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Natural Product Research
Formerly Natural Product Letters
Volume 22, 2008 - Issue 11
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Original Articles

Anthraquinones from the roots of Prismatomeris malayana

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Pages 962-968 | Received 03 Jul 2007, Accepted 24 Aug 2007, Published online: 27 Jul 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Phoebe Sussana Primus, Carol Hsin-Yi Wu, Chai-Lin Kao & Yeun-Mun Choo. (2022) Glabraquinone A and B, new bisanthraquinones from Prismatomeris glabra (Korth.) Valeton. Natural Product Research 0:0, pages 1-8.
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Mohd Nasarudin Watroly, Mahendran Sekar, Shivkanya Fuloria, Siew Hua Gan, Srikanth Jeyabalan, Yuan Seng Wu, Vetriselvan Subramaniyan, Kathiresan V Sathasivam, Subban Ravi, Nur Najihah Izzati Mat Rani, Pei Teng Lum, Jaishree Vaijanathappa, Dhanalekshmi Unnikrishnan Meenakshi, Shankar Mani & Neeraj Kumar Fuloria. (2021) Chemistry, Biosynthesis, Physicochemical and Biological Properties of Rubiadin: A Promising Natural Anthraquinone for New Drug Discovery and Development. Drug Design, Development and Therapy 15, pages 4527-4549.
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Awat Wisetsai, Ratsami Lekphrom & Florian T. Schevenels. (2021) New anthracene and anthraquinone metabolites from Prismatomeris filamentosa and their antibacterial activities. Natural Product Research 35:10, pages 1582-1589.
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Articles from other publishers (11)

Pham Ngoc Khanh, Tran Thu Huong, Ottavia Spiga, Alfonso Trezza, Ninh The Son, To Dao Cuong, Vu Thi Ha & Nguyen Manh Cuong. (2018) In silico screening of anthraquinones from Prismatomeris memecyloides as novel phosphodiesterase type-5 inhibitors (PDE-5Is). Revista Internacional de Andrología 16:4, pages 147-158.
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Ninh The Son. (2017) An overview of the genus Prismatomeris : Phytochemistry and biological activity. Bulletin of Faculty of Pharmacy, Cairo University 55:1, pages 11-18.
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Abdul-Wahab Salae, Orapan Chairerk, Piyanut Sukkoet, Therdsak Chairat, Uma Prawat, Pittaya Tuntiwachwuttikul, Piya Chalermglin & Somsak Ruchirawat. (2017) Antiplasmodial dimeric chalcone derivatives from the roots of Uvaria siamensis. Phytochemistry 135, pages 135-143.
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Che Puteh Osman, Nor Hadiani Ismail, Agustono Wibowo & Rohaya Ahmad. (2016) Two new pyranoanthraquinones from the root of Rennellia elliptica Korth. (Rubiaceae). Phytochemistry Letters 16, pages 225-229.
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Daiane Martins & Cecilia Nunez. (2015) Secondary Metabolites from Rubiaceae Species. Molecules 20:7, pages 13422-13495.
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Shih-Chang Chien, Yueh-Chen Wu, Zeng-Weng Chen & Wen-Chin Yang. (2015) Naturally Occurring Anthraquinones: Chemistry and Therapeutic Potential in Autoimmune Diabetes. Evidence-Based Complementary and Alternative Medicine 2015, pages 1-13.
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Rownak Jahan, Taufiq Rahman & Mohammed Rahmatullah. 2013. Antifungal Metabolites from Plants. Antifungal Metabolites from Plants 333 366 .
Shi‐Xiu Feng, Jing Hao, Tao Chen & Samuel X. ;(Shengxiang) Qiu. (2011) A New Anthraquinone and Two New Tetrahydroanthraquinones from the Roots of Prismatomeris connata . Helvetica Chimica Acta 94:10, pages 1843-1849.
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Che Puteh Osman, Nor Hadiani Ismail, Rohaya Ahmad, Norizan Ahmat, Khalijah Awang & Faridahanim Mohd Jaafar. (2010) Anthraquinones with Antiplasmodial Activity from the Roots of Rennellia elliptica Korth. (Rubiaceae). Molecules 15:10, pages 7218-7226.
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Cun-Li Zhang, Hua Guan, Peng-Zhou Xi, Tao Deng & Jin-Ming Gao. (2010) Anthraquinones from the Roots of Prismatomeris Tetrandra . Natural Product Communications 5:8, pages 1934578X1000500.
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Joanne Bero, Michel Frédérich & Joëlle Quetin-Leclercq. (2009) Antimalarial compounds isolated from plants used in traditional medicine. Journal of Pharmacy and Pharmacology 61:11, pages 1401-1433.
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