gallic acid has been researched along with Carcinoma, Squamous Cell in 17 studies
gallate : A trihydroxybenzoate that is the conjugate base of gallic acid.
Carcinoma, Squamous Cell: A carcinoma derived from stratified SQUAMOUS EPITHELIAL CELLS. It may also occur in sites where glandular or columnar epithelium is normally present. (From Stedman, 25th ed)
Excerpt | Relevance | Reference |
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"The apoptosis-inducing effect of gallic acid (3,4,5-trihydroxybenzoic acid) was investigated in four human lung cancer cell lines, SBC-3 (small cell carcinoma), EBC-1 (squamous cell carcinoma), A549 (adenocarcinoma) and SBC-3/CDDP (cisplatin-resistant subclone of SBC-3)." | 3.70 | Induction of apoptosis by gallic acid in lung cancer cells. ( Akao, S; Fujiwara, H; Fujiwara, T; Fukuda, K; Gotou, K; Maruyama, R; Ohno, Y; Takemura, G; Toyota, M; Watanabe, M; Xinbin, Q; Yasuda, N, 1999) |
"Ethyl gallate (EG) is a phenolic compound that is isolated from walnut kernels, euphorbia fischeriana, and galla rhois." | 1.51 | Ethyl gallate as a novel ERK1/2 inhibitor suppresses patient-derived esophageal tumor growth. ( Bode, AM; Chen, H; Dong, Z; Kim, DJ; Liu, F; Liu, K; Wang, T; Xie, X; Zheng, Y; Zu, X, 2019) |
"Gallic acid is a polyphenolic compost appointed to interfere with neoplastic cells behavior." | 1.48 | Gallic acid modulates phenotypic behavior and gene expression in oral squamous cell carcinoma cells by interfering with leptin pathway. ( Batista, PR; da Rocha, RG; da Silveira, LH; de Carvalho Fraga, CA; de Oliveira, PSL; de Paula, AMB; Farias, LC; Guimarães, ALS; Guimarães, TA; Melo, GA; Santos, EMS; Santos, HO; Santos, SH, 2018) |
"Oral squamous cell carcinoma is most prevalent and refractory cancers worldwide." | 1.46 | Chemopreventive effect of syringic acid on 7,12-dimethylbenz(a)anthracene induced hamster buccal pouch carcinogenesis. ( Babukumar, S; Ramachandhiran, D; Velu, P; Vinothkumar, V, 2017) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 4 (23.53) | 18.2507 |
2000's | 2 (11.76) | 29.6817 |
2010's | 7 (41.18) | 24.3611 |
2020's | 4 (23.53) | 2.80 |
Authors | Studies |
---|---|
Jurič, A | 1 |
Huđek Turković, A | 1 |
Brčić Karačonji, I | 1 |
Prđun, S | 1 |
Bubalo, D | 1 |
Durgo, K | 1 |
de Jesus, SF | 1 |
de Souza, MG | 1 |
Queiroz, LDRP | 1 |
de Paula, DPS | 1 |
Tabosa, ATL | 1 |
Alves, WSM | 1 |
da Silveira, LH | 2 |
Ferreira, ATDS | 1 |
Martuscelli, OJD | 1 |
Farias, LC | 3 |
de-Paula, AMB | 1 |
Santos, SHS | 1 |
Guimaraes, ALS | 2 |
Wu, CW | 1 |
Wang, SG | 1 |
Lee, CH | 1 |
Chan, WL | 1 |
Lin, ML | 1 |
Chen, SS | 1 |
Orabi, MAA | 1 |
Sakagami, H | 1 |
Umemura, N | 1 |
Alyami, HS | 1 |
Hatano, T | 1 |
Velu, P | 1 |
Vinothkumar, V | 1 |
Babukumar, S | 1 |
Ramachandhiran, D | 1 |
Mohan, S | 2 |
Thiagarajan, K | 2 |
Chandrasekaran, R | 2 |
Santos, EMS | 1 |
da Rocha, RG | 1 |
Santos, HO | 1 |
Guimarães, TA | 2 |
de Carvalho Fraga, CA | 1 |
Batista, PR | 1 |
de Oliveira, PSL | 1 |
Melo, GA | 2 |
Santos, SH | 1 |
de Paula, AMB | 1 |
Liu, F | 2 |
Zu, X | 1 |
Xie, X | 1 |
Liu, K | 1 |
Chen, H | 1 |
Wang, T | 1 |
Bode, AM | 2 |
Zheng, Y | 1 |
Dong, Z | 2 |
Kim, DJ | 1 |
Fraga, CA | 1 |
Feltenberger, JD | 1 |
Coletta, RD | 1 |
Souza Santos, SH | 1 |
de Paula, AM | 1 |
Guimaraes, AL | 1 |
Chia, YC | 1 |
Rajbanshi, R | 1 |
Calhoun, C | 1 |
Chiu, RH | 1 |
Hou, Z | 1 |
Sang, S | 1 |
You, H | 1 |
Lee, MJ | 1 |
Hong, J | 1 |
Chin, KV | 1 |
Yang, CS | 2 |
Mizuno, H | 1 |
Cho, YY | 1 |
Zhu, F | 1 |
Ma, WY | 1 |
Ho, CT | 2 |
Kiang, JG | 2 |
Smallridge, RC | 1 |
Liang, YC | 1 |
Chen, YC | 1 |
Lin, YL | 1 |
Lin-Shiau, SY | 1 |
Lin, JK | 1 |
Ohno, Y | 1 |
Fukuda, K | 1 |
Takemura, G | 1 |
Toyota, M | 1 |
Watanabe, M | 1 |
Yasuda, N | 1 |
Xinbin, Q | 1 |
Maruyama, R | 1 |
Akao, S | 1 |
Gotou, K | 1 |
Fujiwara, T | 1 |
Fujiwara, H | 1 |
17 other studies available for gallic acid and Carcinoma, Squamous Cell
Article | Year |
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Cytotoxic activity of strawberry tree (
Topics: Antineoplastic Agents; Antioxidants; Biphenyl Compounds; Caco-2 Cells; Carcinoma, Hepatocellular; Ca | 2022 |
Gallic acid has an inhibitory effect on skin squamous cell carcinoma and acts on the heat shock protein HSP90AB1.
Topics: Carcinoma, Basal Cell; Carcinoma, Squamous Cell; Gallic Acid; Heat-Shock Proteins; HSP90 Heat-Shock | 2023 |
Enforced C-Src Activation Causes Compartmental Dysregulation of PI3K and PTEN Molecules in Lipid Rafts of Tongue Squamous Carcinoma Cells by Attenuating Rac1-Akt-GLUT-1-Mediated Sphingolipid Synthesis.
Topics: Carcinoma, Squamous Cell; Cell Compartmentation; Cell Line, Tumor; Down-Regulation; Enzyme Activatio | 2020 |
Two new C-glycosidic ellagitannins and accompanying tannins from Lawsonia inermis leaves and their cytotoxic effects.
Topics: Antineoplastic Agents, Phytogenic; Carcinoma, Squamous Cell; Cell Line, Tumor; Egypt; Gallic Acid; G | 2021 |
Chemopreventive effect of syringic acid on 7,12-dimethylbenz(a)anthracene induced hamster buccal pouch carcinogenesis.
Topics: 9,10-Dimethyl-1,2-benzanthracene; Animals; Carcinoma, Squamous Cell; Cricetinae; Gallic Acid; Mouth | 2017 |
Evaluation of ethyl gallate for its antioxidant and anticancer properties against chemical-induced tongue carcinogenesis in mice.
Topics: 4-Nitroquinoline-1-oxide; Acacia; Animals; Antineoplastic Agents, Phytogenic; Antioxidants; Carcinom | 2017 |
Gallic acid modulates phenotypic behavior and gene expression in oral squamous cell carcinoma cells by interfering with leptin pathway.
Topics: Carcinoma, Squamous Cell; Cell Line, Tumor; Cell Movement; Cell Proliferation; Gallic Acid; Gene Exp | 2018 |
Ethyl gallate as a novel ERK1/2 inhibitor suppresses patient-derived esophageal tumor growth.
Topics: Animals; Apoptosis; Carcinoma, Squamous Cell; Cell Cycle; Cell Proliferation; Enzyme Inhibitors; Eso | 2019 |
In vitro evaluation of antiproliferative effect of ethyl gallate against human oral squamous carcinoma cell line KB.
Topics: Apoptosis; Carcinoma, Squamous Cell; Cell Proliferation; DNA Damage; Gallic Acid; Humans; KB Cells; | 2015 |
Evaluation of the antineoplastic activity of gallic acid in oral squamous cell carcinoma under hypoxic conditions.
Topics: Antineoplastic Agents; Cadherins; Carcinoma, Squamous Cell; Caspase 3; Cell Hypoxia; Cell Line, Tumo | 2016 |
Anti-neoplastic effects of gallic acid, a major component of Toona sinensis leaf extract, on oral squamous carcinoma cells.
Topics: Antineoplastic Agents, Phytogenic; Apoptosis; Apoptosis Regulatory Proteins; Carcinoma, Squamous Cel | 2010 |
Mechanism of action of (-)-epigallocatechin-3-gallate: auto-oxidation-dependent inactivation of epidermal growth factor receptor and direct effects on growth inhibition in human esophageal cancer KYSE 150 cells.
Topics: Benzopyrans; Biflavonoids; Carcinoma, Squamous Cell; Catechin; Cell Growth Processes; Cell Line, Tum | 2005 |
Theaflavin-3, 3'-digallate induces epidermal growth factor receptor downregulation.
Topics: Biflavonoids; Carcinoma, Squamous Cell; Catechin; Cell Line, Tumor; Down-Regulation; ErbB Receptors; | 2006 |
Sodium cyanide increases cytosolic free calcium: evidence for activation of the reversed mode of the Na+/Ca2+ exchanger and Ca2+ mobilization from inositol trisphosphate-insensitive pools.
Topics: Amiloride; Bradykinin; Calcium; Calcium Channels; Carcinoma, Squamous Cell; Carrier Proteins; Cytoso | 1994 |
Suppression of extracellular signals and cell proliferation by the black tea polyphenol, theaflavin-3,3'-digallate.
Topics: 3T3 Cells; Animals; Biflavonoids; Carcinoma, Squamous Cell; Catechin; Cell Division; Epidermal Growt | 1999 |
Induction of apoptosis by gallic acid in lung cancer cells.
Topics: Adenocarcinoma; Antineoplastic Agents; Apoptosis; Carcinoma, Small Cell; Carcinoma, Squamous Cell; C | 1999 |
Effect of intracellular pH on cytosolic free [Ca2+] in human epidermoid A-431 cells.
Topics: Calcium; Calcium Channel Blockers; Carcinoma, Squamous Cell; Cations; Cyclic AMP; Cytosol; Egtazic A | 1991 |