Microencapsulated probiotic substance and process of manufacture
Dried powder solid particles are disclosed containing a probiotic microorganism and a carrier phase wherein the probiotic microorganism is encapsulated, and wherein the carrier phase further comprises at least a nutritious source. The dried powder solid particles have a particle size distribution between n and (n+400) μm, wherein n is comprised between 100 and 10,000 μm, preferably between 300 and 5000 μm, more preferably between 400 and 1000 μm.
1. A dried powder composition comprising solid particles containing:
a) a probiotic microorganism,
b) a carrier phase wherein said probiotic microorganism is encapsulated, said carrier phase further comprising at least a nutritious source as well as an enteric composition,
wherein said dried powder composition presents a particle size distribution between n and (n+400) μm, wherein n is comprised between 100 and 10,000 μm, and said solid particles are spherical particles comprising 50 to 80 wt. % of said probiotic microorganism, and wherein said carrier phase comprises a mixture of alginate and pullulan.
2. The dried powder solid particles according to claim 1 , wherein said particle size distribution is between n and (n+200) μm wherein n is comprised between 100 and 10,000 μm.
3. The dried powder solid particles according to claim 1 , wherein each of the solid particles presents a homogeneous composition.
4. The dried powder solid particles according to claim 1 , wherein said nutritious source comprises at least a compound selected from the group consisting of a monosaccharide, a polysaccharide, an aminoacid, a peptide, a protein, a vitamin, a yeast extract, a halogen salt of an alkali or earthalkali metal, an antioxidant, glycerol, zinc acetate, zinc chloride, zinc lactate, ascorbic acid, citric acids or a vegetable oil and milk fat.
5. The dried powder solid particles according to claim 1 , wherein said nutritious source is present in an amount from 1 to 5 wt. % with respect to the total weight of the dried powder solid particles.
6. The dried powder solid particles according to claim 1 , further comprising an external coating selected from the group consisting of alginate, chitosan, pectin, pullulan, gelatine, carageenan, agar, cellulose, hemicellulose, ethylcellulose, carboxymethylcellulose and their mixture.
7. The enteric composition comprising said dried powder solid particles according to claim 1 in a suitable vehicle.
8. The enteric composition according to claim 7 , wherein said suitable vehicle is an enteric coating selected from the group consisting of ethylcellulose, hydroxypropylcellulose, carboxymethylcellulose, and methacrylic acid-ethyl acrylate copolymer.
9. The enteric composition according to claim 7 , in the form of a soft or hard capsule, tablet, or sachet.
10. A process for the manufacture of dried powder composition comprising solid particles containing a probiotic microorganism in the form of spherical particles comprising the following steps:
mixing a preparation of probiotic microorganisms and a carrier phase comprising at least a nutritious source,
wherein the carrier phase comprises at least one substance selected from the group consisting of alginate, chitosan, pectin, pullulan, gelatine, carrageenan, agar, and
wherein said nutritious source comprises at least a compound selected from the group consisting of a monosaccharide, a polysaccharide, an aminoacid, a peptide, a protein, a vitamin, a yeast extract, a halogen salt of an alkali or earthalkali metal, an antioxidant, glycerol, zinc acetate, zinc chloride, zinc lactate, ascorbic acid, citric acids or a vegetable oil and milk fat,
extruding the mixture of said probiotic microorganisms and said carrier phase to produce microspheres, and
collecting said microspheres into a bath containing a solidification solution,
and wherein said extrusion step is performed at a predetermined speed of liquid flow of 0.2 to 5 m/s through at least one vibrating nozzle in a laminar flow drip casting to obtain said dried powder particles under the form of spherical particles, said vibrating nozzle having a vibration frequency in a range of 1 to 20,000 Hz. and a vibration amplitude of at least 0.5 μm.
11. The process according to claim 10 , wherein the laminar flow drip casting from at least one vibrating nozzle is obtained with a vibrational support.
12. The process according to claim 10 , wherein the vibration of the vibrating nozzle is orientated in an axial or a lateral direction with respect to the flow to generate droplets.
13. The process according to claim 10 , wherein the said produced spherical particles have a diameter in the range of 100 to 10,000 μm.
14. The process according to claim 10 , wherein two liquids are extruded in a laminar flow with one or multiple double nozzle systems comprising an inner nozzle and an outer nozzle.
15. The process according to claim 10 , further comprising an additional step of encapsulating the extruded mixture.
16. The process according to claim 10 , further comprising an external coating step.