Copyright (c) 2013 AJC
This work is licensed under a Creative Commons Attribution 4.0 International License.
Phenolic Compounds from Clinopodium urticifolium and Their Antivirus Activities
Corresponding Author(s) : Zhong Li
Asian Journal of Chemistry,
Vol. 25 No. 4 (2013): Vol 25 Issue 4
Abstract
A new phenolic compound, clinopodphenol B (1), together with six known phenols, were isolated from the whole plant of Clinopodium urticifolium. The structure of 1 was elucidated by spectroscopic methods including extensive 1D and 2D NMR techniques. Compound 1 was also tested for their anti HIV-1 activity and antitobacco mosaic virus activity. The results showed that compound 1 have modest anti HIV-1 activity and anti-tobacco mosaic virus activity, respectively.
Keywords
Download Citation
Endnote/Zotero/Mendeley (RIS)BibTeX
- H.D. Chi and J.C. Lu, J. Shenyang. Pharm. Univ., 23, 123 (2006).
- J.L. Trusty, R.G. Olmstead, D.J. Bogler and J. Francisco-Ortega, Syst. Bot., 29, 702 (2004).
- A. Yamamoto, T. Miyase, A. Ueno amd T. Maeda, Phytochemistry, 34, 485 (1993).
- Z. Liu, D. Li, N.L. Owen, D.M. Grant, R.G. Cates and Z. Jia, J. Nat. Prod., 58, 1600 (1995).
- Y.H. Kuo, H.M.S. Lee and J.S.H. Lai, J. Chin. Chem. Soc (Taipei), 47, 241 (2000).
- Y.H. Kuo, H.M.S. Lee and J.S.H. Lai,Chin. Pharm. J. (Taipei), 52, 27 (2000).
- P. Pripdeevech, E. Chukeatirote and Kachai, Food. Chem. Toxicol., 48, 2754 (2010).
- T. Murata, K. Sasaki, K. Sato, F. Yoshizaki, H. Yamada and H. Mutoh, J. Nat. Prod., 72, 1379 (2009).
- X.M. Wei, J.K. Cheng, D.L. Cheng and L.M. Gao, J. Chin. Chem. Soc. (Taipei), 51, 1043 (2004).
- F. Mori, T. Miyase and A. Ueno, Phytochemistry, 36, 1485 (1994).
- S.H.M. Lee, J.S.H. Lai and Y.H. Kuo, J. Chin. Chem. Soc. (Taipei), 40, 87 (1993).
- L.M. Gao, X.M. Wei and D.L. Cheng, Chin. Chem. Lett., 14, 1041 (2003).
- M. Petersen, Phytochemistry, 45, 1165 (1997).
- O.D. Tyagi, S. Hensen, P.M. Boll, N.K. Sharma, K.S. Bisht and S. Parmar, Phytochemistry, 32, 445 (1993).
- G.Q. Han, L.H. Wei, C.L. Li, L. Qiao, Y.Z. Jia and Q.T. Zheng, Acta Pharm. Sin., 24, 438 (1989).
- A. Tolonen, M. Pakonen,A. Hohtola and J. Jalonen, Chem. Pharm. Bull., 51, 467 (2003).
- T. Nakanishi, N. Iida, Y. Inatomi, H. Murata, A. Inada, J. Murata, F.A. Lang, M. Iinuma and T. Tanaka, Heterocycles, 63, 2573 (2004).
- W. Cheng, C.G. Zhu, W.D. Xu, X.N. Fan, Y.C. Yang, Y. Li, X.G. Chen, W.J. Wang and J.G. Shi, J. Nat. Prod., 72, 2145 (2009).
- X.J. Zhang, G.Y. Yang, R.R. Wang, J.X. Pu, H.D. Sun, W.L. Xiao and Y.T. Zheng, Chem. Biodiver., 7, 2692 (2010).
- D. Chattopadhyay, M.C. Sarkar, T. Chatterjee, D.R. Sharma, P. Bag, S. Chakraborti and M.T.H. Khan, New Biotechnol., 25, 347 (2009).
- X.H. Yan, J. Chen, Y.T. Di, X. Fang, J.H. Dong, P. Sang, Y.H. Wang, H.P. He, Z.K. Zhang and X.J. Hao, J. Agric. Food Chem., 58, 1572 (2010).
- P.L. Darke and J.R. Huff, Adv. Pharmacol., 25, 399 (1994)
References
H.D. Chi and J.C. Lu, J. Shenyang. Pharm. Univ., 23, 123 (2006).
J.L. Trusty, R.G. Olmstead, D.J. Bogler and J. Francisco-Ortega, Syst. Bot., 29, 702 (2004).
A. Yamamoto, T. Miyase, A. Ueno amd T. Maeda, Phytochemistry, 34, 485 (1993).
Z. Liu, D. Li, N.L. Owen, D.M. Grant, R.G. Cates and Z. Jia, J. Nat. Prod., 58, 1600 (1995).
Y.H. Kuo, H.M.S. Lee and J.S.H. Lai, J. Chin. Chem. Soc (Taipei), 47, 241 (2000).
Y.H. Kuo, H.M.S. Lee and J.S.H. Lai,Chin. Pharm. J. (Taipei), 52, 27 (2000).
P. Pripdeevech, E. Chukeatirote and Kachai, Food. Chem. Toxicol., 48, 2754 (2010).
T. Murata, K. Sasaki, K. Sato, F. Yoshizaki, H. Yamada and H. Mutoh, J. Nat. Prod., 72, 1379 (2009).
X.M. Wei, J.K. Cheng, D.L. Cheng and L.M. Gao, J. Chin. Chem. Soc. (Taipei), 51, 1043 (2004).
F. Mori, T. Miyase and A. Ueno, Phytochemistry, 36, 1485 (1994).
S.H.M. Lee, J.S.H. Lai and Y.H. Kuo, J. Chin. Chem. Soc. (Taipei), 40, 87 (1993).
L.M. Gao, X.M. Wei and D.L. Cheng, Chin. Chem. Lett., 14, 1041 (2003).
M. Petersen, Phytochemistry, 45, 1165 (1997).
O.D. Tyagi, S. Hensen, P.M. Boll, N.K. Sharma, K.S. Bisht and S. Parmar, Phytochemistry, 32, 445 (1993).
G.Q. Han, L.H. Wei, C.L. Li, L. Qiao, Y.Z. Jia and Q.T. Zheng, Acta Pharm. Sin., 24, 438 (1989).
A. Tolonen, M. Pakonen,A. Hohtola and J. Jalonen, Chem. Pharm. Bull., 51, 467 (2003).
T. Nakanishi, N. Iida, Y. Inatomi, H. Murata, A. Inada, J. Murata, F.A. Lang, M. Iinuma and T. Tanaka, Heterocycles, 63, 2573 (2004).
W. Cheng, C.G. Zhu, W.D. Xu, X.N. Fan, Y.C. Yang, Y. Li, X.G. Chen, W.J. Wang and J.G. Shi, J. Nat. Prod., 72, 2145 (2009).
X.J. Zhang, G.Y. Yang, R.R. Wang, J.X. Pu, H.D. Sun, W.L. Xiao and Y.T. Zheng, Chem. Biodiver., 7, 2692 (2010).
D. Chattopadhyay, M.C. Sarkar, T. Chatterjee, D.R. Sharma, P. Bag, S. Chakraborti and M.T.H. Khan, New Biotechnol., 25, 347 (2009).
X.H. Yan, J. Chen, Y.T. Di, X. Fang, J.H. Dong, P. Sang, Y.H. Wang, H.P. He, Z.K. Zhang and X.J. Hao, J. Agric. Food Chem., 58, 1572 (2010).
P.L. Darke and J.R. Huff, Adv. Pharmacol., 25, 399 (1994)