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Food Composition and Analysis

Phenolic acids inhibit the formation of advanced glycation end products in food simulation systems depending on their reducing powers and structures

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Pages 400-411 | Received 12 Nov 2015, Accepted 11 Mar 2016, Published online: 21 Apr 2016

References

  • Allen DW, Schroeder WA, Balog J. 1958. Observations on the chromatographic heterogeneity of normal adult and fetal human hemoglobin: a study of the effects of crystallization and chromatography on the heterogeneity and isoleucine content. J Am Chem Soc. 80:1628–1634.
  • Babu PV, Sabitha KE, Shyamaladevi CS. 2008. Effect of green tea extract on advanced glycation and cross-linking of tail tendon collagen in streptozotocin induced diabetic rats. Food Chem Toxicol. 46:280–285.
  • Bhattacherjee A, Datta A. 2015. Mechanism of antiglycating properties of syringic and chlorogenic acids in in vitro glycation system. Food Res Int. 77:540–548.
  • Boeing H, Bechthold A, Bub A, Ellinger S, Haller D, Kroke A, Leschik-Bonnet E, Muller MJ, Oberritter H, Schulze M, et al. 2012. Critical review: vegetables and fruit in the prevention of chronic diseases. Eur J Nutr. 51:637–663.
  • Bolton WK, Abdel-Rahman E. 2002. Pimagedine: a novel therapy for diabetic nephropathy. Expert Opin Investig Drugs. 11:565–574.
  • Brownlee M, Vlassara H, Kooney A, Ulrich P, Cerami A. 1986. Aminoguanidine prevents diabetes-induced arterial wall protein cross-linking. Science. 232:1629–1632.
  • Cai W, He JC, Zhu L, Chen X, Zheng F, Striker GE, Vlassara H. 2008. Oral glycotoxins determine the effects of calorie restriction on oxidant stress, age-related diseases, and lifespan. Am J Pathol. 173:327–336.
  • Cai W, Ramdas M, Zhu L, Chen X, Striker GE, Vlassara H. 2012. Oral advanced glycation endproducts (AGEs) promote insulin resistance and diabetes by depleting the antioxidant defenses AGE receptor-1 and sirtuin 1. Proc Natl Acad Sci USA. 109:15888–15893.
  • Chen JL, Francis J. 2012. Pyridoxamine, advanced glycation inhibition, and diabetic nephropathy. J Am Soc Nephrol. 23:6–8.
  • Chun A. 2010. Scavenging effects of sandy-tea ethanol extract on super oxide anion and hydroxyl radical. Meat Res. 4:60–64.
  • Delgado-Andrade C, Tessier FJ, Niquet-Leridon C, Seiquer I, Pilar Navarro M. 2012. Study of the urinary and faecal excretion of nepsilon-carboxymethyllysine in young human volunteers. Amino Acids. 43:595–602.
  • Fu L, Xu BT, Xu XR, Gan RY, Zhang Y, Xia EQ, Li HB. 2011. Antioxidant capacities and total phenolic contents of 62 fruits. Food Chem. 129:345–350.
  • Fujiwara Y, Kiyota N, Tsurushima K, Yoshitomi M, Mera K, Sakashita N, Takeya M, Ikeda T, Araki T, Nohara T, et al. 2011. Natural compounds containing a catechol group enhance the formation of Nepsilon-(carboxymethyl)lysine of the Maillard reaction. Free Radic Biol Med. 50:883–891.
  • Furukawa A. 2003. (−)-Epigallocatechin gallate causes oxidative damage to isolated and cellular DNA. Biochem Pharmacol. 66:1769–1778.
  • Gautieri A, Redaelli A, Buehler MJ, Vesentini S. 2014. Age- and diabetes-related nonenzymatic crosslinks in collagen fibrils: candidate amino acids involved in advanced glycation end-products. Matrix Biol. 34:89–95.
  • Geissler S, Hellwig M, Zwarg M, Markwardt F, Henle T, Brandsch M. 2010. Transport of the advanced glycation end products alanylpyrraline and pyrralylalanine by the human proton-coupled peptide transporter hPEPT1. J Agric Food Chem. 58:2543–2547.
  • Greco E, Cervellati R, Litterio ML. 2013. Antioxidant capacity and total reducing power of balsamic and traditional balsamic vinegar from Modena and Reggio Emilia by conventional chemical assays. Int J Food Sci Tech. 48:114–120.
  • Gu L, Wang W, Liu H. 2014. Scavenging of toxic α-dicarbonyls and α, β-unsaturated aldehydes using polyphenol phytochemicals: reactivity studies and adduct identification (830.10). FASEB J. 28:830.810.
  • Gulcin I. 2012. Antioxidant activity of food constituents: an overview. Arch Toxicol. 86:345–391.
  • Gutteridge JMC. 1981. Thiobarbituric acid-reactivity following iron-dependent free-radical damage to amino acids and carbohydrates. FEBS Lett. 128:343–346.
  • Henning SM, Wang P, Abgaryan N, Vicinanza R, de Oliveira DM, Zhang Y, Lee RP, Carpenter CL, Aronson WJ, Heber D. 2013. Phenolic acid concentrations in plasma and urine from men consuming green or black tea and potential chemopreventive properties for colon cancer. Mol Nutr Food Res. 57:483–493.
  • Hodge JE. 1953. Dehydrated foods, chemistry of browning reactions in model systems. J Agric Food Chem. 1:928–943.
  • Hu H, Jiang H, Ren H, Hu X, Wang X, Han C. 2014. AGEs and chronic subclinical inflammation in diabetes: disorders of immune system. Diabetes Metab Res Rev. 31:127–137.
  • Juranek JK, Geddis MS, Song F, Zhang J, Garcia J, Rosario R, Yan SF, Brannagan TH, Schmidt AM. 2013. RAGE deficiency improves postinjury sciatic nerve regeneration in type 1 diabetic mice. Diabetes. 62:931–943.
  • Kang R, Tang D, Schapiro NE, Livesey KM, Farkas A, Loughran P, Bierhaus A, Lotze MT, Zeh HJ. 2010. The receptor for advanced glycation end products (RAGE) sustains autophagy and limits apoptosis, promoting pancreatic tumor cell survival. Cell Death Differ. 17:666–676.
  • Kellow NJ, Savige GS. 2013. Dietary advanced glycation end-product restriction for the attenuation of insulin resistance, oxidative stress and endothelial dysfunction: a systematic review. Eur J Clin Nutr. 67:239–248.
  • Ky I, Crozier A, Cros G, Teissedre Pl. 2014. Polyphenols composition of wine and grape sub-products and potential effects on chronic diseases. Nutr Aging. 2:165–177.
  • Lin CY, Tsai SJ, Huang CS, Yin MC. 2011. Antiglycative effects of protocatechuic acid in the kidneys of diabetic mice. J Agric Food Chem. 59:5117–5124.
  • Luevano-Contreras C, Chapman-Novakofski K. 2010. Dietary advanced glycation end products and aging. Nutrients. 2:1247–1265.
  • Nguyen HT, van der Fels-Klerx HJ, van Boekel MAJS. 2013. Nε-(carboxymethyl)lysine: a review on analytical methods, formation, and occurrence in processed food, and health impact. Food Rev Int. 30:36–52.
  • Peng X, Zheng Z, Cheng KW, Shan F, Ren GX, Chen F, Wang M. 2008. Inhibitory effect of mung bean extract and its constituents vitexin and isovitexin on the formation of advanced glycation endproducts. Food Chem. 106:475–481.
  • Saito M, Marumo K. 2010. Collagen cross-links as a determinant of bone quality: a possible explanation for bone fragility in aging, osteoporosis, and diabetes mellitus. Osteoporos Int. 21:195–214.
  • Sasahira T, Kirita T, Bhawal UK, Ikeda M, Nagasawa A, Yamamoto K, Kuniyasu H. 2007. The expression of receptor for advanced glycation end products is associated with angiogenesis in human oral squamous cell carcinoma. Virchows Arch. 450:287–295.
  • Shao Y, Xu F, Sun X, Bao J, Beta T. 2014. Phenolic acids, anthocyanins, and antioxidant capacity in rice (Oryza sativa L.) grains at four stages of development after flowering. Food Chem. 143:90–96.
  • Sompong W, Cheng H, Adisakwattana S. 2015. Protective effects of ferulic acid on high glucose-induced protein glycation, lipid peroxidation, and membrane ion pump activity in human erythrocytes. PLoS One. 10:e0129495.
  • Sparvero LJ, Asafu-Adjei D, Kang R, Tang D, Amin N, Im J, Rulledge R, Lin B, Amoscato AA, Zeh HJ, et al. 2009. RAGE (receptor for advanced glycation endproducts), RAGE ligands, and their role in cancer and inflammation. J Transl Med. 7:17.
  • Stirban A, Kotsi P, Franke K, Strijowski U, Cai W, Gotting C, Tschoepe D. 2013. Acute macrovascular dysfunction in patients with type 2 diabetes induced by ingestion of advanced glycated β-lactoglobulins. Diabetes Care. 36:1278–1282.
  • Szwajgier D. 2009. Content of individual phenolic acids in Worts and Beers and their possible contribution to the antiradical activity of Beer. J I Brewing. 115:243–252.
  • Uribarri J, Woodruff S, Goodman S, Cai W, Chen X, Pyzik R, Yong A, Striker GE, Vlassara H. 2010. Advanced glycation end products in foods and a practical guide to their reduction in the diet. J Am Diet Assoc. 110:911–916.
  • Vasan S, Zhang X, Zhang X, Kapurniotu A, Bernhagen J, Teichberg S, Basgen J, Wagle D, Shih D, Terlecky I, et al. 1996. An agent cleaving glucose-derived protein crosslinks in vitro and in vivo. [10.1038/382275a0]. Nature. 382:275–278.
  • Vlassara H, Striker GE. 2011. AGE restriction in diabetes mellitus: a paradigm shift. [10.1038/nrendo.2011.74]. Nat Rev Endocrinol. 7:526–539.
  • Vlassopoulos A, Lean MEJ, Combet E. 2015. Inhibition of protein glycation by phenolic acids: physiological relevance and implication of protein-phenolic interactions. Proc Nutr Soc. 74:E88.
  • Wu CH, Huang SM, Lin JA, Yen GC. 2011. Inhibition of advanced glycation endproduct formation by foodstuffs. Food Funct. 2:224–234.
  • Wu Q, Chen H, Lv Z, Li S, Hu B, Guan Y, Xie B, Sun Z. 2013. Oligomeric procyanidins of lotus seedpod inhibits the formation of advanced glycation end-products by scavenging reactive carbonyls. Food Chem. 138:1493–1502.
  • Xie Y, Chen X. 2013. Structures required of polyphenols for inhibiting advanced glycation end products formation. Curr Drug Metab. 14:414–431. 418).
  • Yen GC, Hsieh PP. 1995. Antioxidative activity and scavenging effects on active oxygen of xylose‐lysine maillard reaction products. J Sci Food Agric. 67:415–420.
  • Yinghua Z. 2006. Study on fluorescence spectrum of Chinese traditional herbs Radix Peucedani, Dichroa febrifuga & Salicylic acid, protocatechuic acid. Master, Heibei Normal University, Library of Hebei Normal University. Available from: http://cdmd.cnki.com.cn/Article/CDMD-10094-2006099233.htm.
  • Zamora-Ros R, Rothwell JA, Scalbert A, Knaze V, Romieu I, Slimani N, Fagherazzi G, Perguier F, Touillaud M, Molina-Montes E, et al. 2013. Dietary intakes and food sources of phenolic acids in the European prospective investigation into cancer and nutrition (EPIC) study. Br J Nutr. 110:1500–1511.

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