe. Interestingly, FLU significantly suppressed BCSC-like properties in TNBC, as evidenced by a marked inhibition of ALDH1 activity, the CD44high/CD24low and CD49fhigh/CD24high subpopulations, and the subsequent impairment of mammosphere formation in vitro. This appears to contribute toward the suppression of BCSC-enriched tumor burden and intra-tumoral angiogenesis in TNBC allografts, together with a significant downregulation of ALDH1A1 and CD49f expression in vivo. Our findings suggest that FLU kills not only rapid proliferating tumor cells but also effectively eradicates BCSC-like cells in vitro and in vivo. These findings warrant further investigation of flubendazole as a potential treatment for triple-negative breast cancer. Citation Format: Yoon-Jae Kim, Eunhye Oh, Tae-Min Cho, Seojin Jang, Jung Min Park, Soeun Park, Minsu Park, Ji Young Kim, Jae Hong Seo. An Anthelmintic drug, flubendazole, exerts antitumor effects in triple-negative breast cancer via targeting cancer stem-like properties [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2019; 2019 Mar 29-Apr 3; Atlanta, GA. Philadelphia (PA): AACR; Cancer Res 2019;79(13 Suppl):Abstract nr 703.
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flubendazole elicits anti metastatic effects in triple negative breast cancer via stat3 inhibition
International Journal of Cancer, 2018Co-Authors: Yoon Jae Kim, Taemin Cho, Seojin Jang, Jae Hong Seo, Daeil Sung, Lee Farrand, Ji Young KimAbstract:Tumor metastasis remains the cause of 90% of cancer-related deaths. Cancer stem cells (CSC) are thought to be responsible for the aggressive and metastatic nature of triple-negative breast cancers (TNBC), and new therapeutic strategies are being devised to target them. Flubendazole (FLU) is a widely used Anthelmintic Agent that also exhibits anticancer activity in several cancer types. The aim of this study was to characterize the mechanism of action of FLU on breast cancer stem cell (BCSC)-like properties and metastasis in TNBC. FLU treatment caused a significant induction of apoptosis, accompanied by G2/M phase accumulation, caspase-3/-7 activation and the dysregulation of STAT3 activation in TNBC cells. The latter phenomenon was associated with impairment of cancer stem-like traits, concomitant with a reduction in the CD24low /CD44high , CD24high /CD49fhigh subpopulation, ALDH1 activity and mammosphere formation. The BCSC-enriched populations exhibited enhanced metastasis with higher STAT3 activation, while FLU administration inhibited tumor growth, angiogenesis and lung and liver metastasis, coinciding with decreased MMP-2 and MMP-9 levels in circulating blood. FLU kills not only rapid proliferating tumor cells but also effectively eradicates BCSC-like cells in vitro and in vivo. Our findings warrant further investigation of FLU as a treatment for metastatic TNBC.
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flubendazole overcomes trastuzumab resistance by targeting cancer stem like properties and her2 signaling in her2 positive breast cancer
Cancer Letters, 2018Co-Authors: Yoon Jae Kim, Taemin Cho, Jae Hong Seo, Daeil Sung, Lee Farrand, Youngkwan Cho, Ji Young KimAbstract:Abstract Although trastuzumab provides significant clinical benefit for HER2-positive breast cancers, responses are limited by the emergence of resistance. Trastuzumab resistance is a multi-factorial phenomenon thought to arise from the presence of cancer stem cells and interactions between truncated p95HER2 and HER family members. Flubendazole (FLU) is a potent Anthelmintic Agent with an exceptional safety profile. Evidence also suggests that it can act as an anticancer Agent in several cancer cell types. We sought to investigate the effect of FLU on apoptosis, HER2/Akt signaling, breast cancer stem cell (BCSC)-like properties and trastuzumab resistance in HER2-positive breast cancer cells. FLU treatment induced apoptosis, associated with a significant downregulation of truncated p95HER2, phospho-HER2, phospho-HER3 and phospho-Akt levels, as well as suppression of HER2/HER3 hetero-dimerization in both trastuzumab-sensitive and –resistant lines. FLU effectively targeted BCSC-like properties including aldehyde dehydrogenase 1 (ALDH1) expression and the CD44high/CD24low phenotype, concomitant with a suppression of mammosphere-forming ability. FLU administration also caused significant tumor suppression in trastuzumab-resistant xenografts, coinciding with the downregulation of BCSC-related markers and intracellular HER2. These findings highlight the mechanisms of action of FLU in overcoming trastuzumab resistance in breast cancer.
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abstract 115 flubendazole targets cancer stem like properties and the her2 akt signaling pathway in her2 positive breast cancer with trastuzumab resistance
Cancer Research, 2017Co-Authors: Daeil Sung, Yoon Jae Kim, Taemin Cho, Ji Young Kim, Youngkwan Cho, Jae Hong SeoAbstract:Background and Propose: HER2-positive breast cancers are associated with an aggressive phenotype and trastuzumab resistance leading to poor clinical outcomes. Flubendazole (FLU) is a potent Anthelmintic Agent that inhibits microtubule polymerization, and also exhibits anticancer activity in several cancer types. The objective of the present study was to investigate the effect of FLU on apoptosis, HER2/Akt signaling pathway, cancer stem cell (CSC)-like properties and trastuzumab-resistance in HER2-positive breast cancer cells. Methods: FLU-induced antitumor effects were characterized by MTS assay, Sub-G1 and G2/M-phase arrest population, Annexin-V analysis, ALDH1 activity assay, Western blotting and immunofluorescence. For in vivo study, trastuzumab-resistant JIMT1 cells were injected into the mammary fat pads of BALB/c nude mice. We then determined the tumor growth and CSC-like properties. Results and conclusion: FLU significantly reduced cell viability and induced apoptosis with accompanied by activation of caspase-3, -7, and -8, as well as PARP cleavage in HER2-positive cell lines (MDA-MB-453, SKBR3 and BT474). FLU-induced apoptosis is associated with significant decreases in expression levels of HER2, p-HER2 (Tyr1221/1222), HER3, and p-HER3 (Tyr1289). FLU treatment also resulted in G2/M-phase arrest of the cell cycle, as evidenced by a marked downregulation of phospho-Histone H3 expression. These results were closely related to the decline of CSC-like properties, coinciding with the suppression of ALDH1 activity. These effects were also observed in trastuzumab-resistant JIMT-1 cells, and significant reductions in tumor growth and ALDH1A1 downregulation were observed in xenograft models together with downregulation of HER2 expression in vivo. Our findings suggest that FLU may be potentially effective for the treatment of HER2-positive breast cancer with trastuzumab resistance. Note: This abstract was not presented at the meeting. Citation Format: Daeil Sung, Youngkwan Cho, Eunhye Oh, Tae-Min Cho, Yoon-Jae Kim, Ji Young Kim, Jae hong Seo. Flubendazole targets cancer stem-like properties and the HER2/Akt signaling pathway in HER2-positive breast cancer with trastuzumab resistance [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 115. doi:10.1158/1538-7445.AM2017-115
Taemin Cho - One of the best experts on this subject based on the ideXlab platform.
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abstract 703 an Anthelmintic drug flubendazole exerts antitumor effects in triple negative breast cancer via targeting cancer stem like properties
Cancer Research, 2019Co-Authors: Yoon Jae Kim, Taemin Cho, Seojin Jang, Jung Min Park, Soeun Park, Minsu Park, Ji Young Kim, Jae Hong SeoAbstract:Triple-negative breast cancer (TNBC) remains challenging due to the absence of established molecular targets for the phenotype. These tumors tend to be more aggressive with a higher risk of recurrence and metastasis, leading to poorer clinical outcomes. Flubendazole (FLU) is a widely used Anthelmintic Agent that also exhibits anticancer activity in several cancer types. The objective of the present study was to investigate the effects of FLU on cell proliferation, apoptosis and breast cancer stem cell (BCSC)-like properties in TNBC. The effect of FLU on TNBC cell lines in vitro was evaluated in terms of apoptosis, cell cycle distribution, caspase-3/-7 activity and BCSC-like characteristics. An orthotopic allograft model with 4T1 mammospheres was used to examine the effect of FLU on tumor growth and angiogenesis in vivo. FLU efficiently induced apoptosis with accompanied by activation of caspase-3 and -7, and PARP cleavage in TNBC. FLU-induced apoptosis is associated with the accumulation of G2/M phase cells by tubulin degradation, leading to mitotic catastrophe. Interestingly, FLU significantly suppressed BCSC-like properties in TNBC, as evidenced by a marked inhibition of ALDH1 activity, the CD44high/CD24low and CD49fhigh/CD24high subpopulations, and the subsequent impairment of mammosphere formation in vitro. This appears to contribute toward the suppression of BCSC-enriched tumor burden and intra-tumoral angiogenesis in TNBC allografts, together with a significant downregulation of ALDH1A1 and CD49f expression in vivo. Our findings suggest that FLU kills not only rapid proliferating tumor cells but also effectively eradicates BCSC-like cells in vitro and in vivo. These findings warrant further investigation of flubendazole as a potential treatment for triple-negative breast cancer. Citation Format: Yoon-Jae Kim, Eunhye Oh, Tae-Min Cho, Seojin Jang, Jung Min Park, Soeun Park, Minsu Park, Ji Young Kim, Jae Hong Seo. An Anthelmintic drug, flubendazole, exerts antitumor effects in triple-negative breast cancer via targeting cancer stem-like properties [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2019; 2019 Mar 29-Apr 3; Atlanta, GA. Philadelphia (PA): AACR; Cancer Res 2019;79(13 Suppl):Abstract nr 703.
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flubendazole elicits anti metastatic effects in triple negative breast cancer via stat3 inhibition
International Journal of Cancer, 2018Co-Authors: Yoon Jae Kim, Taemin Cho, Seojin Jang, Jae Hong Seo, Daeil Sung, Lee Farrand, Ji Young KimAbstract:Tumor metastasis remains the cause of 90% of cancer-related deaths. Cancer stem cells (CSC) are thought to be responsible for the aggressive and metastatic nature of triple-negative breast cancers (TNBC), and new therapeutic strategies are being devised to target them. Flubendazole (FLU) is a widely used Anthelmintic Agent that also exhibits anticancer activity in several cancer types. The aim of this study was to characterize the mechanism of action of FLU on breast cancer stem cell (BCSC)-like properties and metastasis in TNBC. FLU treatment caused a significant induction of apoptosis, accompanied by G2/M phase accumulation, caspase-3/-7 activation and the dysregulation of STAT3 activation in TNBC cells. The latter phenomenon was associated with impairment of cancer stem-like traits, concomitant with a reduction in the CD24low /CD44high , CD24high /CD49fhigh subpopulation, ALDH1 activity and mammosphere formation. The BCSC-enriched populations exhibited enhanced metastasis with higher STAT3 activation, while FLU administration inhibited tumor growth, angiogenesis and lung and liver metastasis, coinciding with decreased MMP-2 and MMP-9 levels in circulating blood. FLU kills not only rapid proliferating tumor cells but also effectively eradicates BCSC-like cells in vitro and in vivo. Our findings warrant further investigation of FLU as a treatment for metastatic TNBC.
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flubendazole overcomes trastuzumab resistance by targeting cancer stem like properties and her2 signaling in her2 positive breast cancer
Cancer Letters, 2018Co-Authors: Yoon Jae Kim, Taemin Cho, Jae Hong Seo, Daeil Sung, Lee Farrand, Youngkwan Cho, Ji Young KimAbstract:Abstract Although trastuzumab provides significant clinical benefit for HER2-positive breast cancers, responses are limited by the emergence of resistance. Trastuzumab resistance is a multi-factorial phenomenon thought to arise from the presence of cancer stem cells and interactions between truncated p95HER2 and HER family members. Flubendazole (FLU) is a potent Anthelmintic Agent with an exceptional safety profile. Evidence also suggests that it can act as an anticancer Agent in several cancer cell types. We sought to investigate the effect of FLU on apoptosis, HER2/Akt signaling, breast cancer stem cell (BCSC)-like properties and trastuzumab resistance in HER2-positive breast cancer cells. FLU treatment induced apoptosis, associated with a significant downregulation of truncated p95HER2, phospho-HER2, phospho-HER3 and phospho-Akt levels, as well as suppression of HER2/HER3 hetero-dimerization in both trastuzumab-sensitive and –resistant lines. FLU effectively targeted BCSC-like properties including aldehyde dehydrogenase 1 (ALDH1) expression and the CD44high/CD24low phenotype, concomitant with a suppression of mammosphere-forming ability. FLU administration also caused significant tumor suppression in trastuzumab-resistant xenografts, coinciding with the downregulation of BCSC-related markers and intracellular HER2. These findings highlight the mechanisms of action of FLU in overcoming trastuzumab resistance in breast cancer.
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abstract 115 flubendazole targets cancer stem like properties and the her2 akt signaling pathway in her2 positive breast cancer with trastuzumab resistance
Cancer Research, 2017Co-Authors: Daeil Sung, Yoon Jae Kim, Taemin Cho, Ji Young Kim, Youngkwan Cho, Jae Hong SeoAbstract:Background and Propose: HER2-positive breast cancers are associated with an aggressive phenotype and trastuzumab resistance leading to poor clinical outcomes. Flubendazole (FLU) is a potent Anthelmintic Agent that inhibits microtubule polymerization, and also exhibits anticancer activity in several cancer types. The objective of the present study was to investigate the effect of FLU on apoptosis, HER2/Akt signaling pathway, cancer stem cell (CSC)-like properties and trastuzumab-resistance in HER2-positive breast cancer cells. Methods: FLU-induced antitumor effects were characterized by MTS assay, Sub-G1 and G2/M-phase arrest population, Annexin-V analysis, ALDH1 activity assay, Western blotting and immunofluorescence. For in vivo study, trastuzumab-resistant JIMT1 cells were injected into the mammary fat pads of BALB/c nude mice. We then determined the tumor growth and CSC-like properties. Results and conclusion: FLU significantly reduced cell viability and induced apoptosis with accompanied by activation of caspase-3, -7, and -8, as well as PARP cleavage in HER2-positive cell lines (MDA-MB-453, SKBR3 and BT474). FLU-induced apoptosis is associated with significant decreases in expression levels of HER2, p-HER2 (Tyr1221/1222), HER3, and p-HER3 (Tyr1289). FLU treatment also resulted in G2/M-phase arrest of the cell cycle, as evidenced by a marked downregulation of phospho-Histone H3 expression. These results were closely related to the decline of CSC-like properties, coinciding with the suppression of ALDH1 activity. These effects were also observed in trastuzumab-resistant JIMT-1 cells, and significant reductions in tumor growth and ALDH1A1 downregulation were observed in xenograft models together with downregulation of HER2 expression in vivo. Our findings suggest that FLU may be potentially effective for the treatment of HER2-positive breast cancer with trastuzumab resistance. Note: This abstract was not presented at the meeting. Citation Format: Daeil Sung, Youngkwan Cho, Eunhye Oh, Tae-Min Cho, Yoon-Jae Kim, Ji Young Kim, Jae hong Seo. Flubendazole targets cancer stem-like properties and the HER2/Akt signaling pathway in HER2-positive breast cancer with trastuzumab resistance [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 115. doi:10.1158/1538-7445.AM2017-115
Daeil Sung - One of the best experts on this subject based on the ideXlab platform.
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flubendazole elicits anti metastatic effects in triple negative breast cancer via stat3 inhibition
International Journal of Cancer, 2018Co-Authors: Yoon Jae Kim, Taemin Cho, Seojin Jang, Jae Hong Seo, Daeil Sung, Lee Farrand, Ji Young KimAbstract:Tumor metastasis remains the cause of 90% of cancer-related deaths. Cancer stem cells (CSC) are thought to be responsible for the aggressive and metastatic nature of triple-negative breast cancers (TNBC), and new therapeutic strategies are being devised to target them. Flubendazole (FLU) is a widely used Anthelmintic Agent that also exhibits anticancer activity in several cancer types. The aim of this study was to characterize the mechanism of action of FLU on breast cancer stem cell (BCSC)-like properties and metastasis in TNBC. FLU treatment caused a significant induction of apoptosis, accompanied by G2/M phase accumulation, caspase-3/-7 activation and the dysregulation of STAT3 activation in TNBC cells. The latter phenomenon was associated with impairment of cancer stem-like traits, concomitant with a reduction in the CD24low /CD44high , CD24high /CD49fhigh subpopulation, ALDH1 activity and mammosphere formation. The BCSC-enriched populations exhibited enhanced metastasis with higher STAT3 activation, while FLU administration inhibited tumor growth, angiogenesis and lung and liver metastasis, coinciding with decreased MMP-2 and MMP-9 levels in circulating blood. FLU kills not only rapid proliferating tumor cells but also effectively eradicates BCSC-like cells in vitro and in vivo. Our findings warrant further investigation of FLU as a treatment for metastatic TNBC.
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flubendazole overcomes trastuzumab resistance by targeting cancer stem like properties and her2 signaling in her2 positive breast cancer
Cancer Letters, 2018Co-Authors: Yoon Jae Kim, Taemin Cho, Jae Hong Seo, Daeil Sung, Lee Farrand, Youngkwan Cho, Ji Young KimAbstract:Abstract Although trastuzumab provides significant clinical benefit for HER2-positive breast cancers, responses are limited by the emergence of resistance. Trastuzumab resistance is a multi-factorial phenomenon thought to arise from the presence of cancer stem cells and interactions between truncated p95HER2 and HER family members. Flubendazole (FLU) is a potent Anthelmintic Agent with an exceptional safety profile. Evidence also suggests that it can act as an anticancer Agent in several cancer cell types. We sought to investigate the effect of FLU on apoptosis, HER2/Akt signaling, breast cancer stem cell (BCSC)-like properties and trastuzumab resistance in HER2-positive breast cancer cells. FLU treatment induced apoptosis, associated with a significant downregulation of truncated p95HER2, phospho-HER2, phospho-HER3 and phospho-Akt levels, as well as suppression of HER2/HER3 hetero-dimerization in both trastuzumab-sensitive and –resistant lines. FLU effectively targeted BCSC-like properties including aldehyde dehydrogenase 1 (ALDH1) expression and the CD44high/CD24low phenotype, concomitant with a suppression of mammosphere-forming ability. FLU administration also caused significant tumor suppression in trastuzumab-resistant xenografts, coinciding with the downregulation of BCSC-related markers and intracellular HER2. These findings highlight the mechanisms of action of FLU in overcoming trastuzumab resistance in breast cancer.
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abstract 115 flubendazole targets cancer stem like properties and the her2 akt signaling pathway in her2 positive breast cancer with trastuzumab resistance
Cancer Research, 2017Co-Authors: Daeil Sung, Yoon Jae Kim, Taemin Cho, Ji Young Kim, Youngkwan Cho, Jae Hong SeoAbstract:Background and Propose: HER2-positive breast cancers are associated with an aggressive phenotype and trastuzumab resistance leading to poor clinical outcomes. Flubendazole (FLU) is a potent Anthelmintic Agent that inhibits microtubule polymerization, and also exhibits anticancer activity in several cancer types. The objective of the present study was to investigate the effect of FLU on apoptosis, HER2/Akt signaling pathway, cancer stem cell (CSC)-like properties and trastuzumab-resistance in HER2-positive breast cancer cells. Methods: FLU-induced antitumor effects were characterized by MTS assay, Sub-G1 and G2/M-phase arrest population, Annexin-V analysis, ALDH1 activity assay, Western blotting and immunofluorescence. For in vivo study, trastuzumab-resistant JIMT1 cells were injected into the mammary fat pads of BALB/c nude mice. We then determined the tumor growth and CSC-like properties. Results and conclusion: FLU significantly reduced cell viability and induced apoptosis with accompanied by activation of caspase-3, -7, and -8, as well as PARP cleavage in HER2-positive cell lines (MDA-MB-453, SKBR3 and BT474). FLU-induced apoptosis is associated with significant decreases in expression levels of HER2, p-HER2 (Tyr1221/1222), HER3, and p-HER3 (Tyr1289). FLU treatment also resulted in G2/M-phase arrest of the cell cycle, as evidenced by a marked downregulation of phospho-Histone H3 expression. These results were closely related to the decline of CSC-like properties, coinciding with the suppression of ALDH1 activity. These effects were also observed in trastuzumab-resistant JIMT-1 cells, and significant reductions in tumor growth and ALDH1A1 downregulation were observed in xenograft models together with downregulation of HER2 expression in vivo. Our findings suggest that FLU may be potentially effective for the treatment of HER2-positive breast cancer with trastuzumab resistance. Note: This abstract was not presented at the meeting. Citation Format: Daeil Sung, Youngkwan Cho, Eunhye Oh, Tae-Min Cho, Yoon-Jae Kim, Ji Young Kim, Jae hong Seo. Flubendazole targets cancer stem-like properties and the HER2/Akt signaling pathway in HER2-positive breast cancer with trastuzumab resistance [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2017; 2017 Apr 1-5; Washington, DC. Philadelphia (PA): AACR; Cancer Res 2017;77(13 Suppl):Abstract nr 115. doi:10.1158/1538-7445.AM2017-115