• Title/Summary/Keyword: Colon cancer cells

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Antioxidative and antiproliferative effects of propolis-reduced silver nanoparticles

  • Tan, Gamze;Ilk, Sedef;Foto, Fatma Z.;Foto, Egemen;Saglam, Necdet
    • Advances in nano research
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    • v.10 no.2
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    • pp.139-150
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    • 2021
  • In this study, phytochemicals present in Propolis Extract (PE) were employed as reducing and stabilizing reagents to synthesize silver nanoparticles. Three propolis-reduced silver nanoparticles (P-AgNPs1-3) were synthesized using increasing amounts of PE. P-AgNPs were treated with different cancer cells-lung (A549), cervix (HeLa) and colon (WiDr) - for 24, 48 and 72 h to evaluate their anti-proliferative activities. A non-cancerous cell type (L929) was also used to test whether suppressive effects of P-AgNPs on cancer cell proliferation were due to a general cytotoxic effect. The characterization results showed that the bioactive contents in propolis successfully induced particle formation. As the amount of PE increased, the particle size decreased; however, the size distribution range expanded. The antioxidant capacity of the particles increased with increased propolis amounts. P-AgNP1 exhibited almost equal inhibitory effects across all cancer cell types; however, P-AgNP2 was more effective on HeLa cells. P-AgNPs3 showed greater inhibitory effects in almost all cancer cells compared to other NPs and pure propolis. Consequently, the biological effects of P-AgNPs were highly dependent on PE amount, NP concentration, and cell type. These results suggest that AgNPs synthesized utilizing propolis phytochemicals might serve as anti-cancer agents, providing greater efficacy against cancer cells.

Potential Benefit of Metformin as Treatment for Colon Cancer: the Evidence so Far

  • Abdelsatir, Azza Ali;Husain, Nazik Elmalaika;Hassan, Abdallah Tarig;Elmadhoun, Wadie M;Almobarak, Ahmed O;Ahmed, Mohamed H
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.18
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    • pp.8053-8058
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    • 2016
  • Metformin is known as a hypoglycaemic agent that regulates glucose homeostasis by inhibiting liver glucose production and increasing muscle glucose uptake. Colorectal cancer (CRC) is one of the most common cancers worldwide, with about a million new cases diagnosed each year. The risk factors for CRC include advanced age, smoking, black race, obesity, low fibre diet, insulin resistance, and the metabolic syndrome. We have searched Medline for the metabolic syndrome and its relation to CRC, and metformin as a potential treatment of colorectal cancer. Administration of metformin alone or in combination with chemotherapy has been shown to suppress CRC. The mechanism that explains how insulin resistance is associated with CRC is complex and not fully understood. In this review we have summarised studies which showed an association with the metabolic syndrome as well as studies which tackled metformin as a potential treatment of CRC. In addition, we have also provided a summary of how metformin at the cellular level can induce changes that suppress the activity of cancer cells.

Effect of Prunella vulgaris L. on Chemopreventive Enzymes of Colorectal Cancer (꿀풀하고초가 직장암 예방효소 활성에 미치는 영향)

  • Shon, Yun-Hee;Seo, Jae-Beom;Nam, Kyung-Soo
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.22 no.1
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    • pp.126-130
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    • 2008
  • Water extract from Prunella vulgaris L. (PVW) was tested for colon cancer chemopreventive activity by measuring the activities of cytochrome P450 1A1, phase Ⅱ detoxification enzyme [quinone reductase (QR) and glutathione S-transferase (GST)] and ornithine decarboxylase (ODC) and glutathione (GSH) levels in cultured human colorectal adenocarcinoma HT-29 cells. PVW significantly inhibited 7,12-dimethylbenz[a]anthracene (DMBA)-induced cytochrome P450 1A1 activity at 10 and 50 ${\mu}g/ml$. PVW induced QR activity in a dose-dependent manner over a concentration range of $1{\sim}50\;{\mu}g/ml$. GST activity was also induced with the treatment of PVW in HT-29 cells. In addition GSH levels were increased with PVW. PVW inhibited ODC activity, a key enzyme of polyamine biosynthesis, which is enhanced in tumor promotion. These results suggest that Prunella vulgaris L. has colon cancer chemopreventive activity by inhibiting cytochrome P450 1A1 and ODC activities and by increasing phase Ⅱ enzyme activity and GSH levels.

Chemical Components and Biological Activities of Red Onion Powder (붉은 양파 분말의 화학성분 및 생리활성)

  • Jang, Joo-Ri;Kwon, Sun-Jin;Lim, Sun-Young
    • Journal of the Korean Society of Food Culture
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    • v.24 no.6
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    • pp.749-755
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    • 2009
  • We investigated the chemical components of red onion powder dried using the low temperature vacuum method and the inhibitory effects of solvent extracts of the dried red onion powder on the growth of HT-1080 human fibrosarcoma and HT-29 human colon cancer cells and $H_2O_2$-induced oxidative stress. The moisture content of the dried red onion powder was 17.95%, while the vitamin C content was 96 mg/100 g and the total phenols content was 39.1 mg/mL. The inhibitory effects of acetone with methylene chloride (A+M) and methanol (MeOH) extracts of the red onion powder on the growth of HT-1080 and HT-29 cancer cells increased in a dose dependent manner (p<0.05). The inhibitory effect was greater on the growth of HT-29 cells, while the A+M extracts had a higher inhibitory effect than the MeOH extracts. Treatment with the hexane, 85% aq. methanol, butanol and water fractions of the extract led to significant inhibition of the growth of both cancer cell lines (p<0.05). Among the fractions, the hexane and 85% aq. methanol fractions showed a greater inhibitory effect. To determine the protective effect on $H_2O_2$-induced oxidative stress, a DCFH-DA (dichlorodihydrofluorescin diacetate) assay was conducted. All fractions, including the crude extracts of dried red onion, appeared to lead to a significant reduction in the levels of intracellular reactive oxygen species (ROS), and these reductions occurred in a dose dependent fashion (p<0.05). Among the fractions, the 85% methanol fraction showed the greatest protective effect on the production of lipid peroxides.

Effect of Extracts from Root Bark of Ulmus parvifolia on Inhibition of Growth and DNA Synthesis of Human Cancer Cells. (느릅나무 근피 추출물에 의한 인체 암세포 증식 및 DNA 합성 억제효과)

  • Lim, Sun-Young
    • Journal of Life Science
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    • v.17 no.9 s.89
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    • pp.1232-1236
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    • 2007
  • Growth and DNA synthesis inhibitory effects of extracts from root bark of Ulmus parvifolia on MG-63 human osteosarcoma cells, HT-29 human colon cancer cells and K-562 leukemia cancer cells were studied. The root bark extract of Ulmus parvifolia was extracted with methanol, hot water and juice. The methanol extract showed the highest inhibitory effect on growth of MG-63, HT-29 and K-562 cancer cells by >85%. The treatment of hot water and juice extracts from root bark of Ulmus parvifolia also inhibited growth of the above cancer cells with increasing concentration. DNA synthesis of MG-63 and HT-29 cancer cells was significantly inhibited by adding methanol, hot water and juice extracts from root bark of Ulmus parvifolia with increasing concentration, showing that the inhibitory effect of growth was more effective on HT-29 cancer cells. These results suggest that the methanol extract from root bark of Ulmus parvifolia may have specific active com-pounds on anticancer effect. The hot water extract also showed a strong inhibitory effect on growth of cancer cells, indicating that the active compounds may be stable to heat.

Apoptotic Effect of Sasa quelpaertensis Nakai in Human Colon Cancer HT-29 Cells (인간 대장암 HT-29 세포에서 제주조릿대의 세포사멸 효과)

  • Byun, Ji Hee;Kim, Min Young
    • Journal of Life Science
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    • v.24 no.9
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    • pp.1012-1018
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    • 2014
  • Sasa quelpaertensis Nakai (Korean name, Jeju-Joritdae) is one of the most abundant plants on Mt. Halla, Jeju Island, and it has long been used in traditional medicines. Recent studies have reported it as possessing various beneficial functions, including anti-inflammatory, anti-diabetic, anti-hypertension, anti-gastritis, anti-oxidant, and anti-cancer effects. However, the molecular mechanisms of its anti-cancer activity have not been clearly elucidated. In this study, we investigated the anti-cancer effects and mechanism of S. quelpaertensis on human colon cancer HT-29 cells. Cell growth inhibition by S. quelpaertensis was determined by MTT assay. Apoptosis was performed by DNA fragmentation, flow cytometry with propidium iodide staining (PI), and reverse transcription-polymerase chain reaction (RT-PCR) to confirm the anti-apoptotic factors, such as inhibitor of apoptosis (IAP) family members. $NO^{\bullet}$ production was determined by Griess assay. S. quelpaertensis treatment resulted in the time- and dose-dependent inhibition of the cell viability of HT-29 cells by inducing apoptosis, as evidenced by the accumulation of the sub-G1 cell population stained by PI, as well as the ladder-like DNA fragmentation in a dose-dependent manner. S. quelpaertensis-inducing apoptosis was accompanied by the induction of S cell cycle arrests, increasing $NO^{\bullet}$ concentrations, and the down-regulation of IAPs, including X-chromosome-linked IAP (XIAP), cellular IAP-1 (cIAP-1), cIAP-2, and survivin. Taken together, these findings have important implications for future clinical developments of S. quelpaertensis in colon cancer treatment.

Effect of Sanghongbaekchul-san on Anti-metastatic and Immunopotentiating Activities (상홍백출산(桑紅白朮散)이 생쥐 대장암세포의 간전이억제와 면역활성화에 미치는 효과)

  • Oh, Se-Soon;Kang, Hee;Shim, Bum-Sang;Kim, Sung-Hoon;Choi, Seung-Hoon;Ahn, Kyoo-Seok
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.22 no.2
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    • pp.282-289
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    • 2008
  • We evaluated the effect of SHBCS on adhesion and invasion of colon L5-26 adenocarcinoma cell line in vitro in vitro and experimental liver metastasis in vivo. SHBCS showed little inhibitory effect on colon 26-L5 cell proliferation. At the concentration of up to 500 mg/ml of SHBCS 80% of cells were viable. SHBCS showed no inhibitory effect on adhesion and invasion of colon 26-L5 cells, which were placed on matrigel. In a dose dependent manner, oral administration of SHBCS showed a significantly inhibitory effect on liver metastasis from colon 26-L5 injected mice. When mice were depleted of NK cells or macrophages before tumor inoculation, SHBCS significantly decreased liver metastasis fromf the tumor injected mice. Compared with the control mice, SHBCS increased the populations of macrophages and NK cells by 30%, 18%(10 mg/mouse, 50 mg/mouse) and 5%, 1% (10 mg/mouse, 50 mg/mouse) respectively. Compared with the control mice, SHBCS increased the populations of CD4 cells by 5%, 18% (10 mg/mouse, 50 mg/mouse) respectively. Spelenocytes from mice administerd with SHBCS were stimulated with LPS plus ConA, proliferation of splenocytes from mice administerd with SHBCS was 140%, 146%(10 mg/mouse, 50 mg/mouse) compared with th control mice. In conclusion, the present study suggests that SHBCS may have an inhibitory effect on liver metastasis through immunopotentiating activity which is associated with macrophages and NK cells.

Mechanism of Differential Ag-specific Immune Induction by Different Tumor Cell Lysate Pulsed DC (종양 세포 용해액에 따른 수지상세포 유도 항원 특이 면역반응 차이의 기전 연구)

  • Lee, Kang-Eun;Shon, Hye-Jin;Kim, Myung-Joo;Baek, So-Young;Lee, Hyun-Ah
    • IMMUNE NETWORK
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    • v.6 no.3
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    • pp.145-153
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    • 2006
  • Background: Tumor cell lysate has been considered as a preferential antigen source for the therapeutic dendritic cell pulsing. Our experiences with in vivo study with animal tumor model indicate the tumor cell lysate dependent differential effect of DC therapy. Our previous data show that MC38 lysate pulsed-DC induced stronger ag-specific immunity than CT26 lysate pulsed-DC in vitro. In this study we tried to reveal the mechanism for differential induction of ag-specific immunity of different colon cancer cell lysate pulsed-DCs. Methods: MC38 and CT26 cell lines were prepared as lysate by freezing-thawing procedure. Tumor cell antigenicity was confirmed by detecting the surface expression of MHC I/II & B7.1/2 molecules. IL-10, IL-12 and TGF-beta in the tumor cell lysate were detected by ELISA and the presence of heat shock proteins were analysed by western blotting. Results: The secretion of IL-10, a immune-inhibitory cytokine was about 470% higher in CT26 lysate than in MC38. Hsp 70 was detected only in the MC38 lysate but not in the CT26. On the other hand, Hsp 60 and 90 expression were not different in two colon cancer cell lysates. Conclusion: In two different colon cancer cell lysate, immune inhibitory IL-10 (higher in CT26) and Hsp70 (MC38 superiority) were differentially expressed. These data indicate that higher agspecific immunity induction by MC38 lysate pulsed-DC may due to the expression of hsp70 and lower secretion of IL-10, a immune-inhibitory cytokine than CT26 lysate. The significance of other cytokine and the surface marker expression will be discussed.

Suppressive Effect of Sinomenine Combined with 5-Fluorouracil on Colon Carcinoma Cell Growth

  • Zhang, Ji-Xiang;Yang, Zi-Rong;Wu, Dan-Dan;Song, Jia;Guo, Xu-Feng;Wang, Jing;Dong, Wei-Guo
    • Asian Pacific Journal of Cancer Prevention
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    • v.15 no.16
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    • pp.6737-6743
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    • 2014
  • It is reported that sinomenine (SIN) and 5-fluorouracil (5-FU) both are effective for colon cancer, but their cooperative suppressive effects and toxicity remain to be clarified in detail. This study aimed to determine suppressive effects and toxicity of sinomenine (SIN) plus 5-fluorouracil (5-FU) on LoVo colon carcinoma cells in vitro and in vivo. CCK-8, Hoechst 33258 staining and an annexin V-FITC/PI apoptosis kit were used to detect suppressive effects. Western blotting was applied to investigate the essential mechanism underlying SIN and 5-FU-induced apoptosis. SIN or 5-FU or both were injected into nude mice, and then suppressive effects and side effects were observed. SIN plus 5-FU apparently inhibited the proliferation of LoVo cells and induced apoptosis. Moreover the united effects were stronger than individually (p<0.05). The results of annexin V-FITC/PI staining and Hoechst 33258 staining showed that the percentage of apoptotic cells induced by SIN and 5-FU combined or alone was significantly higher than the control group (p<0.05). Expression of Bax and Bcl-2 was up-regulated and down-regulated respectively. SIN or 5-FU significantly inhibited effects on the volume of tumour xenografts and their combined suppressive effects were stronger (p<0.05). No obvious side effects were observed. It was apparent that the united effects of SIN and 5-FU on the growth of colorectal carcinoma LoVo cells in vitro and in vivo were superior to those using them individually, and it did not markedly increase the side effects of chemotherapy.

Quercetin Potentiates TRAIL-induced Apoptosis in Human Colon KM12 Cells (사람 대장암 KMl2세포에서 quercetin 의한 TRAIL이 유도하는 세포사멸의 증가)

  • Park, Jun-Ik;Kim, Hak-Bong;Kim, Mi-Ju;Lee, Jae-Won;Bae, Jae-Ho;Park, Soo-Jung;Kim, Dong-Wan;Kang, Chi-Dug;Kim, Sun-Hee
    • Journal of Life Science
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    • v.19 no.9
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    • pp.1209-1217
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    • 2009
  • Many cancer cells are sensitive to the TNF-related apoptosis-inducing ligand (TRAIL)-induced apoptosis. However, some cancer cells show either partial or complete resistance to TRAIL. Human colon carcinoma KM12 cells have been shown to be insensitive to TRAIL-induced apoptosis. To overcome TRAIL resistance in KM12 cells, we targeted key anti-apoptotic molecules involved in the modulation of TRAIL resistance in the cells, and evaluated the effects of quercetin as a TRAIL sensitizer in the cells. We found that quercetin acted in synergy with TRAIL to enhance TRAIL-induced apoptosis in KM12 cells by the down-regulation of c-FLIP and DNA-PKcs/Akt and up-regulation of death receptors (DR4/DR5), which led to the enhancement of TRAIL-mediated activation of caspases and subsequent cleavage of PARP, as well as up-regulation of Bax. These findings suggest that the DNA-PKcs/Akt signaling pathway, as well as c-FLIP, play essential roles in regulating cells in the escape from TRAIL-induced apoptosis. Based on these results, this study provides a potential application of quercetin in combination with TRAIL in the treatment of human colon cancer.