RESEARCH PAPER
Design management of functional foods for quality of life improvement
 
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1
Chemistry and Vegetal Biochemistry, Banat’s University of Agricultural Sciences and Veterinary Medicine “Regele Mihai I al Romaine” from Timisoara
 
2
Faculty of Pharmacy, Victor Babes University of Medicine and Pharmacy Timisoara, Romania
 
 
Ann Agric Environ Med. 2013;20(4):736-741
 
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ABSTRACT
The paper examines the benefit of bread enriched with antioxidants on oxidative stress, and on the quantities of hydrosoluble antioxidants in a group of human subjects. The home–management of functional foods strategy seeks to improve prompt and effective basic nutrition using additional attributes that are directly positively beneficial for health and well–being. The purpose of this clinical study was to test the tolerance and benefits of multicomponent functional foods enriched with antioxidant compounds obtained from plant extracts on healthy adult volunteers. A detailed protocol was created to formalize and standardize the procedures for data collection, e.g. filling out standardized forms and functional diet questionnaires. For the research method, Group A was given the special diet enriched with multicomponent antioxidant foods and Group B (control). The data were analysed using the quantitative methods. They showed significant increase of hydrosoluble antioxidants in group A compared to control, from 220.61+/–27.92 – 313.56+/–37.09 micrograms/mL (p=0.05), compared to 280.47+/–32.1 – 238.27+/–44.93 micrograms/mL (p=0.45). Also, oxidative stress values showed a decrease in the diet group compared to control that reached statistical significance. Oxidative stress decreased in the diet group to 244 +/– 89 compared to 308+/–108 UFORT in the control group. The responses of the prevention of chronic diseases to a functional foods strategy depend on how they are absorbed and utilized in the body. An anti–oxidant diet with natural bioactive components could become an interesting solution for degenerative disorders in which oxidative stress is increased.
 
REFERENCES (40)
1.
Tubek, S. Correlations between serum zinc concentrations and oxygen balance parameters in patients with primary arterial hypertension. Biol Trace Elem Res. 2007; 115: 213–22.
 
2.
Butnariu M. The Oxygen Paradox. J Pharmacogenom Pharmacoproteomics 2012; 31: 1–3.
 
3.
Kim KA, Kang KD, Lee EH, Nho CW, Jung SH. Edible wild vegetable, Gymnaster koraiensis protects retinal ganglion cells against oxidative stress. Food Chem Toxicol. 2011; 21: 31–43.
 
4.
Jacobo-Velázquez DA, Martínez-Hernández GB, Del C Rodríguez S, Cao CM, Cisneros-Zevallos L. Plants as biofactories: physiological role of reactive oxygen species on the accumulation of phenolic antioxidants in carrot tissue under wounding and hyperoxia stress. J Agric Food Chem. 2011; 65: 83–93.
 
5.
Lin KC, Sun PC, Lin PL. Production of reactive oxygen species and induction of signaling pathways for the ACO gene expressions in tomato plants triggered by the volatile organic compound ether. Plant Cell Rep. 2011: 599–611.
 
6.
Kell DB. Towards a unifying, systems biology understanding of largescale cellular death and destruction caused by poorly liganded iron: Parkinson’s, Huntington’s, Alzheimer’s, prions, bactericides, chemical toxicology and others as examples. Arch Toxicol. 2010: 825–89.
 
7.
Palasuwan A, Margaritis I, Soogarun S, Rousseau AS. Dietary intakes and antioxidant status in mind–body exercising pre– and postmenopausal women. J Nutr Health Aging. 2011: 577–84.
 
8.
Rea G, Antonacci A, Lambreva M, Margonelli A, Ambrosi C, Giardi MT. The NUTRA–SNACKS Project: Basic Research and Biotechnological Programs on Nutraceutics. Adv Exp Med Biol. 2011; 698: 1–16.
 
9.
Fu L, Xu BT, Gan RY, Zhang Y, Xu XR, Xia EQ, Li HB. Total phenolic contents and antioxidant capacities of herbal and tea infusions. Int J Mol Sci. 2011; 12: 2112–24.
 
10.
Butnariu MV, Giuchici CV. The use of some nanoemulsions based on aqueous propolis and lycopene extract in the skin’s protective mechanisms against UVA radiation. J Nanobiotechnology. 2011; 9: 1–9.
 
11.
Erdman JW, Carson L, Kwik-Uribe C, Evans EM, Allen RR. Effects of cocoa flavanols on risk factors for cardiovascular disease. Asia Pac J Clin Nutr. 2008; 17: 284–7.
 
12.
Alvarez S, Galant A, Jez JM, Hicks LM. Redox–regulatory mechanisms induced by oxidative stress in Brassica juncea roots monitored by 2–DE proteomics. Proteomics 2011; 11: 1346–50.
 
13.
Terao J. Dietary flavonoids as antioxidants. Forum Nutr. 2009; 61: 87–94.
 
14.
Lenucci MS, Cadinu D, Taurino M, Piro G, Dalessandro G. Antioxidant composition in cherry and high–pigment tomato cultivars. J Agric Food Chem. 2006; 54: 2606–13.
 
15.
Dazy M, Béraud E, Cotelle S, Meux E, Masfaraud JF, Férard JF. Antioxidant enzyme activities as affected by trivalent and hexavalent chromium species in Fontinalis antipyretica Hedw. Chemosphere. 2008; 73: 281–90.
 
16.
Scheen AJ. Drug–drug and food–drug pharmacokinetic interactions with new insulinotropic agent’s repaglinide and nateglinide. Clin Pharmacokinet. 2007; 46: 93–108.
 
17.
Capanoglu E, Beekwilder J, Boyacioglu D, Hall R, de Vos R. Changes in antioxidant and metabolite profiles during production of tomato paste. J Agric Food Chem. 2008; 56: 964–73.
 
18.
Butnariu M. An analysis of Sorghum halepense behavior in presence of tropane alkaloids from Datura stramonium extracts. Chem Cent J. 2012; 6: 1–22.
 
19.
Dogan M, Tipirdamaz R, Demir Y. Effective salt criteria in callus– cultured tomato genotypes. Z Naturforsch C. 2010; 65: 613–8.
 
20.
Terao J, Kawai Y, Murota K. Vegetable flavonoids and cardiovascular disease. Asia Pac J Clin Nutr. 2008; 17: 291–3.
 
21.
Butnariu M, Coradini ZC. Evaluation of Biologically Active Compounds from Calendula officinalis Flowers using Spectrophotometry. Chem Cent J. 2012; 6: 1–7.
 
22.
Wang CZ, Mehendale SR, Calway T, Yuan CS. Botanical flavonoids on coronary heart disease. Am J Chin Med. 2011; 39: 661–71.
 
23.
Burgassi S, Zanardi I, Travagli V, Montomoli E, Bocci V. How much ozone bactericidal activity is compromised by plasma components? J Appl Microbiol. 2009; 106: 1715–21.
 
24.
Di Pietro A, Baluce B, Visalli G, La Maestra S, Micale R, Izzotti A. Ex vivo study for the assessment of behavioral factor and gene polymorphisms in individual susceptibility to oxidative DNA damage metals–induced. Int J Hyg Environ Health. 2011; 214: 210–8.
 
25.
Jesús Periago M, García-Alonso J, Jacob K, Belén Olivares A, José Bernal M, Dolores Iniesta M, Martínez C, Ros G. Bioactive compounds, folates and antioxidant properties of tomatoes (Lycopersicum esculentum) during vine ripening. Int J Food Sci Nutr. 2009; 60: 694–708.
 
26.
Terao J, Murota K, Kawai Y. Conjugated quercetin glucuronides as bioactive metabolites and precursors of aglycone in vivo. Food Funct. 2011; 2: 11–7.
 
27.
Lorgis L, Zeller M, Dentan G, Sicard P, Richard C, Buffet P, L’Huillier I, Beer JC, Cottin Y, Rochette L, Vergely C. The free oxygen radicals test (FORT) to assess circulating oxidative stress in patients with acute myocardial infarction. J Atherosclerosis Res. 2010; 213: 616–621.
 
28.
Patel PJ, Khera AV, Jafri K, Wilensky RL, Rader DJ. The anti-oxidative capacity of high-density lipoprotein is reduced in acute coronary syndrome but not in stable coronary artery disease. J Am Coll Cardiol. 2011; 58: 2068–2075.
 
29.
Butnariu M, Caunii A, Putnoky S. Reverse phase chromatographic behaviour of major components in Capsicum Annuum extract. Chem Cent J. 2012; 6: 1–6.
 
30.
Pavlatou MG, Papastamataki M, Apostolakou F, Papassotiriou I, Tentolouris N. FORT and FORD: two simple and rapid assays in the evaluation of oxidative stress in patients with type 2 diabetes mellitus. Metabolism. 2009; 58: 1657–1662.
 
31.
Ginsberg BH. Factors affecting blood glucose monitoring: sources of errors in measurement. J Diabetes Sci Technol. 2009; 3: 903–13.
 
32.
De Pergola G, Di Roma P, Paoli G, Guida P, Pannacciulli N, Giorgino R. Haptoglobin serum levels are independently associated with insulinemia in overweight and obese women. J Endocrinol Invest. 2007; 30: 399–403.
 
33.
Alcaraz M, Acevedo C, Castillo J, Benavente-Garcia O, Armero D, Vicente V, Canteras M. Liposoluble antioxidants provide an effective radioprotective barrier. Br J Radiol. 2009; 82: 605–9.
 
34.
Andriollo-Sanchez M, Hininger-Favier I, Meunier N, Venneria E, O’Connor JM, Maiani G, Coudray C, Roussel AM. Age-related oxidative stress and antioxidant parameters in middle-aged and older European subjects: the ZENITH study. Eur J Clin Nutr. 2005: S58–62.
 
35.
International Food Information Council (IFIC) Foundation, http:// www.foodinsight.org/ (accessed:12.09.2011).
 
36.
European Food Safety Authority (EFSA), http://www.efsa.europa.eu/ en/aboutefsa.htm (accessed: 18.07.2011).
 
37.
Linarès E, Thimonier C, Degre M. The Effect of NeOpuntia(R) on Blood Lipid Parameters-Risk Factors for the Metabolic Syndrome (Syndrome X). Adv Ther. 2007; 24: 1115–1125.
 
38.
Van Horn L, Mc Coin M, Kris-Etherton PM, Burke F, Carson JA, Champagne CM, Karmally W, Sikand G. The evidence for dietary prevention and treatment of cardiovascular disease. J Am Diet Assoc. 2008; 108: 287–331.
 
39.
Sacheck JM, Milbury PE, Cannon JG, Roubenoff R, Blumberg JB. Effect of vitamin E and eccentric exercise on selected biomarkers of oxidative stress in young and elderly men. Free Radic Biol Med. 2003; 34: 1575–88.
 
40.
Bloomer RJ, Goldfarb AH, McKenzie MJ. Oxidative stress response to aerobic exercise: comparison of antioxidant supplements. Med Sci Sports Exerc. 2006; 38: 1098–105.
 
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ISSN:1232-1966
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