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1.
Br J Nutr ; 116(7): 1229-1235, 2016 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-27641762

RESUMO

It has been previously shown that Lactobacillus plantarum CRL 2130 is able to produce riboflavin in soyamilk. The aim of the present study was to evaluate the efficiency of this riboflavin-bio-enriched soyamilk to revert and/or prevent the nutritional deficiency of riboflavin using different animal models. When used to supplement the diets of previously depleted animals, it was shown that the growth, riboflavin status and morphology of the small intestines reverted to normal parameters and were similar to animals supplemented with commercial riboflavin. In the prevention model, the same tendency was observed, where animals that received soyamilk fermented with L. plantarum CRL 2130 did not show signs of riboflavin deficiency. This new bio-fortified soya-based product could be used as part of normal diets to provide a more natural alternative to mandatory fortification with riboflavin for the prevention of its deficiency.


Assuntos
Fermentação , Lactobacillus plantarum/metabolismo , Deficiência de Riboflavina/prevenção & controle , Riboflavina/biossíntese , Leite de Soja/química , Animais , Dieta , Feminino , Camundongos , Camundongos Endogâmicos BALB C , Riboflavina/administração & dosagem , Deficiência de Riboflavina/etiologia , Leite de Soja/metabolismo
2.
J Appl Microbiol ; 111(6): 1297-309, 2011 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-21933312

RESUMO

Although most vitamins are present in a variety of foods, human vitamin deficiencies still occur in many countries, mainly because of malnutrition not only as a result of insufficient food intake but also because of unbalanced diets. Even though most lactic acid bacteria (LAB) are auxotrophic for several vitamins, it is now known that certain strains have the capability to synthesize water-soluble vitamins such as those included in the B-group (folates, riboflavin and vitamin B(12) amongst others). This review article will show the current knowledge of vitamin biosynthesis by LAB and show how the proper selection of starter cultures and probiotic strains could be useful in preventing clinical and subclinical vitamin deficiencies. Here, several examples will be presented where vitamin-producing LAB led to the elaboration of novel fermented foods with increased and bioavailable vitamins. In addition, the use of genetic engineering strategies to increase vitamin production or to create novel vitamin-producing strains will also be discussed. This review will show that the use of vitamin-producing LAB could be a cost-effective alternative to current vitamin fortification programmes and be useful in the elaboration of novel vitamin-enriched products.


Assuntos
Lactobacillaceae/metabolismo , Complexo Vitamínico B/biossíntese , Deficiência de Vitaminas/prevenção & controle , Suplementos Nutricionais , Ácido Fólico/biossíntese , Alimentos Fortificados , Humanos , Probióticos , Riboflavina/biossíntese , Vitamina B 12/biossíntese
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