• Title/Summary/Keyword: cancer cell lines MCF-7

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New HDAC inhibitor, IN2001 induces apoptosis/cell cycle arrest in human breast cancer cells

  • Euno, Joung-Ki;Nan, Min-Kyung;Jung, Cho-Min;Young, An-Jin;Kim, -Dae-Ki;Yhong, Sheen-Yhun
    • Proceedings of the Korea Society of Environmental Toocicology Conference
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    • 2003.10a
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    • pp.180-180
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    • 2003
  • The acetylation of histone is one of the mechanisms involved in the regulation of gene expression and is tightly controlled by two core enzymes, histone acetyltransferase (HAT) and deacetylase (HDAC). There are several reports that imbalance of HAT and HDAC activity is associated with abnormal behavior of the cells in morphology, cell cycle, differentiation, and carcinogenesis. Recently, an increasing number of structurally diverse HDAC inhibitors have been identified that inhibit proliferation and induce differentiation and/or apoptosis of tumor cells in vivo and in vitro. In this study, we have investigated the effects of novel HDAC inhibitors, IN2001 on ER positive and ER negative human breast cancer cell lines. The growth inhibition, cell cycle arrest and apoptosis of cells by HDAC inhibitors were determined using SRB assay, DNA fragmentation, and flow cytometry. We found that IN 2001 as well as Trichostatin A inhibited cell growth dose-dependently in both ER Positive and ER negative human breast cancer cell lines. The growth inhibition with HDAC inhibitors was associated with profound morphological change. The result of cell cycle analysis after 24 h exposure of IN2001 showed G2-M cell cycle arrest in MCF-7 cell and apoptosis in T47B and MDA-MB-231 cell. In summary, IN2001 has antiproliferative effect on human breast cancer cells regardless of the expression of estrogen receptor. These findings heights the possibility of developing HDAC inhibitors as potential anticancer therapeutic agents for the treatment of breast cancer.

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Isolation and Properties of Antitumor Antibiotic YS-1649 from Penicillium sp. strain 1649

  • BOO-kIL PARK;YOO, SEONG-JAE
    • Journal of Microbiology and Biotechnology
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    • v.5 no.1
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    • pp.31-35
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    • 1995
  • An antitumor antibiotic named YS-1649 was isolated from the culture filtrate of a newly isolated fungus identified as Penicillium sp.. The fermentation yield reached about 40 mg per liter of the broth. YS-1649, a $\gamma$-Iactone - structured antibiotic, has the molecular fomular of $C_7H_6O_4$, Its structure was determined to be patulin by spectral analysis. It is active against some bacteria and showed cytotoxic effect on the proliferation of human breast cancer cell line, MCF-7, at concentrations of more than 0.048 $mu g/ml$. This compound also showed strong cytotoxic effect on the proliferation of human cancer cell lines, A549 and ACHN.

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BIAN N-Heterocyclic Gold Carbene Complexes induced cytotoxicity in human cancer cells via upregulating oxidative stress

  • Farooq, Muhammad;Taha, Nael Abu;Butorac, Rachel R;Evans, Daniel A;Elzatahry, Ahmed A;Wadaan, Mohammad AM;Cowley, Alan H
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.16
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    • pp.7003-7006
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    • 2015
  • Background: Nanoparticles of gold and silver are offering revolutionary changes in the field of cancer therapy. N-heterocyclic carbene (NHC) metal complexes possess diverse biological activities and are being investigated as potential chemotherapeutic agents. The purpose of this study was to examine the cytotoxicity and possible mechanisms of action of two types of newly synthesized nanofiber composites containing BIAN N-heterocyclic gold carbene complexes in two types of human cancer cells, namely breast cancer (MCF7) and liver cancer (HepG2) cells and also in normal human embryonic kidney cells (HEK 293). Materials and Methods: Cytotoxicity was assessed by MTT cell viability assay and oxidative stress by checking the total glutathione level. Results: Both compounds affected the cell survival of the tested cell lines at very low concentrations (IC50 values in the micro molar range) as compared to a well-known anti-cancer drug, 5 fluorouracil. A 60-80% depletion in total glutathione level was detected in treated cells. Conclusions: Reduction in total glutathione level is one of the biochemical pathways for the induction of oxidative stress which in turn could be a possible mechanism of action by which these compounds induce cytotoxicity in cancer cell lines. The in vitro toxicity towards cancer cells found here means that these molecules could be potential anticancer candidates.

Antitumoral Effects of Melissa officinalis on Breast Cancer in Vitro and in Vivo

  • Saraydin, Serpil Unver;Tuncer, Ersin;Tepe, Bektas;Karadayi, Sule;Ozer, Hatice;Sen, Metin;Karadayi, Kursat;Inan, Deniz;Elagoz, Sahande;Polat, Zubeyde;Duman, Mustafa;Turan, Mustafa
    • Asian Pacific Journal of Cancer Prevention
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    • v.13 no.6
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    • pp.2765-2770
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    • 2012
  • Background: There is a long standing interest in the identification of medicinal plants and derived natural products for developing cancer therapeutics. Here we investigated the antiproliferative properties of Melissa officinalis (MO) from Turkey on breast cancer. Methods: MO extracts were studied for cytotoxicity against breast cancer cell lines (MCF-7, MDA-MB-468 and MDA-MB-231). In vitro apoptosis studies were performed by annexin V staining and flow cytometry analyses. Immunohistochemistry for Ki-67 and caspase 7 in the tumoral tissue sections of DMBA-induced mammary tumors in rats was also performed, along with TUNEL assays to detect apoptotic cells. In vivo anticancer activity testing was carried out with reference to inhibition of growth of DMBA induced mammary tumors in rats. Results: MO showed cytotoxicity against three cancer cell lines, inducing increase in Annexin-positive cells. Expression of caspase-7 protein and TUNEL positive cells were much higher in rats treated by MO, compared with the untreated control group, while expression of Ki-67 was decreased. Furthermore, in vivo studies showed that mean tumor volume inhibition ratio in MO treated group was 40% compared with the untreated rats. Conclusion: These results indicated that MO extrcts have antitumoral potential against breast cancer.

Gomisin G Inhibits the Growth of Triple-Negative Breast Cancer Cells by Suppressing AKT Phosphorylation and Decreasing Cyclin D1

  • Maharjan, Sony;Park, Byoung Kwon;Lee, Su In;Lim, Yoonho;Lee, Keunwook;Kwon, Hyung-Joo
    • Biomolecules & Therapeutics
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    • v.26 no.3
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    • pp.322-327
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    • 2018
  • A type of breast cancer with a defect in three molecular markers such as the estrogen receptor, progesterone receptor, and human epidermal growth factor receptor is called triple-negative breast cancer (TNBC). Many patients with TNBC have a lower survival rate than patients with other types due to a poor prognosis. In this study, we confirmed the anti-cancer effect of a natural compound, Gomisin G, in TNBC cancer cells. Treatment with Gomisin G suppressed the viability of two TNBC cell lines, MDA-MB-231 and MDA-MB-468 but not non-TNBC cell lines such as MCF-7, T47D, and ZR75-1. To investigate the molecular mechanism of this activity, we examined the signal transduction pathways after treatment with Gomisin G in MDA-MB-231 cells. Gomisin G did not induce apoptosis but drastically inhibited AKT phosphorylation and reduced the amount of retinoblastoma tumor suppressor protein (Rb) and phosphorylated Rb. Gomisin G induced in a proteasome-dependent manner a decrease in Cyclin D1. Consequently, Gomisin G causes cell cycle arrest in the G1 phase. In contrast, there was no significant change in T47D cells except for a mild decrease in AKT phosphorylation. These results show that Gomisin G has an anti-cancer activity by suppressing proliferation rather than inducing apoptosis in TNBC cells. Our study suggests that Gomisin G could be used as a therapeutic agent in the treatment of TNBC patients.

Antitumor profiles and cardiac electrophysiological effects of aurora kinase inhibitor ZM447439

  • Lee, Hyang-Ae;Kwon, Miso;Kim, Hyeon-A;Kim, Ki-Suk
    • The Korean Journal of Physiology and Pharmacology
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    • v.23 no.5
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    • pp.393-402
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    • 2019
  • Aurora kinases inhibitors, including ZM447439 (ZM), which suppress cell division, have attracted a great deal of attention as potential novel anti-cancer drugs. Several recent studies have confirmed the anti-cancer effects of ZM in various cancer cell lines. However, there have been no studies regarding the cardiac safety of this agent. We performed several cytotoxicity, invasion and migration assays to examine the anti-cancer effects of ZM. To evaluate the potential effects of ZM on cardiac repolarisation, whole-cell patch-clamp experiments were performed with human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs) and cells with heterogeneous cardiac ion channel expression. We also conducted a contractility assay with rat ventricular myocytes to determine the effects of ZM on myocardial contraction and/or relaxation. In tests to determine in vitro efficacy, ZM inhibited the proliferation of A549, H1299 (lung cancer), MCF-7 (breast cancer) and HepG2 (hepatoma) cell lines with $IC_{50}$ in the submicromolar range, and attenuated the invasive and metastatic capacity of A549 cells. In cardiac toxicity testing, ZM did not significantly affect $I_{Na}$, $I_{Ks}$ or $I_{K1}$, but decreased $I_{hERG}$ in a dose-dependent manner ($IC_{50}$: $6.53{\mu}M$). In action potential (AP) assay using hiPSC-CMs, ZM did not induce any changes in AP parameters up to $3{\mu}M$, but it at $10{\mu}M$ induced prolongation of AP duration. In summary, ZM showed potent broad-spectrum anti-tumor activity, but relatively low levels of cardiac side effects compared to the effective doses to tumor. Therefore, ZM has a potential to be a candidate as an anti-cancer with low cardiac toxicity.

The Effects of Growth Inhibition and Quinone Reductase Activity Stimulation of Celastrus Orbiculatus Fractions in Various Cancer Cells (노박덩굴 분획물의 암세포 증식 억제 효과 및 Quinone Reductase 활성 증가효과)

  • Ku, Mi-Jeong;Shin, Mi-Ok
    • Journal of Nutrition and Health
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    • v.40 no.6
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    • pp.493-499
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    • 2007
  • Celastrus orbiculatus (CO) has been used as a traditional herb medicine to treat fever, chill, joint pain, edema, rheumatoid arthritis and bacterial infection in China and Korea. In this study, we investigated anticarcinogenic effects of Celastrus orbiculatus (CO). CO was extracted with methanol (COM), and then further fractionated into four different types: methanol (COMM), hexane (COMH), butanol (COMB) and aqueous (COMA) partition layers. We determined the cytotoxicity of these four partitions in four kind of cancer cell lines, such as HepG2, MCF-7, HT29 and B16F10 Cells by MTT assay. Among various partition layers of CO, the COMM showed the strongest cytotoxic effects on cancer cell lines we used. We also observed quinone reductase (QR) induced effects in all partition layers of CO on HepG2 cells. The QR induced effects of COMM on HepG2 cells at 80 ${\mu}$ g/mL concentration indicated 3.28 to a control value of 1.0. The COMM showed the highest induction activity of quinone reductase on HepG2 cells among the other partition layers. Although further studies are needed, the present work suggests that CO may be a chemopreventive agent for the treatment of human cells.

Anticancer and Immuno-activity of Methanol Extract from Onion Kochujang (양파고추장 메탄올추출물의 항암 및 면역활성)

  • Kim Jae-Yong;Park Kyung-Wook;Yang Hyun-Sook;Cho Young-Sook;Jeong Chang-Ho;Shim Ki-Hwan;Yee Sung-Tae;Seo Kwon-Il
    • Food Science and Preservation
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    • v.12 no.2
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    • pp.173-178
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    • 2005
  • Antitumor activities of methanol extract from onion Kochujang (MEOK) were investigated by using aflatoxin $B_{1}-mediated$ Salmonella typhimurium mutagenicity and the model of cytotoxicity on the cancer cell lines. Their immune activities were also investigated using mouse spleen cells and macrophage cell lines, respectively. MEOK showed the enhanced antimutagenicity in a dose-dependent manner. relative to the control group. MEOK decreased over $20\%$ of the proliferation of the A549(lung cancer cell) and MCF(breast cancer cell) cell lines at $1,000\;{\mu}g/mL$ concentration compared with the control cells. The proliferation of mouse spleen cells and the NO production in marcrophage cell lines treated MEOK were increased in a dose-dependent manner, respectively. The activities were higher than that of the control(no added onion) Kochujang.

Review of Domestic Research on Traditional Korean Medicine for Breast Cancer (유방암에 대한 국내 한의학 연구 동향 고찰 - 국내 한의학 논문을 중심으로 -)

  • Han, Ga-jin;Son, Ji-young;Seong, Sin;Kim, Sung-su
    • The Journal of Internal Korean Medicine
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    • v.39 no.1
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    • pp.44-68
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    • 2018
  • Objective: This study aimed to investigate the trend in the research on breast cancer using traditional Korean medicine (TKM) and establish the direction for further study. Methods: Breast cancer studies using Korean medicine were searched using the Oriental Medicine Advanced Searching Integrated System (OASIS). The search term was 'breast' and there was no restriction in year. The searched studies were analyzed according to the type of research. Results: 1. 83 studies were searched. The types and numbers of study were as follows: 42 were in vitro studies, 5 were in vivo studies, 12 were studies for review, and 27 were clinical research including case reports. 2. Various cell lines such as MCF-7, MDA-MB-231, SKBR3, and MCF-10A were used for in vitro studies. The studies reported a decrease in cell viability, induction of apoptosis, and change of expression in cancer-related genes. In vivo studies also reported induction of apoptosis, and anti-proliferative activity of herbal medicine against the cancer cells. 3. Among the clinical research, 8 were cross-sectional studies, 3 were controlled-trial, and 15 were case reports. The baseline characteristics of breast cancer patients were analyzed in the cross-sectional studies. Interventions such as pharmacopuncture, herbal medicine, massage, Qi gong, acupuncture, electroacupuncture and moxibustion were used in clinical research. 4. Research on the review of breast cancer covered various subjects as follows: herbal medicine, acupuncture, pattern identification of breast cancer in traditional Korean medicine, analysis of previous experimental studies, and clinical trials. Conclusion: We have found the applicability of TKM for treatment of breast cancer through this review. It is necessary to conduct further studies, such as well-designed clinical trials based on the results from experimental research.

Siamese Crocodile White Blood Cell Extract Inhibits Cell Proliferation and Promotes Autophagy in Multiple Cancer Cell Lines

  • Phosri, Santi;Jangpromma, Nisachon;Chang, Leng Chee;Tan, Ghee T.;Wongwiwatthananukit, Supakit;Maijaroen, Surachai;Anwised, Preeyanan;Payoungkiattikun, Wisarut;Klaynongsruang, Sompong
    • Journal of Microbiology and Biotechnology
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    • v.28 no.6
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    • pp.1007-1021
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    • 2018
  • Cancer represents one of the most significant threats to human health on a global scale. Hence, the development of effective cancer prevention strategies, as well as the discovery of novel therapeutic agents against cancer, is urgently required. In light of this challenge, this research aimed to evaluate the effects of several potent bioactive peptides and proteins contained in crocodile white blood cell extract (cWBC) against LU-1, LNCaP, PC-3, MCF-7, and CaCo-2 cancer cell lines. The results demonstrate that 25, 50, 100, and $200{\mu}g/ml$ cWBC exhibits a strong cytotoxic effect against all investigated cell lines ($IC_{50}$ $70.34-101.0{\mu}g/ml$), while showing no signs of cytotoxicity towards noncancerous Vero and HaCaT cells. Specifically, cWBC treatment caused a significant reduction in the cancerous cells' colony forming ability. A remarkable suppression of cancerous cell migration was observed after treatment with cWBC, indicating potent antimetastatic properties. The mechanism involved in the cancer cell cytotoxicity of cWBC may be related to apoptosis induction, as evidenced by typical apoptotic morphology features. Moreover, certain cWBC concentrations induced significant overproduction of ROS and significantly inhibited the $S-G_2/M$ transition in the cancer cell. The molecular mechanisms of cWBC in apoptosis induction were to decrease Bcl-2 and XIAP expression levels and increase the expression levels of caspase-3, caspase-8, and p53. These led to a decrease in the expression level of the cell cycle-associated gene cyclin-B1 and the arrest of cell population growth. Consequently, these findings demonstrate the prospect of the use of cWBC for cancer therapy.