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Original Articles

New Polyoxygenated Cyclohexenes from Uvaria Calamistrata

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Pages 227-238 | Received 17 Jun 1998, Accepted 06 Sep 1998, Published online: 04 Oct 2006

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Read on this site (4)

Guang-xiong Zhou, Ruo-yun Chen & De-quan Yu. (2011) Uvacalols I, J and K: new polyoxygenated cyclohexenes with all trans relative configurations from the roots of Uvaria calamistrata Hance. Natural Product Research 25:2, pages 161-168.
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Guang-Xiong Zhou, Yan-Jun Zhang, Ruo-Yun Chen & De-Quan Yu. (2010) Three polyoxygenated cyclohexenes from Uvaria calamistrata . Journal of Asian Natural Products Research 12:8, pages 696-701.
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Si Wang, Pei-Cheng Zhang, Ruo-Yun Chen, Sheng-Jun Dai, Shi-Shan Yu & De-Quan Yu. (2005) Four new compounds from the roots of Uvaria macrophylla . Journal of Asian Natural Products Research 7:5, pages 687-694.
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Si Wang, Ruo-Yun Chen, Shi-Shan Yu & De-Quan Yu. (2003) Uvamalols D-G: Novel polyoxygenated seco-cyclohexenes from the roots of Uvaria macrophylla . Journal of Asian Natural Products Research 5:1, pages 17-23.
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Articles from other publishers (10)

Yuanliang Jia, Maolin Wang, Folei Wu, Yue Wang & Xiaochuan Chen. (2022) A Synthetic Approach to Several C7-Carbasugars via a Key Intramolecular Morita–Baylis–Hillman Reaction. The Journal of Organic Chemistry 87:21, pages 14636-14645.
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Banothu Surender, Allam Vinaykumar, Hanumantharayappa Bharathkumar & Batchu Venkateswara Rao. (2022) Concise Synthesis of (1R,2S,3R,6R)-6-Ethoxy-4-(hydroxymethyl)cyclohex-4-ene-1,2,3-triol, a Key Intermediate for the Synthesis of Uvacalols I and J. Synlett 33:06, pages 551-554.
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Gasper Maeda, Pieter J. Gilissen, Anastasia Rudenko, Jelle van der Wal, Catarina Bourgard, Arvind Kumar Gupta, Per Sunnerhagen, Joan J. E. Munissi, Stephen S. Nyandoro & Máté Erdélyi. (2021) Oxygenated Cyclohexene Derivatives from the Stem and Root Barks of Uvaria pandensis . Journal of Natural Products 84:12, pages 3080-3089.
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Gasper Maeda, Jelle van der Wal, Arvind Kumar Gupta, Joan J. E. Munissi, Andreas Orthaber, Per Sunnerhagen, Stephen S. Nyandoro & Máté Erdélyi. (2020) Oxygenated Cyclohexene Derivatives and Other Constituents from the Roots of Monanthotaxis trichocarpa . Journal of Natural Products 83:2, pages 210-215.
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Stephen S. Nyandoro, Joan J. E. Munissi, Amra Gruhonjic, Sandra Duffy, Fangfang Pan, Rakesh Puttreddy, John P. Holleran, Paul A. Fitzpatrick, Jerry Pelletier, Vicky M. Avery, Kari Rissanen & Máté Erdélyi. (2016) Polyoxygenated Cyclohexenes and Other Constituents of Cleistochlamys kirkii Leaves . Journal of Natural Products 80:1, pages 114-125.
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Adiyala Vidyasagar & Kana M. Sureshan. (2015) Total syntheses of five uvacalols: structural validation of uvacalol A, uvacalol B and uvacalol C and disproval of the structures of uvacalol E and uvacalol G. Organic & Biomolecular Chemistry 13:13, pages 3900-3910.
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Soumik Mondal & Kana M. Sureshan. (2014) Total syntheses and structural validation of lincitol A, lincitol B, uvacalol I, uvacalol J, and uvacalol K. Org. Biomol. Chem. 12:37, pages 7279-7289.
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Suresh Awale, Jun-ya Ueda, Sirivan Athikomkulchai, Sherif Abdelhamed, Satoru Yokoyama, Ikuo Saiki & Ryuta Miyatake. (2012) Antiausterity Agents from Uvaria dac and Their Preferential Cytotoxic Activity against Human Pancreatic Cancer Cell Lines in a Nutrient-Deprived Condition . Journal of Natural Products 75:6, pages 1177-1183.
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Florie A. Tudla, Alicia M. Aguinaldo, Karsten Krohn, Hidayat Hussain & Allan Patrick G. Macabeo. (2007) Highly oxygenated cyclohexene metabolites from Uvaria rufa. Biochemical Systematics and Ecology 35:1, pages 45-47.
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Anake Kijjoa, Julia Bessa, Madalena M.M. Pinto, Choojit Anatachoke, Artur M.S. Silva, Graham Eaton & Werner Herz. (2002) Polyoxygenated cyclohexene derivatives from Ellipeiopsis cherrevensis. Phytochemistry 59:5, pages 543-549.
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