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Research Article

Antitumor activity and antioxidant property of Curcuma caesia against Ehrlich’s ascites carcinoma bearing mice

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Pages 753-759 | Received 15 Jun 2012, Accepted 06 Jan 2013, Published online: 25 Mar 2013

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Mohammad Al-Amin, Nagla Mustafa Eltayeb, Melati Khairuddean & Salizawati Muhamad Salhimi. (2021) Bioactive chemical constituents from Curcuma caesia Roxb. rhizomes and inhibitory effect of curcuzederone on the migration of triple-negative breast cancer cell line MDA-MB-231. Natural Product Research 35:18, pages 3166-3170.
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Monika Chaturvedi, Reena Rani, Dushyant Sharma & Jaya Parkash Yadav. (2021) Comparison of Curcuma Caesia extracts for bioactive metabolite composition, antioxidant and antimicrobial potential. Natural Product Research 35:18, pages 3131-3135.
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Sanatombi Rajkumari & K. Sanatombi. (2017) Nutritional value, phytochemical composition, and biological activities of edible Curcuma species: A review. International Journal of Food Properties 20:sup3, pages S2668-S2687.
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Arvind Kumar Bhardwaj, Nand Kumar Kashyap, Sanjoy Kumar Bera, Milan Hait & Harishankar Dewangan. (2023) Proximate composition and mineral content analysis of Curcuma caesia rhizome. Biochemical Systematics and Ecology 109, pages 104661.
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Ankuri Benya, Subhadarsini Mohanty, Sujata Hota, Alok Prasad Das, Chandi Charan Rath, K. Gopinath Achary & Shikha Singh. (2023) Endangered Curcuma caesia Roxb.: Qualitative and quantitative analysis for identification of industrially important elite genotypes. Industrial Crops and Products 195, pages 116363.
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Sahar S. Mohamed, Abeer Y. Ibrahim, Mohsen S. Asker, Manal G. Mahmoud & Samah A. El-Newary. (2021) Production, structural and biochemical characterization relevant to antitumor property of acidic exopolysaccharide produced from Bacillus sp. NRC5. Archives of Microbiology 203:7, pages 4337-4350.
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Abdelgawad A. Fahmi, Mohamed A. El Raey, Abeer Y. Ibrahim, Mohamed A.O. Abdelfattah, Abeer M Abdelmageed & Mansour Sobeh. (2021) A sulfated polyphenols-rich extract from Sabal yapa exhibits antitumor activities in Ehrlich ascites carcinoma. Saudi Journal of Biological Sciences 28:5, pages 3117-3125.
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Amulya Giridasappa, Dinesh Rangappa, Gopinath Shanubhoganahalli Maheswarappa, Navya Rani Marilingaiah, Chandrashekara Kagepura Thammaiah, Ismail. M. Shareef, Rangappa Kanchugarakoppal Subbegowda & Prasanna Doddakunche Shivaramu. (2021) Phytofabrication of cupric oxide nanoparticles using Simarouba glauca and Celastrus paniculatus extracts and their enhanced apoptotic inducing and anticancer effects. Applied Nanoscience 11:4, pages 1393-1409.
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Maram Hussein Zahra, Tarek A.R. Salem, Bishoy El-Aarag, Nermeen Yosri, Samah EL-Ghlban, Kholoud Zaki, Amel H. Marei, Aida Abd El-Wahed, Aamer Saeed, Alfi Khatib, Mohamed F. AlAjmi, Abdulrahman M. Shathili, Jianbo Xiao, Shaden A. M. Khalifa & Hesham R. El-Seedi. (2019) Alpinia zerumbet (Pers.): Food and Medicinal Plant with Potential In Vitro and In Vivo Anti-Cancer Activities. Molecules 24:13, pages 2495.
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Abeer Y. Ibrahim, Samah A. El-Newary & Gamil E. Ibrahim. (2019) Antioxidant, cytotoxicity and anti-tumor activity of Cordia dichotoma fruits accompanied with its volatile and sugar composition. Annals of Agricultural Sciences 64:1, pages 29-37.
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Mohamed El-Far, Neven Salah, Alaa Essam, Amira Abd El-Azim, Mahmoud Karam & Ibrahim M El-Sherbiny. (2019) Potential anticancer activity and mechanism of action of nanoformulated curcumin in experimental Ehrlich ascites carcinoma-bearing animals. Nanomedicine 14:5, pages 553-573.
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K.S. Mukunthan, R.S. Satyan & T.N. Patel. (2017) Pharmacological evaluation of phytochemicals from South Indian Black Turmeric ( Curcuma caesia Roxb.) to target cancer apoptosis. Journal of Ethnopharmacology 209, pages 82-90.
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Samah A. El-Newary, Abeer Y. Ibrahim, Mohsen S. Asker, Manal G. Mahmoud & Mohamed E. El Awady. (2017) Production, characterization and biological activities of acidic exopolysaccharide from marine Bacillus amyloliquefaciens 3MS 2017. Asian Pacific Journal of Tropical Medicine 10:7, pages 652-662.
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Sweetymol Jose & T. Dennis Thomas. (2015) High-frequency callus organogenesis, large-scale cultivation and assessment of clonal fidelity of regenerated plants of Curcuma caesia Roxb., an important source of camphor. Agroforestry Systems 89:5, pages 779-788.
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Sweetymol Jose & T. Dennis Thomas. (2015) Abiotic stresses increase plant regeneration ability of rhizome explants of Curcuma caesia Roxb.. Plant Cell, Tissue and Organ Culture (PCTOC) 122:3, pages 767-772.
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