Hurdle Concept and the Role of Lactic Acid Bacteria

Authors

  • Zakari David Adeiza Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria. Author
  • Kareem Sarafadeen Olateju Department of Microbiology, College of Biosciences, Federal University of Agriculture, PMB 2240, Abeokuta, Ogun State, Nigeria Author
  • Bello Kizito Eneye Department of Medical Microbiology and Parasitology, School of Medical Sciences, Universiti Sains, Malaysia Author
  • Audu Godwin Amoka Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria Author
  • Aliyu Abdulbasit Anoze Department of Chemistry, Prince Abubakar Audu University, PMB1008, Anyigba, Kogi State, Nigeria Author
  • Muhammed Abdulsamad Adeiza Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria Author
  • Osazuwa Christopher Olojemarin Department of Microbiology, Adekunle Ajasin University, Akungba, Ondo State, Nigeria Author
  • Emurotu Marvelous Olubunmi Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria Author

DOI:

https://doi.org/10.47363/JFTNS/2024(6)185

Keywords:

Lactic Acid Bacteria, Diacetyl, Biofilms, Acetic Acid, Food Matrices

Abstract

The hurdle idea is a food preservation technique that includes building up a number of barriers to prevent microbes from growing and prolong the shelf life of perishable goods. The idea of using lactic acid bacteria (LAB), which are essential for food preservation, is one that is significant. Through a variety of processes, including fermentation, competitive exclusion, metabolite generation, biofilm formation, nutritional competition, and metabolic activity, LAB support the hurdle concept. Lactic acid bacteria (LAB) ferment glucose to produce lactic acid, which results in an acidic environment that prevents infections and spoiling germs from growing. Additionally, LAB generates antimicrobial substances such as hydrogen peroxide, organic acids, and bacteriocins, which work by competitively excluding harmful germs from growing. Furthermore, metabolites of lactic acid bacteria (LAB) such acetic acid, diacetyl, and carbon dioxide enhance the flavor of fermented foods and serve as organic preservatives. Moreover, LAB have the ability to create biofilms that shield them from antimicrobial agents and environmental stressors, increasing their survival and persistence in food matrices. By means of nutritional competition, LAB 
outcompetes pathogenic or spoilage bacteria in the consumption of available resources, hence restricting their growth. In addition, LAB produces enzymes and antibacterial substances, among other metabolic activities that further impede the growth of infections. 

Author Biographies

  • Zakari David Adeiza, Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria.

    Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria.

  • Kareem Sarafadeen Olateju, Department of Microbiology, College of Biosciences, Federal University of Agriculture, PMB 2240, Abeokuta, Ogun State, Nigeria

    Department of Microbiology, College of Biosciences, Federal University of Agriculture, PMB 2240, Abeokuta, Ogun State, Nigeria

  • Bello Kizito Eneye, Department of Medical Microbiology and Parasitology, School of Medical Sciences, Universiti Sains, Malaysia

    Department of Medical Microbiology and Parasitology, School of Medical Sciences, Universiti Sains, Malaysia

  • Audu Godwin Amoka, Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria

    Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria

  • Aliyu Abdulbasit Anoze, Department of Chemistry, Prince Abubakar Audu University, PMB1008, Anyigba, Kogi State, Nigeria

    Department of Chemistry, Prince Abubakar Audu University, PMB1008, Anyigba, Kogi State, Nigeria

  • Muhammed Abdulsamad Adeiza, Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria

    Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria

  • Osazuwa Christopher Olojemarin, Department of Microbiology, Adekunle Ajasin University, Akungba, Ondo State, Nigeria

    Department of Microbiology, Adekunle Ajasin University, Akungba, Ondo State, Nigeria

  • Emurotu Marvelous Olubunmi, Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria

    Department of Microbiology, Kogi State University (Prince Abubakar Audu University), PMB 1008, Anyigba, Kogi State, Nigeria

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Published

2024-08-27