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指頭血による生体酸化包括的評価法と 糖質摂取惹起酸化ストレスの ビタミン C による抑制 塩入 麻由 1 , 井上 葉子 1,2 , 矢部 えん 1

2-IV-23. 指頭血による生体酸化包括的評価法と 糖質摂取惹起酸化ストレスの ビタミン C による抑制 塩入 麻由 1 , 井上 葉子 1,2 , 矢部 えん 1 長浦 亜希子 1 , ○ 薗田 勝 1 1 共立女子大・家政・食物栄養 2 愛国短大・家政. VSOJ (2008) 2-IV-23 Sonoda-01. PKC. p 22. gp 91. p 47. Rac. p 67. Oxidative Stress Induced by Glucose-Flux. Glucose. GLUT. p. p. NOX.

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指頭血による生体酸化包括的評価法と 糖質摂取惹起酸化ストレスの ビタミン C による抑制 塩入 麻由 1 , 井上 葉子 1,2 , 矢部 えん 1

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  1. 2-IV-23 指頭血による生体酸化包括的評価法と 糖質摂取惹起酸化ストレスの ビタミンCによる抑制 塩入 麻由1, 井上 葉子 1,2,矢部 えん 1 長浦 亜希子1, ○薗田 勝1 1共立女子大・家政・食物栄養 2愛国短大・家政 VSOJ (2008) 2-IV-23 Sonoda-01

  2. PKC p22 gp91 p47 Rac p67 Oxidative Stress Induced by Glucose-Flux Glucose GLUT p p NOX Gluc 6-P NADPH Pentose-P-pathway ROS ☆ Zhang D. & Gutterman D. Am J Physiol Heart Circ Physiol (2008) 292, 2023-2031 ☆Sies H. et al. J Nutr (2005) 135, 969-972☆ Ceriello A. Diabetes(2005) 54, 1-7☆Dandona P. et al. Am J Clin Nutr (2004) 80, 51-57☆Nishikawa T. et al. Nature (2000) 404, 787-790☆Ghanim H. et al. Diabetes Care (2007) 30, 1406-1411☆Newsholme P. et al. J. Physiol (2007) 583.1, 9-24 VSOJ (2008) 2-IV-23 Sonoda-02

  3. O 2 Oxidative Stress Induced by Glucose-Flux Glucose GLUT AGE Antioxidants Gluc 6-P Polyol Pathway ROS Pyruvate Cu, Zn-SOD NOS Uncoupling Glutathione-POD Glutathione-Red ETC Mt. Mn-SOD UCP VSOJ (2008) 2-IV-23 Sonoda-03

  4. 100 %-Hemolysis 50 hν 0 2 20 40 60 Propagation (min) 1 1 O O 2 2 Evaluation Method for The Redox Balance Whole Blood Photosensitization Initiation Reaction Post-Illumination Propagation Reaction Hemolysis Profile VSOJ (2008) 2-IV-23 Sonoda-04

  5. 100 120 min %-Hemolysis 60 min 50 30 min Fasted 0 2 2 20 40 20 40 60 60 Propagation (min) Propagation (min) 1 1 O O 2 2 The Redox Balance < Glucose 75g > MS : age 59, male MS : age 22, female VSOJ (2008) 2-IV-23 Sonoda-05

  6. 100 Fasted %-Hemolysis 50 30, 60, 120 min later 0 2 20 40 60 2 20 40 60 Propagation (min) Propagation (min) 1 1 O O 2 2 The Redox Balance < Ascorbate 600mg > MS : age 59, male MS : age 22, female VSOJ (2008) 2-IV-23 Sonoda-06

  7. 100 Sucrose : 30min Sucrose : 30min Fasted %-Hemolysis 50 Ascorbate : 30min Fasted 0 2 20 40 2 20 40 60 60 Propagation (min) Propagation (min) 1 1 O O 2 2 The Redox Balance < Sucrose 20g > < Asc & Suc > MS : age 22, female VSOJ (2008) 2-IV-23 Sonoda-07

  8. 100 Boiled Rice : 120min Boiled Rice : 60min Fasted %-Hemolysis 50 0 2 20 40 2 20 40 60 60 Propagation (min) Propagation (min) 1 1 O O 2 2 The Redox Balance < Boiled Rice 360g > MK : age 21, female EA : age 21, female VSOJ (2008) 2-IV-23 Sonoda-08

  9. 100 Boiled Rice 120min Boiled Rice : 60min Ascorbate : 30min %-Hemolysis Fasted 50 0 2 20 40 2 60 20 40 60 Propagation (min) Propagation (min) 1 1 O O 2 2 The Redox Balance < Boiled Rice 360g & Asc > MS : age 22, female Asc - Asc + VSOJ (2008) 2-IV-23 Sonoda-09

  10. 100 %-Hemolysis 50 0 2 20 40 60 Propagation (min) Arbitrary Units for The Redox Balance Regression Slope VSOJ (2008) 2-IV-23 Sonoda-10

  11. Sucrose : 120min Sucrose : 60min Fasted 360g (134g) 180g (67g) 20g 3.0 Boiled Rice : 120min Boiled Rice : 60min Fasted 1.5 Arbitrary Units 0 TK SY YK AE YH MK MK AE SY Redox Balance Changes by Glucose-Flux VSOJ (2008) 2-IV-23 Sonoda-11

  12. Conclusion • Nutritional oxidative stress, or postprandial oxidative stress ensues from an imbalance between the reactive oxygen species generated and the antioxidative defence system. • Endogenous antioxidative capacity influenced by glucose-flux can be recovered immediately in young, but remains a low-level in elder without adequate supplementation of antioxidative vitamins. • The method employing a photosensitization technique would estimate comprehensively the endogenous antioxidative capacity, or the redox balance. VSOJ (2008) 2-IV-23 Sonoda-12

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