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1.
J Dairy Sci ; 91(9): 3277-90, 2008 Sep.
Article in English | MEDLINE | ID: mdl-18765587

ABSTRACT

Strongly proteolytic starters seem to improve the growth of nonstarter lactobacilli during cheese ripening, but no information is available on the impact of the nonmicrobial proteases usually active in cheese on their development. In the current study, the influence of chymosin- and plasmin-mediated proteolysis on the growth and biochemical activities of lactobacilli during ripening of miniature Cheddar-type cheeses, manufactured under controlled microbiological conditions, was studied. Two experiments were performed; in the first, residual chymosin activity was inhibited by the addition of pepstatin, and in the second, plasmin activity was increased by adding more enzyme, obtained in vitro through the activation of plasminogen induced by urokinase. Cheeses with or without a Lactobacillus plantarum I91 adjunct culture and with or without added pepstatin or plasmin solution were manufactured and ripened for 60 d. The addition of the adjunct culture resulted in enhancement of secondary proteolysis, evidenced by an increase in the total content of free amino acids (FAA) and modifications of the individual FAA profiles. Reduction in residual chymosin activity caused a decrease in primary and secondary proteolysis, characterized by the absence of alpha(s1)-casein hydrolysis and reduced production of peptides and FAA, respectively. The increase in plasmin activity accelerated primary proteolysis but no enhancement of secondary proteolysis was observed. Chymosin- and plasmin-mediated proteolysis did not influence the growth and biochemical activities of adventitious or adjunct lactobacilli, indicating that it is not a limiting factor for the development and proteolytic-peptidolytic activities of lactobacilli in the cheese model studied.


Subject(s)
Cheese/microbiology , Chymosin/metabolism , Fibrinolysin/metabolism , Lactobacillus/growth & development , Lactobacillus/metabolism , Milk Proteins/metabolism , Amino Acids/chemistry , Animals , Cheese/analysis , Chromatography, High Pressure Liquid , Hydrogen-Ion Concentration , Lactobacillus plantarum/growth & development , Lactobacillus plantarum/metabolism , Milk/chemistry , Peptides/chemistry , Principal Component Analysis
2.
J Appl Microbiol ; 105(3): 884-92, 2008 Sep.
Article in English | MEDLINE | ID: mdl-18410340

ABSTRACT

AIMS: The influence of the cheese-making process, ripening conditions and primary starter on the viability and proteolytic activity of an adjunct culture of Lactobacillus plantarum I91 was assessed in two miniature cheese models, representative of Cremoso Argentino and Cheddar cheeses. METHODS AND RESULTS: Cheeses with and without adjunct culture were made under controlled microbiological conditions and sampled during ripening for physicochemical and microbiological analyses. The addition of lactobacilli neither contributed to acid production nor caused changes to the composition of the cheeses. The strain studied exhibited good development and survival and showed a similar growth pattern in both cheese matrices. The adjunct culture caused changes to secondary proteolysis of both cheese types, which were evidenced by modification of peptide profiles and the increase in the levels of some individual amino acids as well as the total content of free amino acids. The changes observed were consistent with the acceleration of proteolysis in the two cheese models assayed. CONCLUSION: Lactobacillus plantarum I91 has desirable and robust technological properties, which makes it a suitable adjunct culture for cheese-making. SIGNIFICANCE AND IMPACT OF THE STUDY: Other cultures and environmental conditions prevailing in the food may affect the viability of adjunct cultures and its biochemical activities; this is the first report describing the successful performance of an adjunct culture of Lact. plantarum I91 in two different model cheese systems.


Subject(s)
Cheese/microbiology , Food Microbiology , Lactobacillus plantarum/metabolism , Probiotics , Antibiosis , Colony Count, Microbial , Fermentation , Microbiological Techniques , Models, Biological
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