Published April 30, 2022
| Version v1
Journal article
Open
Isoflavone from Sida rhombifolia
Description
Abstract A novel isoflavone has been isolated from the chloroform fraction of the root of the Sida rhombifolia. The structure of the newly isolated compound has been established as 6-hydroxy-7,3',4'-trimethoxy isoflavone based on the spectral (UV, IR, 1H, 13C NMR and mass) data.
Files
chemrj-2022-07-02-43-45.pdf
Files
(143.1 kB)
| Name | Size | Download all |
|---|---|---|
|
md5:371953a45577dd3dea0013ff200fa16b
|
143.1 kB | Preview Download |
Additional details
References
- [1]. Dufour, N. Rao, R.P. FEMS Microbial, Lett. Vol. 3-4 (1), pp. 10-17 (2011).
- [2]. Alam M. Joy S, Usman AS, Indian Drugs, Vol. 28, pp. 570 – 571 (1991).
- [3]. Gupta, SR; Nirmal, SA; Patil, RY; Asane, GS; Natural product research, Vol. 23(8), pp. 689-695 (2009).
- [4]. Dunstan, CA; Noreen, Y.; Serrano, G; Cox, PA; Journal of Ethnopharmacology, Vol. 57(1), pp. 35-56 (1997).
- [5]. Mullick, R; Ranjan, SR; United States patent US, Vol. 7, pp. 864 (2011).
- [6]. Dhalwal, K; Shinde, VM; Singh, B; Mahadik, KR; International Journal of Phytomedicine, Vol. 2(2), (2010).
- [7]. Seshathri, K; Thiyagarajan, T. Journal of Phytology, (2011).
- [8]. Markham, K.R. and Mabry TJ. The flavonoids Chapman & Hall London, pp. 58-66 (1975).
- [9]. Lemli, J; Sequeker, R; Cuveele, J; J. Pharm. Weekblad, Vol. 99(14), pp. 351 (1964).
- [10]. Raistrich, H; Robinson, R; Todd, A.R; J. Biochem, Vol. 28, pp. 559 (1934).
- [11]. Rajdan, T.K., Kachroo, P.K. et al. Phytochemistry, Vol. 41(3), pp. 947-949 (1996).
- [12]. Semwal, D.K.; Rawat Usha et al., Journal of Asian Natural Product, Research, Vol. 11(12) pp. 1045-1055 (2009).
- [13]. Harper, Stanley H; Shirley, Dianne B. and Taylor, Deryck. A.; Phytochemistry, Vol. 15, pp. 1019-1023 (1976).