Inhibitory effect of pine extract on α-glucosidase activity and postprandial hyperglycemia

被引:410
作者
Kim, YM
Jeong, YK
Wang, MH
Lee, WY
Rhee, HI [1 ]
机构
[1] Kangwon Natl Univ, Div Biotechnol, Chunchon, South Korea
[2] En Biotechnol Co Ltd, Chunchon, South Korea
[3] Korea Forest Res Inst, Suwon, Kyonggi, South Korea
关键词
alpha-glucosidase inhibitor; Pinus sp; postprandial hyperglycemia;
D O I
10.1016/j.nut.2004.10.014
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
Objective: This study investigated the inhibitory effect of pine bark extract (PBE) and needle extract on carbohydrate-hydrolyzing enzymes and the hypoglycemic effect in diabetic mice (Lep(ob) [ob/ob]). Methods: Pine bark and needle were dried and then placed in ethanol, and the extracts were assayed for the measurement of inhibition mode of PBE against alpha-amylase (EC 3.2. 1. 1) and a-glucosidase (EC 3.2.1.20). We also investigated the effect of long-term treatment with extracts on levels of postprandial blood glucose, body weight, food efficiency ratio, and gene expression of glucose transporter-4 in quadriceps muscle in diabetic mice (Lep(ob) [ob/ob]). Results: The PBE showed competitive inhibition against salivary a-amylase and the combination of non-competitive and uncompetitive inhibition against yeast alpha-glucosidase. In animal experiments, PBE effectively suppressed the increase of postprandial blood glucose level by delaying absorption of diet, and body weights of the group that received PBE were significantly lower than that in the group administered 0.5% carboxylmethyl cellulose (control) 21 d after administration. Conclusions: PBE can be used to suppress postprandial hyperglycemia of diabetic patients. It also can be applied for control of obesity by decreasing the food efficiency ratio, especially carbohydrates. (c) 2005 Elsevier Inc. All rights reserved.
引用
收藏
页码:756 / 761
页数:6
相关论文
共 41 条
[1]   Polyhydroxylated alkaloids isolated from mulberry trees (Morus alba L.) and silkworms (Bombyx mori L.) [J].
Asano, N ;
Yamashita, T ;
Yasuda, K ;
Ikeda, K ;
Kizu, H ;
Kameda, Y ;
Kato, A ;
Nash, RJ ;
Lee, HS ;
Ryu, KS .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2001, 49 (09) :4208-4213
[2]   N-ALKYLATED NITROGEN-IN-THE-RING SUGARS - CONFORMATIONAL BASIS OF INHIBITION OF GLYCOSIDASES AND HIV-1 REPLICATION [J].
ASANO, N ;
KIZU, H ;
OSEKI, K ;
TOMIOKA, E ;
MATSUI, K ;
OKAMOTO, M ;
BABA, M .
JOURNAL OF MEDICINAL CHEMISTRY, 1995, 38 (13) :2349-2356
[3]   SUGARS WITH NITROGEN IN THE RING ISOLATED FROM THE LEAVES OF MORUS-BOMBYCIS [J].
ASANO, N ;
TOMIOKA, E ;
KIZU, H ;
MATSUI, K .
CARBOHYDRATE RESEARCH, 1994, 253 :235-245
[4]  
Bergmeyer HU., 1974, METHOD ENZYMAT AN, P1205
[5]  
Campbell LK, 2000, ANN PHARMACOTHER, V34, P1291
[6]   HYPOGLYCEMIC ACTIVITY AND MECHANISMS OF EXTRACTS FROM MULBERRY LEAVES (FOLIUM-MORI) AND CORTEX-MORI-RADICIS IN STREPTOZOTOCIN-INDUCED DIABETIC MICE [J].
CHEN, FJ ;
NAKASHIMA, N ;
KIMURA, I ;
KIMURA, M .
YAKUGAKU ZASSHI-JOURNAL OF THE PHARMACEUTICAL SOCIETY OF JAPAN, 1995, 115 (06) :476-482
[7]  
Chiasson JL, 1996, DIABETIC MED, V13, pS23
[8]   Molecular mechanism in alpha-glucosidase and glucoamylase [J].
Chiba, S .
BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 1997, 61 (08) :1233-1239
[9]   ACARBOSE - A PRELIMINARY REVIEW OF ITS PHARMACODYNAMIC AND PHARMACOKINETIC PROPERTIES, AND THERAPEUTIC POTENTIAL [J].
CLISSOLD, SP ;
EDWARDS, C .
DRUGS, 1988, 35 (03) :214-243
[10]   Protection from vascular risk in diabetic hypertension [J].
Corry D.B. ;
Tuck M.L. .
Current Hypertension Reports, 2000, 2 (2) :154-159