gossypol has been researched along with Cancer of Stomach in 8 studies
Gossypol: A dimeric sesquiterpene found in cottonseed (GOSSYPIUM). The (-) isomer is active as a male contraceptive (CONTRACEPTIVE AGENTS, MALE) whereas toxic symptoms are associated with the (+) isomer.
Excerpt | Relevance | Reference |
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"The present study has evaluated the chemopreventive effects of gossypol on N-methyl-N'-nitro-N-nitrosoguanidine (MNNG)-induced gastric carcinogenesis and on human gastric adenocarcinoma (AGS) cell line." | 7.77 | In vitro and in vivo studies on antitumor effects of gossypol on human stomach adenocarcinoma (AGS) cell line and MNNG induced experimental gastric cancer. ( Gayathri, R; Gunassekaran, GR; Priya, DK; Sakthisekaran, D, 2011) |
"The present study has evaluated the chemopreventive effects of gossypol on N-methyl-N'-nitro-N-nitrosoguanidine (MNNG)-induced gastric carcinogenesis and on human gastric adenocarcinoma (AGS) cell line." | 3.77 | In vitro and in vivo studies on antitumor effects of gossypol on human stomach adenocarcinoma (AGS) cell line and MNNG induced experimental gastric cancer. ( Gayathri, R; Gunassekaran, GR; Priya, DK; Sakthisekaran, D, 2011) |
"Gastro-oesophageal cancers (GEC) are resistant to therapy and lead to poor prognosis." | 3.01 | Targeting cancer stem cells with a pan-BCL-2 inhibitor in preclinical and clinical settings in patients with gastroesophageal carcinoma. ( Ajani, JA; Bhutani, M; Chen, Q; Correa, A; Estrella, JS; Gan, B; Hofstetter, WL; Huo, L; Jin, J; Johnson, RL; Lee, JH; Lei, G; Li, CY; Li, Y; Liu, B; Ma, L; Pizzi, MP; Scott, A; Shanbhag, N; Song, S; Wang, Y; Wei, S; Weston, B; Xiao, L, 2021) |
"Here, we examined energy metabolism in gastric cancer cells and found increased fatty acid oxidation and increased expression of ALDH3A1." | 1.51 | Gastric cancer depends on aldehyde dehydrogenase 3A1 for fatty acid oxidation. ( Cheong, JH; Kang, JH; Kim, SH; Kim, SY; Lee, JS; Lee, S; Lee, SH, 2019) |
"Gastric cancer is one of the most common types of malignancies and proteins from the Bcl-2 family are highly expressed in human gastric cancer." | 1.39 | ApoG2 as the most potent gossypol derivatives inhibits cell growth and induces apoptosis on gastric cancer cells. ( Liang, JM; Nie, YZ; Tian, J; Xia, LM; Xin, J; Zhan, YH; Zhu, HW, 2013) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 1 (12.50) | 18.7374 |
1990's | 0 (0.00) | 18.2507 |
2000's | 0 (0.00) | 29.6817 |
2010's | 5 (62.50) | 24.3611 |
2020's | 2 (25.00) | 2.80 |
Authors | Studies |
---|---|
Lee, JS | 1 |
Kim, SH | 1 |
Lee, S | 1 |
Kang, JH | 1 |
Lee, SH | 1 |
Cheong, JH | 1 |
Kim, SY | 1 |
Liu, Y | 1 |
Ma, Y | 1 |
Li, Z | 1 |
Yang, Y | 1 |
Yu, B | 1 |
Zhang, Z | 1 |
Wang, G | 1 |
Song, S | 1 |
Chen, Q | 1 |
Li, Y | 2 |
Lei, G | 1 |
Scott, A | 1 |
Huo, L | 1 |
Li, CY | 1 |
Estrella, JS | 1 |
Correa, A | 1 |
Pizzi, MP | 1 |
Ma, L | 1 |
Jin, J | 1 |
Liu, B | 1 |
Wang, Y | 1 |
Xiao, L | 1 |
Hofstetter, WL | 1 |
Lee, JH | 1 |
Weston, B | 1 |
Bhutani, M | 1 |
Shanbhag, N | 1 |
Johnson, RL | 1 |
Gan, B | 1 |
Wei, S | 1 |
Ajani, JA | 1 |
Xin, J | 2 |
Zhan, Y | 1 |
Liu, M | 1 |
Hu, H | 1 |
Xia, L | 1 |
Nie, Y | 1 |
Wu, K | 1 |
Liang, J | 1 |
Tian, J | 2 |
Wei, X | 1 |
Duan, W | 1 |
Zhang, S | 1 |
Xin, X | 1 |
Sun, L | 1 |
Gao, M | 1 |
Li, Q | 1 |
Wang, D | 1 |
Gunassekaran, GR | 1 |
Priya, DK | 1 |
Gayathri, R | 1 |
Sakthisekaran, D | 1 |
Zhan, YH | 1 |
Xia, LM | 1 |
Zhu, HW | 1 |
Nie, YZ | 1 |
Liang, JM | 1 |
VERMEL, EM | 1 |
1 trial available for gossypol and Cancer of Stomach
Article | Year |
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Targeting cancer stem cells with a pan-BCL-2 inhibitor in preclinical and clinical settings in patients with gastroesophageal carcinoma.
Topics: Animals; Antineoplastic Agents, Phytogenic; Apoptosis; Cell Line, Tumor; Disease Models, Animal; Doc | 2021 |
7 other studies available for gossypol and Cancer of Stomach
Article | Year |
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Gastric cancer depends on aldehyde dehydrogenase 3A1 for fatty acid oxidation.
Topics: Adenosine Triphosphate; Aldehyde Dehydrogenase; Animals; Cell Line, Tumor; Cell Proliferation; Fatty | 2019 |
Investigation of Inhibition Effect of Gossypol-Acetic Acid on Gastric Cancer Cells Based on a Network Pharmacology Approach and Experimental Validation.
Topics: Antineoplastic Agents, Phytogenic; Apoptosis; Cell Cycle Checkpoints; Cell Proliferation; Drug Scree | 2020 |
ApoG2 induces ER stress-dependent apoptosis in gastric cancer cells in vitro and its real-time evaluation by bioluminescence imaging in vivo.
Topics: Animals; Apoptosis; Calcium; Cell Line, Tumor; Cell Survival; Endoplasmic Reticulum Stress; Female; | 2013 |
AT101 exerts a synergetic efficacy in gastric cancer patients with 5-FU based treatment through promoting apoptosis and autophagy.
Topics: AC133 Antigen; Adult; Aged; Aged, 80 and over; Animals; Antineoplastic Agents; Apoptosis; Autophagy; | 2016 |
In vitro and in vivo studies on antitumor effects of gossypol on human stomach adenocarcinoma (AGS) cell line and MNNG induced experimental gastric cancer.
Topics: Adenocarcinoma; Animals; Antineoplastic Agents; Cell Line, Tumor; Cell Proliferation; Cell Survival; | 2011 |
ApoG2 as the most potent gossypol derivatives inhibits cell growth and induces apoptosis on gastric cancer cells.
Topics: Antineoplastic Agents; Apoptosis; bcl-2-Associated X Protein; Blotting, Western; Caspase 3; Cell Lin | 2013 |
THE SEARCH FOR ANTITUMOUR SUBSTANCES OF PLANT ORIGIN.
Topics: Animals; Antineoplastic Agents; Carcinoma, Ehrlich Tumor; Coumarins; Gossypol; Melanoma; Mice; Neopl | 1964 |