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Perspective on Constructing Cellulose-Hydrogel-Based Gut-Like Bioreactors for Growth and Delivery of Multiple-Strain Probiotic Bacteria

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posted on 2024-11-23, 11:27 authored by Srinivas Mettu, Zubeen Hathi, Sandya Shiranthi Athukoralalage, Anshu Priya, Tsz Lam, Khai Ong, Namita Roy ChoudhuryNamita Roy Choudhury, Naba Kumar DuttaNaba Kumar Dutta, Rodrigo Curvello, Gil Garnier, Carol Lin
The current perspective presents an outlook on developing gut-like bioreactors with immobilized probiotic bacteria using cellulose hydrogels. The innovative concept of using hydrogels to simulate the human gut environment by generating and maintaining pH and oxygen gradients in the gut-like bioreactors is discussed. Fundamentally, this approach presents novel methods of production as well as delivery of multiple strains of probiotics using bioreactors. The relevant existing synthesis methods of cellulose hydrogels are discussed for producing porous hydrogels. Harvesting methods of multiple strains are discussed in the context of encapsulation of probiotic bacteria immobilized on cellulose hydrogels. Furthermore, we also discuss recent advances in using cellulose hydrogels for encapsulation of probiotic bacteria. This perspective also highlights the mechanism of probiotic protection by cellulose hydrogels. Such novel gut-like hydrogel bioreactors will have the potential to simulate the human gut ecosystem in the laboratory and stimulate new research on gut microbiota.

Funding

A Tough Resilin Based Hydrogel Platform for Repair and Regeneration

Australian Research Council

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History

Journal

Journal of Agricultural and Food Chemistry

Volume

69

Issue

17

Start page

4946

End page

4959

Total pages

14

Publisher

American Chemical Society

Place published

United States

Language

English

Copyright

© 2021 The Authors. Published by American Chemical Society.

Former Identifier

2006107313

Esploro creation date

2021-06-01

Open access

  • Yes

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