Royal Jelly Ameliorates Insulin Resistance in Fructose-Drinking Rats(Pharmacognosy)
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概要
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Royal jelly (RJ) is known to contain excellent nutrition and a variety of biological activities. The present study was designed to investigate the effects of RJ on insulin resistance (hyperinsulinemia) in fructose-drinking rats (FDR; insulin resistance animal model). Male Wistar rats (6 weeks old) received 15% fructose solution in drinking water for 8 weeks. FDR showed significant increases in plasma levels of insulin and triglyceride, Homeostasis Model Assessment ratio (HOMA-R, an index of insulin resistance), and systolic blood pressure, but not blood glucose levels, when compared with control rats. RJ (100, 300mg/kg, p.o.) treatment for 8 weeks significantly decreased the plasma levels of insulin and triglyceride, HOMA-R, without affecting blood glucose or total cholesterol levels and tended to lower systolic blood pressure. In isolated and perfused mesenteric vascular beds of FDR, RJ treatment resulted in a significant reduction in sympathetic nerve-mediated vasoconstrictor response to periarterial nerve stimulation (PNS) and tended to increase the calcitonin gene-related peptide (CGRP) nervemediated vasodilator response to PNS, compared with those in untreated FDR. However, RJ treatment did not significantly affect norepinephrine-induced vasoconstriction or CGRP-induced vasodilation. These results suggest that RJ could be an effective functional food to prevent insulin resistance associated with the development of hypertension.
- 2008-11-01
著者
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ZAMAMI Yoshito
Department of Clinical Pharmaceutical Science, Graduate School of Medicine, Dentistry and Pharmaceut
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TAKATORI Shingo
Pharmacology Department, Discovery Research Laboratories, Nippon Shinyaku Co., Ltd.
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GODA Mitsuhiro
Department of Clinical Pharmaceutical Science, Graduate School of Medicine, Dentistry and Pharmaceut
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KOYAMA Toshihiro
Department of Clinical Pharmaceutical Science, Graduate School of Medicine, Dentistry and Pharmaceut
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IWATANI Yukiko
Department of Clinical Pharmaceutical Science, Graduate School of Medicine, Dentistry and Pharmaceut
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JIN Xin
Department of Clinical Pharmaceutical Science, Graduate School of Medicine, Dentistry and Pharmaceut
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TAKAI-DOI Shima
Department of Research and Development, Yamada Apiculture Center, Inc.
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KAWASAKI Hiromu
Department of Clinical Pharmaceutical Science, Graduate School of Medicine, Dentistry and Pharmaceut
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Takai-doi Shima
岡山大学 医歯薬学総合研究科臨床薬学
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Jin Xin
Department Of Clinical And Pharmaceutical Science Graduate School Of Medicine Dentistry And Pharmace
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Jin Xin
Department Of Applied Chemistry Harbin Institute Of Technology
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Zamami Yoshito
Department Of Clinical And Pharmaceutical Science Graduate School Of Medicine Dentistry And Pharmace
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Goda Mitsuhiro
Department Of Clinical And Pharmaceutical Science Graduate School Of Medicine Dentistry And Pharmace
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Iwatani Yukiko
Department Of Clinical Pharmaceutical Science Graduate School Of Medicine Dentistry And Pharmaceutic
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Goda Mitsuhiro
Department Of Clinical Pharmaceutical Science Graduate School Of Natural Science And Technology Okay
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Kawasaki Hiromu
Dep. Of Clinical Pharmacology Graduate School Of Medicine Dentistry And Pharmaceutical Sciences Okay
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Kawasaki Hiromu
Department Of Clinical Pharmaceutical Science Graduate School Of Medicine Dentistry And Pharmaceutic
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Kawasaki Hiromu
Graduate School Of Medicine Dentistry And Pharmaceutical Sciences Okayama University
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Takatori Shingo
Pharmacology Department Discovery Research Laboratories Nippon Shinyaku Co. Ltd.
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Koyama Toshihiro
Dep. Of Pharmaceutical Care And Health Sciences Graduate School Of Medicine Dentistry And Pharmaceut
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Koyama Toshihiro
Department Of Applied Chemistry Faculty Of Engineering Hiroshima University
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Kawasaki Hiromu
Department Of Clinical And Pharmaceutical Science Graduate School Of Medicine Dentistry And Pharmace
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Takai-doi Shima
Department Of Research And Development Yamada Apiculture Center Inc.
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