COMPOSITION AND METHOD FOR EXTENDING SHELF LIFE OF LACTIC ACID BACTERIA
Methods and compositions are disclosed for enhancing the shelf life of probiotic bacteria, such as lactic acid bacteria (LAB). In one particular formulation, oil, soybean meal and a silicon-containing compound are mixed with LAB to extend the shelf life of the LAB to about six months or longer at normal ambient temperature.
1 . A composition for storing a microorganism, said composition comprising:
(a) oil;
(b) silicon-containing compound; and
(c) a plant meal derived from seeds.
2 . The composition of claim 1 , wherein said oil is selected from the group consisting of soybean oil, safflower oil, corn oil, palm oil, canola oil, mineral oil, and combinations thereof.
3 . The composition of claim 1 , wherein said plant meal is soybean meal.
4 . The composition of claim 1 , wherein said oil is present in said composition at about 5% to 15% (w/w).
5 . The composition of claim 1 , wherein said oil is present in said composition at about 7.7% to 10.2% (w/w).
6 . The composition of claim 1 , wherein said silicon-containing compound is selected from the group consisting of silicon dioxide, silicate, sodium aluminosilicate and combination thereof.
7 . The composition in claim 1 , wherein said silicon-containing compound is silicon dioxide and said silicon dioxide is present in said composition at about 0.1% to 0.7% (w/w).
8 . The composition of claim 1 , wherein said plant meal is present in said composition at about 80% to 95% (w/w).
9 . The composition of claim 1 , wherein said plant meal is an extruded soybean meal.
10 . The composition of claim 1 , wherein said microorganism is stabilized.
11 . A composition comprising
(a) oil;
(b) silicon-containing compound;
(c) a plant meal derived from seeds; and
(d) a probiotic bacterium.
12 . The composition of claim 11 , wherein said plant meal is soybean meal.
13 . The composition of claim 11 , wherein said probiotic bacterium is a member selected from the group consisting of lactic acid producing bacterium, lactic acid utilizing bacterium, and combinations thereof.
14 . The composition of claim 11 , wherein said probiotic bacterium is a member selected from the group consisting of Lactobacillus animalis, Lactobacillus acidophilus, Propionibacterium freudenreichii and combinantions thereof.
15 . The composition of claim 11 , wherein said probiotic bacterium is a strain selected from the group consisting of LA51, M35, LA45, NP28, L411, D3, P9, P42, PF24 and combinations thereof.
16 . The composition of claim 11 , wherein said probiotic bacterium is stabilized.
17 . The composition of claim 11 , wherein said probiotic bacterium has a water activity of less than 0.08.
18 . The composition of claim 11 , wherein said probiotic bacterium retains 90% or more colony forming unit (CFU) after being stored at room temperature for three months with said oil and soybean meal.
19 . The composition of claim 11 , wherein said probiotic bacterium retains 90% or more colony forming unit (CFU) after being stored at room temperature for six months with said oil and soybean meal.
20 . The composition of claim 1 , wherein said soybean meal has particle size ranging from about 25 micrometers to about 150 micrometers.
21 . The composition of claim 11 , wherein said probiotic bacterium is present in said composition at a concentration of between 1×10 10 to 6×10 10 CFU per gram.
22 . The composition of claim 11 , wherein said composition further comprises an animal feed.
23 . A method of extending shelf-life of a probiotic bacterium, said method comprising (a) mixing said probiotic bacterium with soybean meal, soybean oil, and a silicon-containing compound.
24 . The method of claim 23 , further comprising a step (b) storing the mixture of step (a) at a desired temperature.
25 . The method of claims 23 , wherein said mixture of step (a) further comprises an animal feed.
26 . The method of claim 23 , wherein said probiotic bacterium is stabilized.