Determination of Luteolin in the Different Parts of Lithospermum erythrorhizon by HPLC |
Han, Saem
(Department of Applied Plant Science, Chung-Ang University)
Park, Jun-Yeon (Department of Applied Plant Science, Chung-Ang University) Lee, Sul-Lim (Department of Applied Plant Science, Chung-Ang University) Mok, So-Youn (Department of Applied Plant Science, Chung-Ang University) Kim, Hye-Min (Department of Applied Plant Science, Chung-Ang University) Lee, Jeong-Min (Department of Applied Plant Science, Chung-Ang University) Ahn, Young-Hee (Department of Applied Plant Science, Chung-Ang University) Lee, Sang-Hyun (Department of Applied Plant Science, Chung-Ang University) |
1 | Kang JS, Ahn BZ and Blaschke G. (1998). Enantiomeric ratio of shikonin derivatives as a possible key for the determination of the origin of Lithospermi Radix. Archives of Pharmacal Research. 21:565-569. DOI ScienceOn |
2 | Tabata M, Mizukami H, Hiraoka N and Konoshima M. (1974). Pigment formation in callus cultures of Lithospermum erythrorhizon. Phytochemistry. 13:927-932. DOI ScienceOn |
3 | Chen Z, Yang L, Zhang N, Turpin JA, Buckheit RW, Osterling C, Oppenheim JJ and Howard OM. (2003). Shikonin, a component of Chinese herbal medicine, inhibits chemokine receptor function and suppresses human immunodeficiency virus type 1. Antimicrobial Agents and Chemotherapy. 47:2810- 2816. DOI ScienceOn |
4 | Ishida T and Sakaguchi I. (2007). Protection of human keratinocyes from UVB-induced inflammation using root extract of Lithospermum erythrorhizon. Biological & Pharmaceutical Bulletin. 30:928-934. DOI ScienceOn |
5 | Park JY, Lee S, Han S, Kim HM, Lee JM and Lee S. (2009a). A paraben derivative from the seeds of Lithospermum erythrorhizon. Journal of the Korean Society for Applied Biological Chemistry. 52:643-645. 과학기술학회마을 DOI |
6 | Lee JH, Oh MH and Lee HB. (2000). Isolation and identification of red color pigments from the Korean Lithospermum erythrorhizon. Journal of Food Science and Nutrition. 13:379- 382. |
7 | Lee SH, Sohn YS, Choi YA, Lee JE, Kim DK and Lee YM. (2007). Luteolin inhibits extracellular signal-regulated kinase pathway through protease-activated receptors (-2 and -4) and their agonist activity. Natural Product Sciences. 13:169-173. 과학기술학회마을 |
8 | Morimoto I, Kishi T, Ikegaml S and Hoirata Y. (1965). Naphtohquinone derivatives from Lithospermum erythrorhizon Siebold. et Zuccarini. Tetrahedron Letters. 52:4737-4739. |
9 | You YJ, Kim Y, Song GY and Ahn BZ. (2000). (E)-6-(1- Alkyloxyiminoalkyl)-5,8-dimethoxy-1,4-nepthoquinones: synthesis, cytotoxic activity and antitumor activity. Bioorganic & Medicinal Chemistry Letters. 10:2301-2303. DOI ScienceOn |
10 | Zhang HZ, Liao MC and Guo JX. (2002). Chemical and pharmacological research progress of Chinese drug 'Zicao'. Natural Product Research and Development. 14:74-78. |
11 | Jung MJ, Hu SI and Wang MH. (2008). Rat lens aldose reductase inhibitory of Taraxacum mongolicum and two Cirsium species. Journal of the Korean Society for Applied Biological Chemistry. 51:302-306. 과학기술학회마을 DOI |
12 | Ternai B and Markham KR. (1976). Carbon-13 NMR studies of flavonoids-1: Flavones and flavonols. Tetrahedron. 32:565-569. DOI ScienceOn |
13 | Chung JG, Hsia TC, Kuo HM, Li YC, Lee MY, Lin SS and Hung CF. (2001). Inhibitory actions of luteolin on the growth and arylamine N-acetyltransferase activity in strains of Helicobacter pylori from ulcer patients. Toxicology in Vitro. 15:191-198. DOI ScienceOn |
14 | Cho MH, Paik YS and Hahn TR. (1999). Propionylshikonin from the roots of Lithospermum erythrorhizon. Archives of Pharmacal Research. 22:414-416. DOI |
15 | Elisa T, Maurizio LG, Santo G, Danila DM and Marco G. (2007). Citrus flavonoids: molecular structure, biological activity and nutritional properties: a review. Food Chemistry. 104:466-479. DOI ScienceOn |
16 | Yamasaki K, Otaka T, Mori H, Morimoto M, Ueba N, Kurokawa Y, Shiota K and Yuge T. (1993). Screening test of crude drug extract on anti-HIV activity. Yakugaku Zasshi. 113:818-824. DOI |
17 | Yingming P, Ying L, Hengshan W and Min L. (2004). Antioxidant activities of several Chinese medicine herbs. Food Chemistry. 88:347-350. DOI ScienceOn |
18 | Park JY, Lee S, Han S, Kim HM, Lee JM and Lee S. (2009b). Phytochemical constituents from the seeds of Lithospermum erythrorhizon. Natural Product Sciences. 15:181-184. 과학기술학회마을 |
19 | Shen CC, Syu WJ, Li SY, Lin CH, Lee GH and Sun CM. (2002). Antimicrobial activities of naphthazarins from Arnebia euchroma. Journal of Natural Products. 65:1857-1862. DOI ScienceOn |
20 | Touno K, Tamaoka J, Ohashi Y and Shimomura K. (2005). Ethylene induced shikonin biosynthesis in shoot culture of Lithospermum erythrorhizon. Plant Physiology and Biochemistry. 43:101-105. DOI ScienceOn |
21 | Hu C and Kitts DD. (2004). Luteolin and luteolin-7-O-glucoside from dandelion flower suppress iNOS and COX-2 in RAW 264.7 cell. Molecular and Cellular Biochemistry. 265:107-113. DOI |
22 | Kim GS, Jeong TS, Kwon BM, Lee SE, Seong NS and Song KS. (2006). Inhibitory effect of acetylshikonin from Lithospermum erythrorhizon on LDL oxidation and FPTase activity. Korean Journal of Medicinal Crop Science. 14:522-523. |
23 | Kuroda M, Mimaki Y, Sashida Y, Hirano T, Oka K and Dobashi A. (1997). Novel cholestane glycosides from the bulbs of Ornithogalum saundersiae and their cytostatic activity on leukemia HL-60 and MOLT-4 cell. Tetrahedron. 53:1549-1562. |
24 | Han J, Weng Z and Bi K. (2008). Antioxidants from a Chinese medicinal herb: Lithospermum erythrorhizon. Food Chemistry. 106:2-10. DOI ScienceOn |
25 | Hwang OJ, Kim YJ, Sung NS, Ahn JC, Kim SE and Hwang B. (2002). Optimization of major culture elements on growth and shikonin production in the Lithospermum erythrorhizon hairy root culture. Korean Journal of Medicinal Crop Science. 10:243-248. 과학기술학회마을 |