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Articles

A new 2-(2-phenylethyl)chromone derivative in Chinese agarwood ‘Qi-Nan’ from Aquilaria sinensis

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Pages 770-776 | Received 12 Nov 2013, Accepted 16 Feb 2014, Published online: 20 Mar 2014

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Jun-Tao Li, Tong-Dong Kuang, Hui-Qin Chen, Li Yang, Hao Wang, Cai-Hong Cai, Shou-Bai Liu, Wen-Li Mei & Hao-Fu Dai. (2022) New 2-(2-Phenylethyl)chromone derivatives from agarwood originating from Aquilaria sinensis. Journal of Asian Natural Products Research 24:11, pages 1033-1040.
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Yang-Mei Zhao, Li Yang, Fan-Dong Kong, Wen-Hua Dong, Wei Li, Hui-Qin Chen, Hao Wang, Cai-Hong Cai, Cui-Juan Gai, Wen-Li Mei & Hao-Fu Dai. (2021) Three new 5,6,7,8-tetrahydro-2-(2-phenylethyl)chromones and one new dimeric 2-(2-phenylethyl)chromone from agarwood of Aquilaria crassna Pierre ex Lecomte in Laos. Natural Product Research 35:14, pages 2295-2302.
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Chun-Ge Li, Li Pan, Zhu-Zhen Han, Yan-Qiao Xie, Hai-Jun Hu, Xiao-Long Liu, Li-Hong Wu, Li Yang & Zheng-Tao Wang. (2020) Antioxidative 2-(2-phenylethyl)chromones in Chinese eaglewood from Aquilaria sinensis. Journal of Asian Natural Products Research 22:7, pages 639-646.
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Yang-Yang Liu, De-Li Chen, Zhang-Xin Yu, Wang Can-Hong, Jian Feng, Yu Meng & Jian-He Wei. (2020) New 2-(2-phenylethyl)chromone derivatives from agarwood and their inhibitory effects on tumor cells. Natural Product Research 34:12, pages 1721-1727.
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Li Yang, Yi-Ling Yang, Wen-Hua Dong, Wei Li, Pei Wang, Xue Cao, Jing-Zhe Yuan, Hui-Qin Chen, Wen-Li Mei & Hao-Fu Dai. (2019) Sesquiterpenoids and 2-(2-phenylethyl)chromones respectively acting as α-glucosidase and tyrosinase inhibitors from agarwood of an Aquilaria plant. Journal of Enzyme Inhibition and Medicinal Chemistry 34:1, pages 853-862.
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Hong-Ni Wang, Wen-Li Mei, Wen-Hua Dong, Fan-Dong Kong, Wei Li, Jing-Zhe Yuan & Hao-Fu Dai. (2018) Two new 2-(2-Hydroxy-2-phenylethyl)chromens from agarwood originating from Aquilaria crassna. Journal of Asian Natural Products Research 20:2, pages 122-127.
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Hang Shao, Fan-Dong Kong, Hao Wang, Wen-Li Mei & Hao-Fu Dai. (2017) Qinanmer, a new compound from Chinese agarwood ‘Qi-Nan’ originating from Aquilaria sinensis. Journal of Asian Natural Products Research 19:9, pages 935-940.
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Sabrin R.M. Ibrahim & Gamal A. Mohamed. (2015) Natural occurring 2-(2-phenylethyl) chromones, structure elucidation and biological activities. Natural Product Research 29:16, pages 1489-1520.
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Articles from other publishers (31)

Zhen Yu, Wenhua Dong, Yali Wang, Wei Li, Zhiyong Guo, Wenli Mei & Haofu Dai. (2023) Identification of aroma‐active components from cultivated agarwood ‘ Qi‐Nan ’ based on GC‐O‐MS combined with aroma extract dilution analysis . Flavour and Fragrance Journal 38:5, pages 392-403.
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Santosh Kumar Rath, Shweta Ramkar & Preeti K. Suresh. 2023. The Role of Chromenes in Drug Discovery and Development. The Role of Chromenes in Drug Discovery and Development 100 128 .
Meng Yu, Qing‐Qin He, Xi‐Qin Chen, Jian Feng, Jian‐He Wie & Yang‐Yang Liu. (2022) Chemical and Bioactivity Diversity of 2‐(2‐Phenylethyl)chromones in Agarwood: A Review. Chemistry & Biodiversity 19:12.
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Pan Xu, Zijian Zhong, Haixuan Huang, Wang Pan, Yan Zhang & Aihua Zhou. (2022) Electrooxidative tandem cyclization of enaminones to give 3-arylthiochromone derivatives. Tetrahedron 124, pages 133018.
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Meiyan Fan, Wei Yang, Min He, Yongjun Li, Zhiyun Peng & Guangcheng Wang. (2022) Occurrence, synthesis and biological activity of 2-(2-phenyethyl)chromones. European Journal of Medicinal Chemistry 237, pages 114397.
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Anjitha Theres Benny, Sonia D. Arikkatt, Cijo George Vazhappilly, Sathananthan Kannadasan, Renjan Thomas, Manju Sreedharan Nair Leelabaiamma, Ethiraj Kannatt Radhakrishnan & Ponnusamy Shanmugam. (2022) Chromone, A Privileged Scaffold in Drug Discovery: Developments in the Synthesis and Bioactivity. Mini-Reviews in Medicinal Chemistry 22:7, pages 1030-1063.
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Fang-Zheng Liu, Hao Wang, Wei Li, Li Yang, Jin-Ling Yang, Jing-Zhe Yuan, Yan-Mei Wei, Bei Jiang, Wen-Li Mei & Hao-Fu Dai. (2021) Filarones A and B, new anti-inflammatory dimeric 2-(2-phenethyl)chromones from agarwood of Aquilaria filaria. Phytochemistry Letters 46, pages 11-14.
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Lee Suan Chua, Abirame Segaran & Hoi Jin Wong. (2021) LC-PDA-MS/MS-Based Characterization of Key Phytochemicals in Eurycoma Longifolia Roots . Journal of Chromatographic Science 59:7, pages 659-669.
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Wei Li, Hui-Qin Chen, Hao Wang, Wen-Li Mei & Hao-Fu Dai. (2021) Natural products in agarwood and Aquilaria plants: chemistry, biological activities and biosynthesis . Natural Product Reports 38:3, pages 528-565.
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Li Yang, Jin-Ling Yang, Wen-Hua Dong, Ya-Li Wang, Jun Zeng, Jing-Zhe Yuan, Hao Wang, Wen-Li Mei & Hao-Fu Dai. (2021) The Characteristic Fragrant Sesquiterpenes and 2-(2-Phenylethyl)chromones in Wild and Cultivated “Qi-Nan” Agarwood. Molecules 26:2, pages 436.
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Cheng-neng Mi, Jing-zhe Yuan, Man-man Zhu, Li Yang, Yan-mei Wei, Hao Wang, Wen-xing Long, Wen-li Mei & Hao-fu Dai. (2021) 2-(2-Phenylethyl)chromone derivatives: Promising α-glucosidase inhibitors in agarwood from Aquilaria filaria. Phytochemistry 181, pages 112578.
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Ruchi Badoni Semwal, Deepak Kumar Semwal, Sandra Combrinck & Alvaro Viljoen. (2020) Health benefits of chromones: common ingredients of our daily diet. Phytochemistry Reviews 19:4, pages 761-785.
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Ting-Hao Kuo, Hou-Chun Huang & Cheng-Chih Hsu. (2019) Mass spectrometry imaging guided molecular networking to expedite discovery and structural analysis of agarwood natural products. Analytica Chimica Acta 1080, pages 95-103.
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Yong Liu, Jingan Chen, Jieying Qian, Hao Lin, Ning Sun & Zunnan Huang. (2018) Evolutionary analysis and structural characterization of Aquilaria sinensis sesquiterpene synthase in agarwood formation: A computational study. Journal of Theoretical Biology 456, pages 249-260.
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Xianjuan Dong, Bowen Gao, Yingying Feng, Xiao Liu, Juan Wang, Jinling Wang, Pengfei Tu, Xiaohui Wang & Shepo Shi. (2018) Production of 2-(2-phenylethyl)chromones in Aquilaria sinensis calli under different treatments. Plant Cell, Tissue and Organ Culture (PCTOC) 135:1, pages 53-62.
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Jinling Yang, Wenhua Dong, Huiqin Chen, Fandong Kong, Jun Wang, Wenli Mei & Haofu Dai. (2018) Qualitative and Quantitative Analysis of Flidersiachromones in Three Agarwood Samples by HPLC-MS/MS. Chemical Research in Chinese Universities 34:3, pages 389-396.
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Xiaohui Wang, Xianjuan Dong, Yingying Feng, Xiao Liu, Jinling Wang, Zhongxiu Zhang, Jun Li, Yunfang Zhao, Shepo Shi & Pengfei Tu. (2018) H2O2 and NADPH oxidases involve in regulation of 2-(2-phenylethyl)chromones accumulation during salt stress in Aquilaria sinensis calli. Plant Science 269, pages 1-11.
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Yang Yang, Hui-Qin Chen, Fan-Dong Kong, Li-Man Zhou, Wei Li, Wen-Hua Dong, Zhi-Bao Chen, Wen-Li Mei & Hao-Fu Dai. (2018) Dimeric sesquiterpenoid-4H-chromone derivatives from agarwood of Aquilaria crassna and their cytotoxicity. Phytochemistry 145, pages 207-213.
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Joana Reis, Alexandra Gaspar, Nuno Milhazes & Fernanda Borges. (2017) Chromone as a Privileged Scaffold in Drug Discovery: Recent Advances. Journal of Medicinal Chemistry 60:19, pages 7941-7957.
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Rishu Kalra & Nutan Kaushik. (2017) A review of chemistry, quality and analysis of infected agarwood tree (Aquilaria sp.). Phytochemistry Reviews 16:5, pages 1045-1079.
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Pan Xiang, Wenli Mei, Huiqin Chen, Fandong Kong, Hao Wang, Ge Liao, Liman Zhou & Haofu Dai. (2017) Four new bi-phenylethylchromones from artificial agarwood. Fitoterapia 120, pages 61-66.
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Xiaohui Wang, Bowen Gao, Xiao Liu, Xianjuan Dong, Zhongxiu Zhang, Huiyan Fan, Le Zhang, Juan Wang, Shepo Shi & Pengfei Tu. (2016) Salinity stress induces the production of 2-(2-phenylethyl)chromones and regulates novel classes of responsive genes involved in signal transduction in Aquilaria sinensis calli. BMC Plant Biology 16:1.
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Yang-Yang Liu, De-Li Chen, Jian-He Wei, Jian Feng, Zheng Zhang, Yun Yang & Wei Zheng. (2016) Four New 2-(2-Phenylethyl)chromone Derivatives from Chinese Agarwood Produced via the Whole-Tree Agarwood-Inducing Technique. Molecules 21:11, pages 1433.
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Delan Yang, Jun Wang, Wei Li, Wenhua Dong, Wenli Mei & Haofu Dai. (2016) New guaiane and acorane sesquiterpenes in high quality agarwood ⿿Qi-Nan⿿ from Aquilaria sinensis. Phytochemistry Letters 17, pages 94-99.
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Yumi Zuhanis Has-Yun Hashim, Philip G. Kerr, Phirdaous Abbas & Hamzah Mohd Salleh. (2016) Aquilaria spp. (agarwood) as source of health beneficial compounds: A review of traditional use, phytochemistry and pharmacology. Journal of Ethnopharmacology 189, pages 331-360.
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Jin Ling Yang, Wen Hua Dong, Fan Dong Kong, Ge Liao, Jun Wang, Wei Li, Wen Li Mei & Hao Fu Dai. (2016) Characterization and Analysis of 2-(2-Phenylethyl)-chromone Derivatives from Agarwood (Aquilaria crassna) by Artificial Holing for Different Times. Molecules 21:7, pages 911.
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De-Lan Yang, Wei Li, Wen-Hua Dong, Jun Wang, Wen-Li Mei & Hao-Fu Dai. (2016) Five new 5,11-epoxyguaiane sesquiterpenes in agarwood “Qi-Nan” from Aquilaria sinensis. Fitoterapia 112, pages 191-196.
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Takuji Sugiyama, Yuji Narukawa, Shunsuke Shibata, Ryo Masui & Fumiyuki Kiuchi. (2016) New 2-(2-Phenylethyl)chromone Derivatives and Inhibitors of Phosphodiesterase (PDE) 3A from Agarwood. Natural Product Communications 11:6, pages 1934578X1601100.
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Yuanbin Li, Nan Sheng, Lingli Wang, Shijie Li, Jiannan Chen & Xiaoping Lai. (2016) Analysis of 2-(2-Phenylethyl)chromones by UPLC-ESI-QTOF-MS and Multivariate Statistical Methods in Wild and Cultivated Agarwood. International Journal of Molecular Sciences 17:5, pages 771.
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Zhongxiu Zhang, Xiaohui Wang, Wanqing Yang, Juan Wang, Cong Su, Xiao Liu, Jun Li, Yunfang Zhao, Shepo Shi & Pengfei Tu. (2016) Five 2-(2-Phenylethyl)chromones from Sodium Chloride-Elicited Aquilaria sinensis Cell Suspension Cultures. Molecules 21:5, pages 555.
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Delan Yang, Bing Xia, Yan Jiang, Wenli Mei & Dietmar Kuck. (2015) Fragmentation of Protonated 2-(2-Phenylethyl)Chromones from Agarwood: The Diagnostic Role of Ion/Neutral Complexes as Reactive Intermediates. European Journal of Mass Spectrometry 21:3, pages 609-621.
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