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Molecular docking of bioactive compounds derived from Moringa oleifera with p53 protein in the apoptosis pathway of oral squamous cell carcinoma
Sonali Rath, Manaswini Jagadeb, Ruchi Bhuyan
Genomics Inform. 2021;19(4):e46  Published online December 31, 2021
DOI: https://doi.org/10.5808/gi.21062

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Molecular docking of bioactive compounds derived from Moringa oleifera with p53 protein in the apoptosis pathway of oral squamous cell carcinoma
Genomics & Informatics. 2021;19(4):e46   Crossref logo
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Nitric oxide induces oral squamous cell carcinoma cell apoptosis with p53 accumulation [Oral Oncology 41 (8) (2005) 785–790]
Oral Oncology. 2005;41(8):783-784   Crossref logo
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Identification of Bioactive Candidate Compounds Responsible for Oxidative Challenge from Hydro-Ethanolic Extract ofMoringa oleiferaLeaves
Journal of Food Science. 2013;78(9):C1368-C1375   Crossref logo
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466. Downregulation of ATF2 Desensitizes Oral Squamous Cell Carcinoma to Apoptosis
Molecular Therapy. 2004;9:S177   Crossref logo
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Nitric oxide induces oral squamous cell carcinoma cells apoptosis with p53 accumulation
Oral Oncology. 2005;41(8):785-790   Crossref logo
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Marine bioactive compounds as potential therapeutic inhibitor for oral squamous cell carcinoma (OSCC)
Oral Oncology. 2022;131:105971   Crossref logo
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<p>Downregulation of GBAS regulates oral squamous cell carcinoma proliferation and apoptosis via the p53 signaling pathway</p>
OncoTargets and Therapy. 2019;Volume 12:3729-3742   Crossref logo
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N-α-Acetyltransferase 10 protein inhibits invasion and metastasis of oral squamous cell carcinoma via regulating Pirh2-p53 signaling pathway
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p53- and p21-independent apoptosis of squamous cell carcinoma cells induced by 5-fluorouracil and radiation
Oral Oncology. 1998;34(6):529-537   Crossref logo
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Molecular Pathogenesis of Oral Squamous Cell Carcinoma
Squamous Cell Carcinoma - Hallmark and Treatment Modalities. 2020;   Crossref logo
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