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Functional Characterization of α-Gal Producing Lactic Acid Bacteria with Potential Probiotic Properties

Abstract

The possibility of exploiting the human immune response to glycan α-Gal for the control of multiple infectious diseases has been the objective of recent investigations. In this field of research, the strain of Escherichia coli O86:B7 has been at the forefront, but this Gram-negative microorganism presents a safety concern and therefore cannot be considered as a probiotic. To address this challenge, this study explored the identification of novel lactic acid bacteria with a safe history of use, producing α-Gal and having probiotic potential. The lactic acid bacteria were isolated from different traditionally fermented foods (kununn-zaki, kindirmo, and pulque) and were screened for the production of α-Gal and some specific probiotic potential indicators. The results showed that Ten (10) out of forty (40) [25%] of the tested lactic acid bacteria (LAB) produced α-Gal and were identified as Limosilactobacillus fermentum, Levilactobacillus brevis, Agrilactobacillus composti, Lacticaseibacillus paracasei, Leuconostoc mesenteroides and Weissella confusa. Four (4) LAB strains with highest levels of α-Gal were further selected for in vivo study using a mouse model (α1,3GT KO mice) to elucidate the immunological response to α-Gal. The level of anti-α-Gal IgG observed were not significant while the level of anti-α-Gal IgM was lower in comparison to the level elicited by E. coli O86:B7. We concluded that the lactic acid bacteria in this study producing α-Gal have potential probiotic capacity and can be further explored in α-Gal-focused research for both the prevention and treatment of various infectious diseases and probiotic development.

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References
1.
Ukena S, Singh A, Dringenberg U, Engelhardt R, Seidler U, Hansen W . Probiotic Escherichia coli Nissle 1917 inhibits leaky gut by enhancing mucosal integrity. PLoS One. 2007; 2(12):e1308. PMC: 2110898. DOI: 10.1371/journal.pone.0001308. View

2.
Mak J, Chan F, Ng S . Probiotics and COVID-19: one size does not fit all. Lancet Gastroenterol Hepatol. 2020; 5(7):644-645. PMC: 7182525. DOI: 10.1016/S2468-1253(20)30122-9. View

3.
Yilmaz B, Portugal S, Tran T, Gozzelino R, Ramos S, Gomes J . Gut microbiota elicits a protective immune response against malaria transmission. Cell. 2014; 159(6):1277-89. PMC: 4261137. DOI: 10.1016/j.cell.2014.10.053. View

4.
Waldvogel F . Infectious diseases in the 21st century: old challenges and new opportunities. Int J Infect Dis. 2003; 8(1):5-12. DOI: 10.1016/j.ijid.2003.01.001. View

5.
Mateos-Hernandez L, Risco-Castillo V, Torres-Maravilla E, Bermudez-Humaran L, Alberdi P, Hodzic A . Gut Microbiota Abrogates Anti-α-Gal IgA Response in Lungs and Protects against Experimental Infection in Poultry. Vaccines (Basel). 2020; 8(2). PMC: 7350254. DOI: 10.3390/vaccines8020285. View