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the functions of natural herb centella asiatic extract
Release time: 2022-11-18
The Centella asiatica extract contains a variety of triterpenoids, including an alpha-aromatic alcohol structure. The main ingredients are Centella asiatica, Hydrocamparia, and the appearance of brownish yellow to white fine powder, the taste is slightly bitter. Centella asiatica can tighten the connection between the epidermis and the dermis, which can make the skin softer, help to solve the skin relaxation phenomenon (especially postpartum mother), make the skin smooth and elastic; help promote collagen formation in the dermis and regenerate fibrin Reconnected to radically eliminate the mother''''s lines and make the skin firm and smooth. It also helps damaged tissue heal and firm skin. It not only promotes the close connection between the epidermis and the dermis, but also inhibits the increase of fat cells, prevents skin edema and obesity.
Function:
1.Gotu Kola Extract has function of hearing heat and detoxicating,
2.Gotu Kola Extract can induce diuresis and reduce edema.
3.Gotu Kola Extract has function of brain refreshing.
4.Gotu Kola Extract has the function of nourishing, diminish inflammation, heal wounds or ulcers, diuresis purge and calming.
5.Gotu Kola Extractcan can also treat leprosy, ulcer.
6.Gotu Kola Extract has wave action to blood purification and immunity.
7.Gotu Kola Extract is a very good Nerve tonic, could improve memory, reduce mental fatigue;
8.Gotu Kola Extract can reduce blood press, treat liver disease.
9.Gotu Kola Extract has function of antibacterial action.
Application:
1.Cosmetic Raw material
2.Healthcare Raw material
Staherb natural ingredients-----professional manufacturer of magnolia bark extract,vine tea extract,myricetin,honeysuckle flower extract,eucommia leaf extract,rosemary extract,macleaya cordata extract,banaba leaf extract.
Remarks:
The above information about Ivy leaf extract is from the Internet and literature for reference only.
Changsha staherb natrual ingredients co.,ltd is a professional standardized plant extract production enterprise,the products are only for enterprise customers.
References:
1.Berg, J., T. John, and L. Stryer. 2001. Biochemistry. Freeman WH and Co., New York
2.Bonfill, M., S. Mangas, R.M. Cusidü, L. Osuna, M.T. Piñol, and J. Palazün. 2006. Identification of triterpenoid compounds of Centella asiatica by thin-layer chromatography and mass spectrometry. Biomed. Chromatogr. 20:151–153.
3.Bonner, J. 1972. The isoprenoids, p. 665–690. In: J. Bonner and J.E. Varner (eds.). Plant biochemistry. Academic Press, New York.
4.Gunther. B. and H. Wagner. 1996. Quantitative determination of triterpenes in extracts and phytoparations of Centella asiatica (L.) Urban. Phytomedicine 3:59–65.
5.Hsu, Y.L., P.L. Kuo, L.T. Lin, and C.C. Lin. 2005. Asiatic acid, a triterpene, induces apoptosis and cell cycle arrest through activation of extracellular signal-regulated kinase and p38 mitogen-activated protein kinase pathways in human breast cancer cells. J. Pharmacol. Exp. Ther. 313:333–344.
6.Inamdar, P.K., R.D. Yeole, A.B. Ghogare, and N.J. Souza. 1996. Determination of biologically active constituents in Centella asiatica. J. Chromatogr. A 742:127–130.
7.Jian, Z., L.C. Davis, and R. Verpoorte. 2005. Elicitor signal transduction leading to production of plant secondary metabolites. Biotechnol. Adv. 23:283–333.
8.Joshi, S.G. 2000. Medicinal plants. Oxford & IBH Publishing Co., Pvt, Ltd., New Delhi, India.
9.Kiong, A.L.P., M. Mahmood, N.M. Fadzillah, and S.K. Daud. 2005. Effects of precursor supplementation on the production of triterpenes by Centella asiatica callus cultures. Pak. J. Biol. Sci. 8:1160–1169
10.Memon, A.R., Q.Y. Chen, and W.F. Boss. 1989. Inositol phospholipids activate plasma membrane ATPase in plants. Biochem. Biophys. Res. Commun. 162:1295–1301
11.Nelson, D.L. and M.M. Cox. 2001. Lehninger’s principles of biochemistry. Freeman WH and Co., New York. p. 1040–1059.
12.Park, B.C., K.O. Bosire, E.S. Lee, Y.S. Lee, and J.A. Kim. 2005. Asiatic acid induces apoptosis in SK-MEL-2 human melanoma cells. Cancer Lett. 218:81–90.
13.Perassolo, M., C. Quevedo, V. Busto, F. Ianone, A.M. Giulietti, and J. Rodriguez Talou. 2007. Enhance of anthraquinone production by effect of proline and aminoindan-2-phosphonic acid in Rubia tinctorum suspension cultures. Enzyme Microb. Technol. 41:181–185.
14.Schaneberg, B.T., J.R. Mikell, E. Bedir, and I.A. Khan. 2003. An improved HPLC method for quantitative determination of six triterpenes in Centella asiatica extracts and commercial products. Pharmazie 58:381–384.
15.Seidel, V., J. Windhövel, G. Eaton, A.W. Alfermann, R.R. Arroo, M. Medarde, M. Petersen, and J.G. Woolley. 2002. Biosynthesis of podophyllotoxin in Linum album cell cultures. Planta. 215: 1013–1039.
16.Singh, B. and R.P. Rastogi. 1969. A re-investigation of the triterpenes of Centella asiatica. Phytochemistry 8:917–921.
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