Mettu Srinivas, Hathi Zubeen, Athukoralalage Sandya, Priya Anshu, Lam Tsz Nok, Ong Khai Lun, Choudhury Namita Roy, Dutta Naba Kumar, Curvello Rodrigo, Garnier Gil, Lin Carol Sze Ki
School of Energy and Environment, City University of Hong Kong, Tat Chee Avenue, Kowloon, Hong Kong.
Chemical and Environmental Engineering, School of Engineering, RMIT University, Melbourne, Victoria 3000, Australia.
J Agric Food Chem. 2021 May 5;69(17):4946-4959. doi: 10.1021/acs.jafc.1c00468. Epub 2021 Apr 23.
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.
当前的观点展示了利用纤维素水凝胶开发固定化益生菌的类肠道生物反应器的前景。讨论了通过在类肠道生物反应器中产生并维持pH值和氧气梯度,利用水凝胶模拟人类肠道环境的创新概念。从根本上说,这种方法提出了使用生物反应器生产和递送多种益生菌菌株的新方法。讨论了用于生产多孔水凝胶的纤维素水凝胶的相关现有合成方法。在固定于纤维素水凝胶上的益生菌的封装背景下讨论了多种菌株的收获方法。此外,我们还讨论了使用纤维素水凝胶封装益生菌的最新进展。这一观点还强调了纤维素水凝胶对益生菌的保护机制。这种新型的类肠道水凝胶生物反应器有潜力在实验室中模拟人类肠道生态系统,并激发对肠道微生物群的新研究。