Milk fermented with selected strains of lactic acid bacteria is able to improve folate status of deficient rodents and also prevent folate deficiency

被引:28
作者
Emiliano Laino, Jonathan [1 ]
Zelaya, Hortensia [1 ,2 ]
Juarez del Valle, Marianela [1 ]
Savoy de Giori, Graciela [1 ,3 ]
Guy LeBlanc, Jean [1 ]
机构
[1] Ctr Referencia Lactobacilos CERELA CONICET, San Miguel De Tucuman, Tucuman, Argentina
[2] Univ Nacl Tucuman, Fac Bioquim Quim & Farm, Inst Bioquim Aplicada, RA-4000 San Miguel De Tucuman, Tucuman, Argentina
[3] Univ Nacl Tucuman, Fac Bioquim Quim & Farm, Catedra Microbiol Super, RA-4000 San Miguel De Tucuman, Tucuman, Argentina
关键词
Folate; Vitamin deficiency; Lactic acid bacteria; Rodent models; Homocysteine; ONE-CARBON METABOLISM; FOLIC-ACID; COST-EFFECTIVENESS; GENE-EXPRESSION; HOMOCYSTEINE; PROBIOTICS; DISEASE; CANCER; LIVER; RISK;
D O I
10.1016/j.jff.2015.04.055
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Folate deficiencies are common in many parts of the world. The use of folate producing food grade microorganisms has been proposed as a more natural alternative to fortification with the chemical folic acid. The aim of this study was to evaluate the effectiveness of a novel fermented milk elaborated with adequately selected folate producing lactic acid bacteria. This product was tested using both a rodent depletion-repletion model and a complete deficient model. The folate bio-enriched fermented milk was able to increase plasma folate concentrations and decrease homocysteine levels. This is the first report demonstrating that a naturally folate bio-enriched fermented milk, elaborated with folate-producing starter cultures, not only is effective to improve folate status but can also prevent folate deficiency. Consumers also would obviously benefit from this type of product because they could increase their folate intakes while consuming foods that form part of their normal diets. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:22 / 32
页数:11
相关论文
共 74 条
[1]  
Aiso K, 1998, J NUTR SCI VITAMINOL, V44, P361, DOI 10.3177/jnsv.44.361
[2]  
[Anonymous], 2002, HUM VIT MIN REQ REP
[3]   The extremely slow and variable activity of dihydrofolate reductase in human liver and its implications for high folic acid intake [J].
Bailey, Steven W. ;
Ayling, June E. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (36) :15424-15429
[4]   Folate synthesis and metabolism in plants and prospects for biofortification [J].
Basset, GJC ;
Quinlivan, EP ;
Gregory, JF ;
Hanson, AD .
CROP SCIENCE, 2005, 45 (02) :449-453
[5]   A cost-effectiveness analysis of folic acid fortification policy in the United States [J].
Bentley, Tanya G. K. ;
Weinstein, Milton C. ;
Willett, Walter C. ;
Kuntz, Karen M. .
PUBLIC HEALTH NUTRITION, 2009, 12 (04) :455-467
[6]   Fortification of flour with folic acid [J].
Berry, Robert J. ;
Bailey, Lynn ;
Mulinare, Joe ;
Bower, Carol .
FOOD AND NUTRITION BULLETIN, 2010, 31 (01) :S22-S35
[7]  
Blakley R.L., 1984, FOLATES PTERINS, V1
[8]   Folic acid to reduce neonatal mortality from neural tube disorders [J].
Blencowe, Hannah ;
Cousens, Simon ;
Modell, Bernadette ;
Lawn, Joy .
INTERNATIONAL JOURNAL OF EPIDEMIOLOGY, 2010, 39 :110-121
[9]   A QUANTITATIVE ASSESSMENT OF PLASMA HOMOCYSTEINE AS A RISK FACTOR FOR VASCULAR-DISEASE - PROBABLE BENEFITS OF INCREASING FOLIC-ACID INTAKES [J].
BOUSHEY, CJ ;
BERESFORD, SAA ;
OMENN, GS ;
MOTULSKY, AG .
JAMA-JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 1995, 274 (13) :1049-1057
[10]  
Brattström L, 1998, BMJ-BRIT MED J, V316, P894, DOI 10.1136/bmj.316.7135.894