References
- Abrams JJ, Ginsberg H, Grundy SM. 1982. Metabolism of cholesterol and plasma triglycerides in nonketotic diabetes mellitus. Diabetes 31: 903-910. https://doi.org/10.2337/diabetes.31.10.903
- Lee EB, Kim OK. 1993. Antihyperglycemic consituent of aralia elata root bark (I). Kor J Pharmacon 24: 213-218.
- Kim OK, Lee EB, Kang SS. 1993. Anti-hyperglycemic constituent of Aralia elata root bark (II). Kor J Pharmacon 24: 219-222.
- Lee HS, Chung KS, Kim SY, Ryu KS, Lee WC. 1998. Effect of several sericultural products on blood glucose lowering for alloxan-induced hyperglycemic mice. Kor J Seric Sci 40: 38-42.
- Asano N, Oseki K, Kizu H, Matsui K. 1994. Nitrogen-inthe-ring pyranoses and furanoses; Structural basis of inhibition of mammanlian glycosidase. J Med Chem 37: 3701-3706. https://doi.org/10.1021/jm00048a006
- Naitoh K. 1968. Studies on the micro constituent in mulberry leaves part 2. Isolation of rutin and quercetin from mulberry leaves. Nippon Nogei Kagaku Kaishi 42: 422-425.
- Shin KH, Young HS, Lee TW, Choi JS. 1995. Studies on the chemical component and antioxidative effects of solanum lyratum. Kor J Pharmacogn 26: 130-138.
- Kim JS, Kang SS, Lee MW, Kim OK. 1995. Isolation of flavonoids from the leaves of Aralia continentails. Kor J Phamacogn 26: 239-243.
- Onogi A, Osawa K, Yasuda H, Sakai A, Morita H, Tokawa H. 1993. Flavonol glycosides from the leaves of Morus alba. Shoyakugaku Zasshi 47: 423-425.
- Kang SS, Woo WS. 1984. Flavonol glycosides from the leaves of Zizyphus jujuba. Kor J Pharmacogn 15: 170-178.
-
Yoshikumi Y. 1994. Inhibition of intestinal
${\alpha}-glycosidase$ activity and postprandial hyperglycemia by moranoline and its N-alkyl derivatives. Agric Biol Chem 52: 121-126. - 野田信三. 1996. 桑の葉茶の成人病に對すゐ果. 月刊フ-ドケミカル 12: 66-75.
- Asano N, Tomioka E, Kizu H, Matsui K. 1994. Sugars with nitrogen in the ring isolated from the leaves of Morus bombycis. Carbohydr Res 253: 235-245. https://doi.org/10.1016/0008-6215(94)80068-5
- Asano N, Oseki K, Tomioka E, Kizu H, Matsui K. 1994. N-containing sugars from Morus alba and their glycosidase inhibitory activities. Carbohydr Res 259: 243-255. https://doi.org/10.1016/0008-6215(94)84060-1
- Yagi M, Kouno T, Acyagi Y, Murai H. 1976. The structure of morano line, a piperidine alkaloid from Morus species. Nippon Nogei Kagaku 50: 571-572. https://doi.org/10.1271/nogeikagaku1924.50.11_571
- Basnent P, Kadota S, Terashima S, Simazu M, Namba T. 1993. Two new 2-arylbenzofuran derivatives from hypoglycemic activity-bearing fractions of Morus insignis. Chem Pharm Bull 41: 1238-1243. https://doi.org/10.1248/cpb.41.1238
- Kimura M, Chen FJ, Nakashimqa N, Kimura I, Asano N, Koya S. 1995. Anti hyperglycemic effect of N-containing sugars delived from mulberry leaves in streptozotocininduced diabetic mice. J Traditional Medicine 12: 214-219.
- Lee JS. 1994. Blood glucose lowering effect of Mori folium. MS Thesis. Kyung Hee University.
- Cha JY, Kim HJ, Cho YS. 2000. Effect of water-soluble extract from leaves of Morus alba and Cudrania tricuspidata on the lipid peroxidation in tissue of rats. J Kor Soc Food Sci Nutr 29: 531-536.
- Ceirwyn SJ. 1999. Analytical chemistry of foods. Chapman & Hall, New York.
- 日本食品工學會. 1983. 食品分析法 光琳.
- Clausen CA, Highley TL. 1989. Adaptation of the Nelson-Somogyi reducing-sugar assay to a microassay using microtiter plates. Anal Biochem 182: 197-199. https://doi.org/10.1016/0003-2697(89)90578-2
- AOAC. 1980. Official methods of analysis. 15th ed. Association of official analytical chem. p 129-133.
- Stead DA, Richards RM. 1996. Sensitive fluorimetric determination of gentamicin sulfate in biological matrices using solid-phase extraction, pre-column derivatization with 9-fluorenylmethyl chloroformate and reversed-phase high-performance liquid chromatography. J Chromatogr 675: 295-302. https://doi.org/10.1016/0378-4347(95)00355-X
- Cole MD, Fellows LE, Romeo JT. 1998. Separation of hydroxy and polyhydroxy derivatives of 2-carboxy and 2-hydroxymethyl piperidine and pyrrolidine ny high-performance liquid chromatography. J Chromatogr 445: 295-298. https://doi.org/10.1016/S0021-9673(01)84537-4
- Wimalasiri P, Wills RB. 1983. Simultaneous analysis of ascorbic acid and dehydroascorbic acid in fruit and vegetables by high-performance liquid chromatography. J Chromatogr 256: 368-371. https://doi.org/10.1016/S0021-9673(01)88253-4
- Dahlqvist A. 1984. Assay of intestine disaccharidases. Scand J Clin Lab Invest 44: 169-172. https://doi.org/10.3109/00365518409161400
- Lee HS, Kim SY, Lee YK, Lee WC, Moon SD, Moon JY, Ryu JY. 1999. Effects of silkworm power, mulberry leaves and mulberry root bark adminstered to rat on gastrointestinal function. Korean Journal of Sericultural Science 41: 29-35.
- Markham KR 1989. Flavones, flavonols and their glycosides. Methods in Plant Biochemistry 1: 197-235. https://doi.org/10.1016/B978-0-12-461011-8.50012-3
- Junod A, Lambert AE, Stauffacher W, Renold AE. 1969. Diabetogenic action of streptozotocin : relationship of dose to metabolic response. J Clin Invest 48: 2129-2139. https://doi.org/10.1172/JCI106180
- Lee KH. 1999. Antidiabetic effect and mechanism of extract of Mori folium on streptozotocin-induced diabetic model. Bull KH Pharma Sci 28: 87-99.
- Kimura M, Chen FJ, Nakashima N, Kimura I, Asano N, Koya S. 1995 Antihyperglycemic effects of N-containing sugars derived form mulberry leaves in streptozotocininduced diabetic mice. Journal of Traditional Medicines 12: 214-219.
- Kim MS. 1998. Blood glucose lowering effects of mulberry leaves and silkworm extracts on mice fed with highcarbohydrate diet. MS Thesis. Kyung Hee University.
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