Optimization of Extraction Conditions for Determination of Tiliroside in Tilia L. Flowers Using an LC-ESI-MS/MS Method

被引:13
作者
Pieczykolan, Aleksandra [1 ]
Pietrzak, Wioleta [1 ]
Nowak, Renata [1 ]
Pielczyk, Jozefina [1 ]
Lamacz, Karolina [1 ]
机构
[1] Med Univ Lublin, Dept Pharmaceut Bot, Chodzki 1 Str, PL-20093 Lublin, Poland
关键词
BIOLOGICAL-ACTIVITY; FLAVONOIDS; CONSTITUENTS; LEAVES;
D O I
10.1155/2019/9052425
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Tiliroside exhibits a wide spectrum of effects on the human body; considering expensive synthesis of tiliroside, linden trees seem to be a good source of this compound. For the first time, 46 various extraction methods were developed to receive tiliroside from Tilia L., including ultrasound-assisted extraction, maceration, maceration with stirring, accelerated solvent extraction, and extraction under reflux. The effects of extraction techniques, solvents, additives, and temperature on the content of tiliroside were studied using analytical and statistical methods. A new, rapid, simple, sensitive, and selective liquid chromatography-electrospray ionization-tandem mass spectrometry (LC-ESI-MS/MS) method was developed to determine the content of tiliroside in Tilia L. flowers. The LC-ESI-MS/MS analysis demonstrated the highest content of tiliroside in Tilia L. flowers obtained using accelerated solvent extraction (ASE) where 70% ethanol with addition of 1% acetic acid was used as a solvent (7.400 +/- 0.019mg of tiliroside per g dry extract).The results showed that the extracts of Tiliae inflorescentia contained large amounts of tiliroside; therefore, they are good sources of this compound. Moreover, ASE was found to be superior to other extraction techniques due to its high efficiency as well as considerable saving of time and solvent.
引用
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页数:9
相关论文
共 34 条
[1]  
Bangoura M. L., 2011, American Journal of Food Technology, V6, P1034, DOI 10.3923/ajft.2011.1034.1044
[2]  
BRAND-WILLIAMS W, 1995, FOOD SCI TECHNOL-LEB, V28, P25
[3]  
Carola C., 2010, J. Appl. Cosmetol, V28, P109
[4]   Isolation of natural products with anti-ageing activity from the fruits of Platanus orientalis [J].
Chatzigeorgiou, Sofia ;
Quoc Dang Thai ;
Tchoumtchoua, Job ;
Tallas, Konstantinos ;
Tsakiri, Eleni N. ;
Papassideri, Issidora ;
Halabalaki, Maria ;
Skaltsounis, Alexios-Leandros ;
Trougakos, Ioannis P. .
PHYTOMEDICINE, 2017, 33 :53-61
[5]   Flavonoids from Lychnophora passerina (Asteraceae):: potential antioxidants and UV-protectants [J].
Chicaro, P ;
Pinto, E ;
Colepicolo, P ;
Lopes, JLC ;
Lopes, NP .
BIOCHEMICAL SYSTEMATICS AND ECOLOGY, 2004, 32 (03) :239-243
[6]   Anticomplement Activity of Polyacetylenes from Leaves of Dendropanax morbifera Leveille [J].
Chung, Ill-Min ;
Song, Hong-Keun ;
Kim, Sun-Jin ;
Moon, Hyung-In .
PHYTOTHERAPY RESEARCH, 2011, 25 (05) :784-786
[7]  
Dai M., 2016, Natl. J. Physiol. Pharm. Pharmacol, V6, P627, DOI [10.5455/njppp.2016.6.0617727072016, DOI 10.5455/NJPPP.2016.6.0617727072016]
[8]   Phenolic derivatives in raspberry (Rubus L.) germplasm collection in Bulgaria [J].
Gevrenova, Reneta ;
Badjakov, Ilian ;
Nikolova, Milena ;
Doichinova, Irini .
BIOCHEMICAL SYSTEMATICS AND ECOLOGY, 2013, 50 :419-427
[9]   Tiliroside, a glycosidic flavonoid, ameliorates obesity-induced metabolic disorders via activation of adiponectin signaling followed by enhancement of fatty acid oxidation in liver and skeletal muscle in obese-diabetic mice [J].
Goto, Tsuyoshi ;
Teraminami, Aki ;
Lee, Joo-Young ;
Ohyama, Kana ;
Funakoshi, Kozue ;
Kim, Young-Il ;
Hirai, Shizuka ;
Uemura, Taku ;
Yu, Rina ;
Takahashi, Nobuyuki ;
Kawada, Teruo .
JOURNAL OF NUTRITIONAL BIOCHEMISTRY, 2012, 23 (07) :768-776
[10]   Tiliroside, a glycosidic flavonoid, inhibits carbohydrate digestion and glucose absorption in the gastrointestinal tract [J].
Goto, Tsuyoshi ;
Horita, Mayuka ;
Nagai, Hiroyuki ;
Nagatomo, Akifumi ;
Nishida, Norihisa ;
Matsuura, Youichi ;
Nagaoka, Satoshi .
MOLECULAR NUTRITION & FOOD RESEARCH, 2012, 56 (03) :435-445