Probiotic capacity of commensal lactic acid bacteria from the intestine of Guinea pigs ().

Heliyon

Faculty of Agroindustrial Engineering, Universidad de Nariño, San Juan de Pasto, Colombia.

Published: April 2024

AI Article Synopsis

  • Indigenous lactic acid bacteria (LAB) play a crucial role in maintaining intestinal microbiota balance, enhancing animal health, and providing defense against infections.
  • A study assessed the probiotic potential of LAB strains isolated from guinea pigs, focusing on their antibacterial activity, exopolysaccharide production, adherence capacity, and resistance to harsh conditions like bile salts and varying pH levels.
  • Strains GCI9 and GDE10 showed significant antimicrobial activity and adaptability to environmental changes, indicating their potential for developing probiotic formulations to improve guinea pig intestinal health.

Article Abstract

The intricate balance of intestinal microbiota is significantly influenced by the pivotal role of indigenous lactic acid bacteria (LAB). These LAB not only contribute to antimicrobial activity and enhance animal health and productivity but also serve as defense against intestinal infections. In the present study, the probiotic potential of LAB strains isolated from various intestinal sections of adult and young guinea pigs () was comprehensively assessed. Strains belonging to the genera , a, , and were also identified. The antibacterial activities of the LAB strains against and were quantified. Exopolysaccharide production, adherence capacity, antibiotic resistance, and bile salt tolerance (0.15 %, 0.30 %, and 0.45 %) of LAB were quantified. Further analyses focused on the effects of pH (2.9, 5.0, 6.4, and 7.4), temperature (40, 50, and 60 °C) and NaCl concentrations (3.5 % and 6.5 % w/v) on LAB growth. Strains GCI9 and GDE10 (), isolated from the cecum and intestine of guinea pigs, exhibited significant antimicrobial activity against and Remarkable adherence capacity to porcine gastric mucin was demonstrated by strains, specifically ACI1, GCI9, and GDE10, with the highest exopolysaccharide levels produced by ACI1 and GCI9 (1.71 and 1.76 mg/mL, respectively). The probiotic potential was further underscored by remarkable bile salt tolerance, especially in strain GDE10, and substantial exopolysaccharide production. These strains displayed notable adaptability to varying environmental conditions, including NaCl concentrations at 3.5 % and 6.5 %, temperatures ranging from 40 to 60 °C, and pH levels of 2.9, 5.0, 6.4, and 7.4. This comprehensive assessment of the probiotic properties of strains, particularly ACI1, GCI9, and GDE10, shows promise for the development of probiotic formulations aimed at enhancing the intestinal health of guinea pigs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11035050PMC
http://dx.doi.org/10.1016/j.heliyon.2024.e29431DOI Listing

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