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Lentikats B iotechnology in Food Industry

Lentikats B iotechnology in Food Industry. Content. Our aim What is Lentikats Biocatalyst Production of Lentikats Biocatalyst Benefits of Lentikats Biotechnology Lentikats Biocatalyst in Food Industry Our guarantees Our partners Contacts. LentiKat’s a.s. in Food Industry.

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Lentikats B iotechnology in Food Industry

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  1. Lentikats Biotechnology in Food Industry

  2. Content Our aim What is Lentikats Biocatalyst Production of Lentikats Biocatalyst Benefits of Lentikats Biotechnology Lentikats Biocatalyst in Food Industry Our guarantees Our partners Contacts

  3. LentiKat’s a.s.in Food Industry • LentiKat’s a.s. follows up on nine year of research and development of Lentikats Biotechnology. • Our production know-how for commercial use of our Biocatalyst and for its industrial applications is patented internationally. • Our main focus is in intensification of production processes that leads to: • higher process yields • enhanced process stability, • Increased revenue, • Reduction of environmental footprint. Biotechnologies are changing the world…

  4. Lentikats Biotechnology Unique shape of the matrix and original immobilisation procedure enables to encapsulate free enzymes or microorganisms (bacteria, yeasts, fungi) inside a hydrogel porous carrier from polyvinylalcohol (PVA). The advantages of PVA matrix are: excellent physical and mechanical characteristics that result in along-term mechanical stability hardly biodegradable no toxic effects Lentikats Biocatalysts enable easy separation of enzymes or microorganisms from the bulk media and therefore can be used repeatedly. With biotechnologies to a better future…

  5. Lentikats Biotechnology Microencapsulation vs. traditional proven technology new method based on well-proven principle spherical shape – limited diffusion to the “core” lentil-like shape – no diffusion limitations „micro“ size „mili“ size – easier separation

  6. How does the Lentikats Biocatalyst work? A maximum surface in combination with the minimum volume of Lentikats Biocatalyst results in a substantial reduction of diffusion limitations associated with the transfer of substrate into the matrix and the product out of the matrix.

  7. Why polyvinylalcohol? It is an inexpensive material Encapsulation takes place under optimal, cell-sparing conditions It allows a production of hydrogel with excellent mechanical properties It does not have any side effects on fermentation It offers high capacity for the cell loading The process is stable and easy to control It is a non-toxic material Biotechnologies are changing the world…

  8. How is Lentikats Biocatalyst produced?

  9. Lentikats Biocatalysts • Biocatalyst Types for Use in Lentikats Encapsulation: • Free Cells • dead cells • viable, non growing cells • viable and growing cells • Free or Immobilised Enzymes. Lentikats Biotechnology allows to immobilise any type of enzyme • The size of Lentikats Biocatalyst pores varies depending on the size and diameter of the Biocatalyst due to: • PVA additive type (size of macromolecule) • additive concentration • biomass concentration

  10. Lentikats Biocatalysts Manufacturing Plant

  11. Laboratory Units for Encapsulation • For low-capacity production of encapsulates (especially for research purposes), a laboratory device is available

  12. What are the benefits? Matrix containing high concentration of biomass Higher yields (in comparison to conventional technologies using free biomass) Higher reaction rates Reduction of reaction tanks’ volume Operational costs savings (electricity, heat) Possibility of repeated usage Operational costs savings Enhanced resistance of modified and immobilised biomass Higher process stability Easy separation of biomass from reaction media Reduced costs for downstream processes (separation) Lower production of waste and by-products Environmentally friendly disposal

  13. ..and also… Shortening of the reaction times Much higher yieldsin comparison to conventional technologies(up to 5 – 15 % higher) Repetitive useof the Biocatalyst, easy separationfrom media (sieve separator) Higher productivityof the Biocatalyst Lower risk of contamination during the production process High stability and easy control of production process Biotechnologies are changing the world…

  14.       Technological set-up  - inlet of reaction media  - filling of Lentikats Biocatalyst  - medium with Lentikats Biocatalyst  - stirrer  - sieve separator  - outlet of separated media  - outlet of Lentikats Biocatalyst

  15. Lentikatsand food industry We currently offer solutions for the following processes: production of lactose free milk Lentikats Biocatalyst with β-galactosidase activity production of invert sugar Lentikats Biocatalyst with invertase activity whey processing Lentikats Biocatalyst with β-galactosidase activity for: production of D-galactose from whey lactose (pharmaceutical quality) production of galacto-oligosaccharides from whey lactose production of special syrups Lentikats Biocatalyst with invertase activity for production of glucose-fructose syrups Lentikats Biocatalyst with immobilised glucoamylase for production of glucose from sugar and starch-based materials or glucose syrups from maltotriose or maltose syrup

  16. Lentikatsand food industry Following solutions are currently under development and testing: production of organic acids Lentikats Biocatalyst with immobilised bacteria Bacillus coagulans for production of lactic acid from lactose, glucose and sucrose Lentikats Biocatalyst with immobilised filamentous fungi Aspergillus niger for production of gluconic acid from sucrose and glucose Lentikats Biocatalyst with immobilised filamentous fungi Aspergillus terreus for production of itaconic acid from sucrose and glucose Biotechnologies are changing the world…

  17. Lentikats Biotechnology - examples LENTIKATS BIOTECHNOLOGY FOR PRODUCTION OF INVERT SUGAR: enzyme: immobilised saccharase, 3-D-fruktofuranosidasefor hydrolysis ofsucrose into glucose and fructose. optimum temperature 30–35°C optimum pH 4,5–5,0 conversion rate 100 % operational stability: 600-1000 repeated batch conversions application - processing of molasses or sucrose solutions

  18. LENTIKATS BIOTECHNOLOGY FOR PRODUCTION OF LACTOSE FREE MILK Lentikats Biotechnology - examples • enzyme: immobilised laktase, β-D-galactosid galactohydrolasefor lactose hydrolysis. • optimum temperature 30–50°C • optimum pH 6,0–6,5 • conversion rate> 90% • operational stability: 120–160 hours

  19. Investment and Investment Return Guarantees • You can easily verify our great results by testing our Biocatalyst in your or other facilitieswith the material of your choice. • Sample of Lentikats Biocatalyst free of charge • Our company provides assistance and full technical support. • Our company offers a long-term cooperation to companies, whose main concerns arereduced investment costs andmaximal process profitability. Biotechnologies change the world…

  20. We guarantee the following: • output parameters • operational stability of Lentikats Biocatalyst and its activity and productivity Investment and Investment Return Guarantees

  21. Our partners in the field of industrial applications

  22. Our partners in the field of research and development

  23. Thank you for attention CompanyHeadquarters: LentiKat´s a.s. Evropska 423/178 160 00 Prague 6 Czech republic Tel.: + 420 224 362 461 Fax: + 420 224 362 463 E-mail: info@lentikats.eu Production plant and laboratories LentiKat´sa.s. Pod Vinicí 83 471 27 Stráž pod Ralskem Czech republic Tel.: + 420 487 851 393 Fax: + 420 487 851 399 E-mail: info@lentikats.eu

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