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19.02.2025  |  1795x
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Drying and Stabilization of Probiotics

Increasing the availability of bioactive substances in the gut. Protective coating increases the survival rate and specifically releases the bacteria
Drying, encapsulation and immobilization of microorganisms

The health-promoting effect of probiotics has been proven by various studies in recent years and is undisputed. The multitude of dietary supplements but also enriched foods is a sign of this. The aim of all these products is the colonization of microorganisms in the intestine to support the existing intestinal flora. The efficiency of the products, especially the number of surviving microorganisms, is crucial for this. The diversity of bacterial strains, their temperature sensitivity and the specific requirements of their milieu rarely allow standard solutions. After fermentation, the organisms must be converted to a storage-stable state – usually by freeze-drying. Sometimes other drying methods are successful.

The drying and stabilization of microorganisms in the fluidized bed was investigated in a case study using the example of a lactobacillus strain. The result proves that only a close interaction of formulation, process control and plant design is target-oriented.

With its spouted bed technology, Glatt has developed and patented a special process for encapsulating and immobilizing microorganisms. The excellent heat and mass transfer conditions enable gentle drying of the microorganisms.

To improve the survival rate, the formulation can be enriched with various protective substances and prebiotics. It is possible to enclose the product directly afterwards with an enteric coating.

At the Glatt Technology Center in Weimar, we work with you to determine the optimum process conditions for your product in feasibility trials for product development. Various laboratory facilities and comprehensive analytical equipment are available for this purpose. On our pilot plants, we optimize the process and scale it up reliably to a stable and economical production scale. The results from this form the basis for the design and construction as well as the erection of your fluid bed or spouted bed plant, tailored to your requirements. As an alternative to our own process technology, we offer you the outsourcing of your production by means of contract manufacturing at Glatt.

Company information

Glatt Ingenieurtechnik GmbH
Glatt Ingenieurtechnik GmbH
Glatt is specialized in intelligent particle design for the generation and functionalization of powders and granulates with defined, adjustable properties. The focus is on particles and powders for pigments, catalytic, ceramic or battery materials as well as for granules and pellets as additives for e.g. industrial salts, detergents and cleaning agents, fertilizers, pesticides, food, feed, dietary supplements and pharmaceuticals. Encapsulation of flavors, enzymes, vitamins, microorganisms, probiotics or fatty acids (PUFA) is just as possible as encapsulation of essential oils and other active, sensitive substances to be protected. With Glatt APPtec®, a unique technology for spray calcination, it is possible to generate, coat and then calcine particles in a pulsing hot gas stream in a single process step. As a pioneer in fluid bed and spouted bed technologies, Glatt masters these important processes for the formulation and optimization of particle properties through defined spray agglomeration, spray granulation, spray coating or (micro)encapsulation as well as through combinations of these processes. Also in the high temperature range. Glatt supports the product idea from the early phase of product formulation through process development to scale-up to production scale. Under the leadership of the Glatt Process & Plant Engineering teams, customized production plants for nutrition, fine chemicals, pharmaceuticals, and biotech applications are successfully planned and commissioned. Worldwide. Whether based on powder synthesis, fluid bed or spouted bed technology, Glatt also offers certified contract manufacturing for customers without their own production capacities.
Last update: 28.10.2025

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