1)Nagai R, et al:Significance of advanced glycation end products in aging-related disease. Anti-Aging Med 7:112-119, 2010
2)Ichihashi M, et al:Glycation stress and photo-aging in skin. Anti-Aging Med 8:23-29, 2011
3)Saito Y, et al:Epigenetics and aging. Glycative Stress Res 5:129-134, 2018
4)田中正巳,他:識る 高血糖スパイクとは.Heart View 21:837-843, 2017
5)Yonei Y, et al:Glycative stress and sleep quality. Prime:Int J Aesthe Anti-Ageing Med 8:19-23, 2018
6)Hara T, et al:Role of free fatty acid receptors in the regulation of energy metabolism. Biochim Biophys Acta 1841:1292-1300, 2014
7)Ichimura A, et al:Free fatty acid receptors as therapeutic targets for the treatment of diabetes. Front Pharmacol 5:236, 2014
8)Yamada M, et al:Lifestyle and bowel movements in school children:Results from the Toyama Birth Cohort Study. Pediatr Int 59:604-613, 2017
9)Hayashi S, et al:Effect of breakfast on lunch time postprandial blood glucose. Glycative Stress Res 4:124-131, 2017
10)Matsushima M, et al:Prevention of postprandial hyperglycemia by the combination of a staple food and a side dish. Glycative Stress Res 1:53-59, 2014
11)Kawabata A, et al:Postprandial blood glucose level after intake of a bowl of rice topped with beef. Glycative Stress Res 2:67-71, 2015
12)Ogura M, et al:Influence of beef bowl(gyudon)materials on postprandial blood glucose. Glycative Stress Res 3:210-221, 2016
13)Yagi M, et al:Effect of heat-moisture-treated high-amylose corn starch-containing food on postprandial blood glucose. Glycative Stress Res 5:151-162, 2018
14)Yagi M, et al:Effects of highly cross-linked distarch phosphate-containing food on glucose spikes. Glycative Stress Res 6:21-30, 2019
15)Kajiwara N, et al:A study for evaluating the effect of the intake of meal containing Salacia extract on postprandial hyperglycemia. Glycative Stress Res 4:117-123, 2017
16)Yagi M, et al:Effect of yogurt on postprandial blood glucose after steamed rice intake. Glycative Stress Res 5:68-74, 2018
17)Ishioka Y, et al:Antiglycation effect of various vegetables:Inhibition of advanced glycation end product formation in glucose and human serum albumin reaction system. Glycative Stress Res 2:22-34, 2015
18)Parengkuan L, et al:Anti-glycation activity of various fruits. Anti-Aging Med 10:70-76, 2013
19)Hori M, et al:Inhibition of advanced glycation end product formation by herbal teas and its relation to anti-skin aging. Anti-Aging Med 9:135-148, 2012
20)Moniruzzaman M, et al:Formulation of five curry spice mixtures and investigation of their effect on advanced glycation endproduct formation. Glycative Stress Res 3:5-14, 2016
21)Tanaka Y, et al:Anti-glycative effect of yogurt:Prevention of advanced glycation end product formation. Glycative Stress Res 4:25-31, 2017
of AGE-crosslinks breaking ability of rosmarinic acid. Glycative Stress Res 2:204-207, 2015
). Glycative Stress Res 4:317-328, 2017
Wall. Ex. Baker(Zingiberaceae):Prevention of advanced glycation end product formation. Glycative Stress Res 5:163-170, 2018
25)Ohno R, et al:Mangosteen pericarp extract inhibits the formation of pentosidine and ameliorates skin elasticity. J Clin Biochem Nutr 57:27-32, 2015
inhibitory actions on low-density lipoprotein(LDL)glycation. Glycative Stress Res 4:299-316, 2017
(yacon). Glycative Stress Res 5:36-44, 2018
28)Abe Y, et al:Effect of iridoid(containing plants)on AGE formation and degradation. Glycative Stress Res 3:56-64, 2016
29)Takabe W, et al:Identification of Antiglycative Compounds in Japanese Red Water Pepper(Red Leaf Variant of the Persicaria hydropiper Sprout). Molecules 23:2018
L.)extract:An open clinical study. Glycative Stress Res 1:60-67, 2014
study. Anti-Aging Med 9:61-74, 2012
Thunb.)extract in the prevention of influenza infection after vaccination:A randomized, double-blind, placebo-controlled, parallel-group study. Glycative Stress Res 6:75-81, 2019
33)Takabe W, et al:Effect of mangosteen pericarp extract-containing black vinegar drink on skin quality through anti-glycative actions. Glycative Stress Res 4:158-171, 2017
)extract:Anti-oxidative and anti-glycative actions. Glycative Stress Res 4:329-340, 2017
Roxb.)inhibits glycation, degrades α-dicarbonyl compound, and breaks advanced glycation end product crosslinks. Glycative Stress Res 2:72-79, 2015
)extract on crosslink derived from advanced glycation endproducts. Glycative Stress Res 2:58-66, 2015
37)米井嘉一:抗加齢医学入門,第3版.慶應義塾大学出版会,2019
38)米井嘉一:最新医学が教える 最強のアンチエイジング.日本実業出版社,2019
39)Hachiya H, et al:Advanced glycation end products impair glucose-induced insulin secretion from rat pancreatic β-cells. J Hepatobiliary Pancreat Sci 21:134-141, 2014
40)Lo M, et al:Nε-(carboxymethyl)lysine-induced mitochondrial fission and mitophagy cause decreased insulin secretion from β-cells. Am J Physiol Endocrinol Metab 309:E829-39, 2015
41)You J, et al:Advanced Glycation End Products Impair Glucose-Stimulated Insulin Secretion of a Pancreatic β-Cell Line INS-1-3 by Disturbance of Microtubule Cytoskeleton via p38/MAPK Activation. J Diabetes Res 2016:9073037, 2016
42)Hunter SJ, et al:Demonstration of glycated insulin in human diabetic plasma and decreased biological activity assessed by euglycemic-hyperinsulinemic clamp technique in humans. Diabetes 52:492-498, 2003