kojic acid has been researched along with Malignant Melanoma in 22 studies
Excerpt | Relevance | Reference |
---|---|---|
"Mannich bases of kojic acid derivatives may be promising therapeutic agents, since some have more potent effects on melanoma cells than previously FDA-approved drugs for the treatment of malignant melanoma." | 7.88 | Synthesis and Cytotoxic Evaluation of Kojic Acid Derivatives with Inhibitory Activity on Melanogenesis in Human Melanoma Cells. ( Aytemir, MD; Ercan, A; Karakaya, G; Oncul, S, 2018) |
"Although the toxicogenomics of kojic acid treated A375 human malignant melanoma cells has been elucidated, the proteomics of cellular response is still poorly understood." | 7.74 | Proteomics analysis of kojic acid treated A375 human malignant melanoma cells. ( Chen, ST; Cheng, SL; Huang-Liu, R; Kao, SH; Liao, HH; Nawarak, J; Sinchaikul, S, 2008) |
"the sesamol- and kojic-treated SK-MEL2 cells." | 5.40 | Application of FTIR microspectroscopy for characterization of biomolecular changes in human melanoma cells treated by sesamol and kojic acid. ( Barusrux, S; Srisayam, M; Tanthanuch, W; Thumanu, K; Weerapreeyakul, N, 2014) |
"Kojic acid is a natural product and normally used as a food additive and preservative, a skin-whitening agent in cosmetics, a plant growth regulator and a chemical intermediate." | 5.33 | Toxicogenomics of kojic acid on gene expression profiling of a375 human malignant melanoma cells. ( Chen, ST; Cheng, SL; Huang Liu, R; Sheu, JN; Sinchaikul, S; Tsay, GJ, 2006) |
"Mannich bases of kojic acid derivatives may be promising therapeutic agents, since some have more potent effects on melanoma cells than previously FDA-approved drugs for the treatment of malignant melanoma." | 3.88 | Synthesis and Cytotoxic Evaluation of Kojic Acid Derivatives with Inhibitory Activity on Melanogenesis in Human Melanoma Cells. ( Aytemir, MD; Ercan, A; Karakaya, G; Oncul, S, 2018) |
"the sesamol- and kojic-treated SK-MEL2 cells." | 1.40 | Application of FTIR microspectroscopy for characterization of biomolecular changes in human melanoma cells treated by sesamol and kojic acid. ( Barusrux, S; Srisayam, M; Tanthanuch, W; Thumanu, K; Weerapreeyakul, N, 2014) |
"Kojic acid is a natural product and normally used as a food additive and preservative, a skin-whitening agent in cosmetics, a plant growth regulator and a chemical intermediate." | 1.33 | Toxicogenomics of kojic acid on gene expression profiling of a375 human malignant melanoma cells. ( Chen, ST; Cheng, SL; Huang Liu, R; Sheu, JN; Sinchaikul, S; Tsay, GJ, 2006) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 0 (0.00) | 18.7374 |
1990's | 2 (9.09) | 18.2507 |
2000's | 5 (22.73) | 29.6817 |
2010's | 11 (50.00) | 24.3611 |
2020's | 4 (18.18) | 2.80 |
Authors | Studies |
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Criton, M | 1 |
Le Mellay-Hamon, V | 1 |
Yamazaki, Y | 1 |
Kawano, Y | 1 |
Yamanaka, A | 1 |
Maruyama, S | 1 |
Nam, JH | 1 |
Nam, DY | 1 |
Lee, DU | 1 |
Ferro, S | 1 |
De Luca, L | 1 |
Germanò, MP | 1 |
Buemi, MR | 1 |
Ielo, L | 1 |
Certo, G | 1 |
Kanteev, M | 1 |
Fishman, A | 1 |
Rapisarda, A | 1 |
Gitto, R | 1 |
Ullah, S | 1 |
Kang, D | 1 |
Lee, S | 1 |
Ikram, M | 1 |
Park, C | 1 |
Park, Y | 1 |
Yoon, S | 1 |
Chun, P | 1 |
Moon, HR | 1 |
Santi, MD | 1 |
Peralta, MA | 1 |
Puiatti, M | 1 |
Cabrera, JL | 1 |
Ortega, MG | 1 |
Nazir, Y | 1 |
Saeed, A | 1 |
Rafiq, M | 1 |
Afzal, S | 1 |
Ali, A | 1 |
Latif, M | 1 |
Zuegg, J | 1 |
Hussein, WM | 1 |
Fercher, C | 1 |
Barnard, RT | 1 |
Cooper, MA | 1 |
Blaskovich, MAT | 1 |
Ashraf, Z | 1 |
Ziora, ZM | 1 |
Roulier, B | 1 |
Pérès, B | 1 |
Haudecoeur, R | 1 |
Vanjare, BD | 1 |
Choi, NG | 1 |
Mahajan, PG | 1 |
Raza, H | 2 |
Hassan, M | 2 |
Han, Y | 1 |
Yu, SM | 1 |
Kim, SJ | 2 |
Seo, SY | 2 |
Lee, KH | 1 |
Cardoso, R | 1 |
Valente, R | 1 |
Souza da Costa, CH | 1 |
da S Gonçalves Vianez, JL | 1 |
Santana da Costa, K | 1 |
de Molfetta, FA | 1 |
Nahum Alves, C | 1 |
Abbas, Q | 1 |
Phull, AR | 1 |
Karakaya, G | 1 |
Ercan, A | 1 |
Oncul, S | 1 |
Aytemir, MD | 1 |
Peng, M | 1 |
Wang, Y | 1 |
Fu, Q | 1 |
Sun, F | 1 |
Na, N | 1 |
Ouyang, J | 1 |
Micillo, R | 1 |
Sirés-Campos, J | 1 |
García-Borrón, JC | 1 |
Panzella, L | 1 |
Napolitano, A | 1 |
Olivares, C | 1 |
Srisayam, M | 1 |
Weerapreeyakul, N | 1 |
Barusrux, S | 1 |
Tanthanuch, W | 1 |
Thumanu, K | 1 |
Nawarak, J | 1 |
Huang-Liu, R | 1 |
Kao, SH | 1 |
Liao, HH | 1 |
Sinchaikul, S | 2 |
Chen, ST | 2 |
Cheng, SL | 2 |
Li, X | 1 |
Guo, L | 1 |
Sun, Y | 1 |
Zhou, J | 1 |
Gu, Y | 1 |
Li, Y | 1 |
Miyake, M | 1 |
Yamamoto, S | 1 |
Sano, O | 1 |
Fujii, M | 1 |
Kohno, K | 1 |
Ushio, S | 1 |
Iwaki, K | 1 |
Fukuda, S | 1 |
Kim, DH | 1 |
Hwang, JS | 1 |
Baek, HS | 1 |
Kim, KJ | 1 |
Lee, BG | 1 |
Chang, I | 1 |
Kang, HH | 1 |
Lee, OS | 1 |
Huang Liu, R | 1 |
Sheu, JN | 1 |
Tsay, GJ | 1 |
Kobayashi, R | 1 |
Takisada, M | 1 |
Suzuki, T | 1 |
Kirimura, K | 1 |
Usami, S | 1 |
Mishima, Y | 1 |
2 reviews available for kojic acid and Malignant Melanoma
Article | Year |
---|---|
Advances in the Design of Genuine Human Tyrosinase Inhibitors for Targeting Melanogenesis and Related Pigmentations.
Topics: Agaricales; Amino Acid Sequence; Biological Factors; Drug Delivery Systems; Drug Design; Enzyme Inhi | 2020 |
A post melanosomal era: control of melanogenesis and melanoma growth.
Topics: Adolescent; Animals; Boron; Boron Compounds; Cricetinae; Fatty Acids, Unsaturated; Gene Expression R | 1992 |
20 other studies available for kojic acid and Malignant Melanoma
Article | Year |
---|---|
Analogues of N-hydroxy-N'-phenylthiourea and N-hydroxy-N'-phenylurea as inhibitors of tyrosinase and melanin formation.
Topics: Agaricales; Animals; Cell Line, Tumor; Dose-Response Relationship, Drug; Inhibitory Concentration 50 | 2008 |
N-[(Dihydroxyphenyl)acyl]serotonins as potent inhibitors of tyrosinase from mouse and human melanoma cells.
Topics: Animals; Antineoplastic Agents; Cell Line, Tumor; Drug Design; Drug Screening Assays, Antitumor; Enz | 2009 |
Valencene from the Rhizomes of Cyperus rotundus Inhibits Skin Photoaging-Related Ion Channels and UV-Induced Melanogenesis in B16F10 Melanoma Cells.
Topics: Animals; Cyperus; Melanins; Melanoma; Mice; Molecular Structure; Republic of Korea; Rhizome; Sesquit | 2016 |
Chemical exploration of 4-(4-fluorobenzyl)piperidine fragment for the development of new tyrosinase inhibitors.
Topics: Agaricales; Binding, Competitive; Enzyme Inhibitors; Inhibitory Concentration 50; Kinetics; Melanoma | 2017 |
Synthesis of cinnamic amide derivatives and their anti-melanogenic effect in α-MSH-stimulated B16F10 melanoma cells.
Topics: Agaricales; Amides; Antineoplastic Agents; Cell Proliferation; Cell Survival; Cinnamates; Dose-Respo | 2019 |
Melanogenic inhibitory effects of Triangularin in B16F0 melanoma cells, in vitro and molecular docking studies.
Topics: Humans; Melanoma; Molecular Docking Simulation | 2019 |
Hydroxyl substituted benzoic acid/cinnamic acid derivatives: Tyrosinase inhibitory kinetics, anti-melanogenic activity and molecular docking studies.
Topics: Benzoic Acid; Cinnamates; Humans; Melanoma; Molecular Docking Simulation; Structure-Activity Relatio | 2020 |
Novel 1,3,4-oxadiazole compounds inhibit the tyrosinase and melanin level: Synthesis, in-vitro, and in-silico studies.
Topics: Antineoplastic Agents; Cell Line, Tumor; Cell Survival; Humans; Melanins; Melanoma; Models, Molecula | 2021 |
Analysis of Kojic Acid Derivatives as Competitive Inhibitors of Tyrosinase: A Molecular Modeling Approach.
Topics: Catalytic Domain; Enzyme Inhibitors; Humans; Levodopa; Melanins; Melanocytes; Melanoma; Molecular Do | 2021 |
Acetazolamide Inhibits the Level of Tyrosinase and Melanin: An Enzyme Kinetic, In Vitro, In Vivo, and In Silico Studies.
Topics: Acetazolamide; Agaricales; Animals; Cell Line, Tumor; Cell Survival; Computer Simulation; Enzyme Inh | 2017 |
Synthesis and Cytotoxic Evaluation of Kojic Acid Derivatives with Inhibitory Activity on Melanogenesis in Human Melanoma Cells.
Topics: Antineoplastic Agents; Cell Line, Tumor; Drug Screening Assays, Antitumor; Humans; Mannich Bases; Me | 2018 |
Melanosome-Targeting Near-Infrared Fluorescent Probe with Large Stokes Shift for in Situ Quantification of Tyrosinase Activity and Assessing Drug Effects on Differently Invasive Melanoma Cells.
Topics: Ficusin; Fluorescent Dyes; Humans; Infrared Rays; Melanoma; Melanosomes; Monophenol Monooxygenase; N | 2018 |
Conjugation with Dihydrolipoic Acid Imparts Caffeic Acid Ester Potent Inhibitory Effect on Dopa Oxidase Activity of Human Tyrosinase.
Topics: Agaricales; Caffeic Acids; Cell Line, Tumor; Cell Survival; Dose-Response Relationship, Drug; Enzyme | 2018 |
Application of FTIR microspectroscopy for characterization of biomolecular changes in human melanoma cells treated by sesamol and kojic acid.
Topics: Benzodioxoles; Cell Line, Tumor; Cell Survival; Humans; Melanoma; Phenols; Principal Component Analy | 2014 |
Proteomics analysis of kojic acid treated A375 human malignant melanoma cells.
Topics: Base Sequence; Blotting, Western; Cell Line, Tumor; DNA Primers; Electrophoresis, Gel, Two-Dimension | 2008 |
Baicalein inhibits melanogenesis through activation of the ERK signaling pathway.
Topics: Animals; Cell Death; Cell Line, Tumor; Cell Survival; Down-Regulation; Enzyme Activation; Extracellu | 2010 |
Inhibitory effects of 2-amino-3H-phenoxazin-3-one on the melanogenesis of murine B16 melanoma cell line.
Topics: Agaricales; Animals; Cell Line, Tumor; Indoles; Melanins; Melanoma; Melanoma, Experimental; Mice; Mi | 2010 |
Development of 5-[(3-aminopropyl)phosphinooxy]-2-(hydroxymethyl)-4H-pyran-4-one as a novel whitening agent.
Topics: Animals; Dermatologic Agents; Female; Guinea Pigs; Humans; Melanins; Melanocytes; Melanoma; Mice; Py | 2003 |
Toxicogenomics of kojic acid on gene expression profiling of a375 human malignant melanoma cells.
Topics: Antioxidants; Cell Line, Tumor; Cell Survival; Computational Biology; Gene Amplification; Gene Expre | 2006 |
Neoagarobiose as a novel moisturizer with whitening effect.
Topics: Animals; Arbutin; Disaccharides; Melanoma; Mice; Pyrones; Skin Care; Tumor Cells, Cultured; Wettabil | 1997 |