Applications of Probiotic-Based Multi-Components to Human, Animal and Ecosystem Health: Concepts, Methodologies, and Action Mechanisms

Microorganisms. 2022 Aug 24;10(9):1700. doi: 10.3390/microorganisms10091700.

Abstract

Probiotics and related preparations, including synbiotics and postbiotics, are living and non-living microbial-based multi-components, which are now among the most popular bioactive agents. Such interests mainly arise from the wide range and numerous beneficial effects of their use for various hosts. The current minireview article attempts to provide an overview and discuss in a holistic way the concepts, methodologies, action mechanisms, and applications of probiotic-based multi-components in human, animal, plant, soil, and environment health. Probiotic-based multi-component preparations refer to a mixture of bioactive agents, containing probiotics or postbiotics as main functional ingredients, and prebiotics, protectants, stabilizers, encapsulating agents, and other compounds as additional constituents. Analyzing, characterizing, and monitoring over time the traceability, performance, and stability of such multi-component ingredients require relevant and sensitive analytical tools and methodologies. Two innovative profiling and monitoring methods, the thermophysical fingerprinting thermogravimetry-differential scanning calorimetry technique (TGA-DSC) of the whole multi-component powder preparations, and the Advanced Testing for Genetic Composition (ATGC) strain analysis up to the subspecies level, are presented, illustrated, and discussed in this review to respond to those requirements. Finally, the paper deals with some selected applications of probiotic-based multi-components to human, animal, plant, soil and environment health, while mentioning their possible action mechanisms.

Keywords: animal health; ecosystem health; human health; postbiotics; prebiotics; probiotics; synbiotics.

Publication types

  • Review

Grants and funding

This work has received funding by the European Union’s Horizon 2020 Research and Innovation Program through NUTRISHIELD project (https://nutrishield-project.eu/) under Grant Agreement No. 818110, European Union’s Horizon Europe Research, innovation program through URBANE under the grant Agreement 101059232 and by the Swiss State Secretariat for Education (SERI) under the contract number 22.00083. This paper reflects only the authors views; the European Union is not liable for any use that may be made of the information contained therein.