• Title of article

    Promoting Probiotics Survival by Microencapsualtion with Hylon Starch and Genipin Cross-linked Coatings in Simulated Gastro-intestinal Condition and Heat Treatment

  • Author/Authors

    Khosravi Zanjani, Mohammad Ali Department of Food Science and Technology - Science and Research Branch Islamic Azad University, Tehran, Iran , Ehsani, Mohammad Reza Department of Food Science and Technology - Science and Research Branch Islamic Azad University, Tehran, Iran , Ghiassi Tarzi, Babak Department of Food Science and Technology - Science and Research Branch Islamic Azad University, Tehran, Iran , Sharifan, Anousheh Department of Food Science and Technology - Science and Research Branch Islamic Azad University, Tehran, Iran

  • Pages
    14
  • From page
    753
  • To page
    766
  • Abstract
    Microencapsulation with hydrocolloids as a modern technique has been used to prolong the survival of probiotics during exposure to harsh conditions. In this study, alginate-Hylon starch microcapsules with genipin cross-linked chitosan and poly-L-lysine coatings were developed to encapsulate four strains of probiotic bacteria, including Lactobacillus casei (ATCC 39392), Bifidobacterium bifidum (ATCC 29521), Lactobacillus rhamnosus (ATCC 7469), and Bifidobacterium adolescentis (ATCC 15703). The viability of probiotics was investigated under heat treatment (72, 85, and 90 °C, 0.5 min), simulated gastric juice (along with pepsin, pH = 2, 2 h at 37 °C), and simulated intestinal juice (along with pancreatin and bile salts, pH = 8, 2 h at 37 °C). The morphology and size of microcapsules were measured by scanning electron and optical microscopy. Results of this research demonstrated that, compared with the free form, microencapsulated probiotics had significantly (P < 0.05) higher viability under simulated gastro-intestinal conditions and heat treatment. Microcapsules with genipin cross-linking significantly increased the viability of probiotics compared with non-cross-linked microcapsules. Moreover, genipin did not influence the size of the microcapsules produced using the emulsion technique. In general, this research indicated that the presence of genipin as a cross-linking agent in the structure of hydrocolloids such as chitosan and poly-L-lysine, and also the presence of Hylon (high-amylose starch) as a material resistant to heat and digestive enzymes, not only increased the viability of probiotics in simulated human gastro-intestinal condition but also considerably improved the thermal resistance of microcapsules.
  • Keywords
    Heat treatment , Simulated gastrointestinal condition , Poly-L-lysine; Hylon , Chitosan , Genipin cross-linking
  • Journal title
    Astroparticle Physics
  • Serial Year
    2018
  • Record number

    2416856