Assessment of food safety and hygienic practice of junk food in the restaurants of Al Qunfudhah in Saudi Arabia

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Research Paper 01/12/2020
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Assessment of food safety and hygienic practice of junk food in the restaurants of Al Qunfudhah in Saudi Arabia

Elbialy Amany, Refaat. Farhan, Majdah, Abd Elglel
Int. J. Biosci. 17(6), 154-161, December 2020.
Copyright Statement: Copyright 2020; The Author(s).
License: CC BY-NC 4.0

Abstract

Foodborne pathogens are becoming a globally formidable health problem and perceived as a major health concern in the Kingdom of Saudi Arabia (KSA). In our previous study 93 of (E. coli, Serratia odorifera, Citrobacter werkmanii, Acinetobacer Baumannii, Klebsilla, Pseudomonas spp) were isolated from fast food included Shawarma, Burger Chicken & Beef, Liver, Chicken fillet nuggets (Mesahab) and Fried Chicken (Borst ) different restaurant in the Al Qunfudhah is administrative centers, located in the southwest of the Emirate of Makkah at a distance of 360 km. Kingdom of Saudi Arabia. Identification was based on conventional culture and antimicrobial susceptibility testing (AST) .The objective of the current study is to confirm identification of (E. coli, Serratia odorifera, Citrobacter werkmanii , Acinetobacer Baumannii, Klebsilla, Pseudomonas spp)  for the BD phoenix automated microbiology system is intended for the rapid identification (ID) and antimicrobial susceptibility testing (AST) of clinically significant bacteria. The results revealed that mean value of E.coli counts Shawarma, Burger, Borst and Mesaheb were 6.23±0.48, 5.72±0.74, 6.15 ±0.48 and 5.59±0.64 log10 CFU g−1 respectively.The Pseudomonas Flourescens count of Burger was statistically significant when compared with Shawarma ,Borst and Mesaheb (p < 0.05). This result indicated that most of the fast food samples examined in the study did not meet any bacteriological quality standard as recommended by The New South Wales (NSW) Food Authority to be <5.0 log10 CFU g−1 and, therefore, it poses potential risks to consumers. Also, the hygiene practices in the fast food were evaluated using a questionnaire format and critical points were identified.

Abdalhamid S, Alhaddad Farj A, Abushaala Ali, Bahout A. 2013. Bacterial        Contamination of Ready to Eat Foods (Shawerma Sandwiches) in Misurata City, Libya. 2nd International Conference on Environment, Agriculture and Food    Sciences,    Kuala    Lumpur ((Malaysia).

Addis, Mekonnen, Sisay, Desta. 2015. A Review on Major Food Borne Bacterial Illnesses .Journal Trop Disease 3(4).

Centers for Disease Control and Prevention. 2012. Food Safety: About Foodborne Illness. Atlanta: CDC. Available: http://www.cdc.gov/foodsafety/facts.html

Chumber SK, Kaushik K, Savy S. 2007. Bacteriological analysis of street foods in Pune. Ind. Journal Publication Health 51(2), 114-116.

Das A, Nagananda GS, Bhattacharya S, Bhardwaj S. 2010.Microbiological quality of Street-Vended Indian Chaats sold in Bangalore. Journal Biology Science 10, 255-260.

Das M, Rath CC, Mohapatra UB. 2011. Bacteriology  of a most popular street food (Panipuri) and inhibitory effect of essential oils on bacterial growth. Journal of  Food Science  & Technology.

Ebeed A, Saleh S, El-Shehemy MA, Ayoub Ghorbal SH, Hozyen AKA. 2015. Application of Hazard Analysis and Critical Control Point (HACCP) in  Egyptian slaughter  houses  to  obtain  high quality meat. Global Veterinaria 14(3), 297-303.

Farooq Ahamed, Saqlain Abbas. 2013. Bacterial Contamination in Processed chicken shawarma (meat) sold in various Parts of Lahore, Pakistan. Pakistan Journal of Nutrition 12(2), 130-134.

Hassanin FS, Rehham Amin A. 2014. Incidence of Escherichia coli and Salmonella in Ready to eat Foods.Benha Veterinary Medical Journal 27(1), 84-91.

ICMSF. 2011. Microorganisms in Foods 8: Use of Data for Assessing Process Control and Product Acceptance Errata.

McCown M, Grzeszak B. 2010. Public health foodborne illness case study during a special operations forces deployment to South America. Journal Spec Oper Med 10, 45-47.

NSW (New South Wales) Food Authority. 2012. Microbiological Quality Guide for Ready-To-Eat Foods: A Guide to Interpreting Microbiological Results.

Odu NN, Akano UM. 2012. The Microbiological Assessment of ready to Eat Food (Shawarma) in Port Harcourt City, Nigeria. Nature and Science 10(8).

Roland NN, Mirriam EN, Collins EO, Nicoline FT, Ezekiel G. 2012. Foodborne Pathogens Recovered from Ready-to-Eat Foods from Roadside Cafeterias and Retail Outlets in Alice, Eastern Cape Province, South Africa. Public Health Implications. International Journal of Environmental Research and Public Health 9, 2608-2619.

SAS Institute Inc. 1999. Statistical Analysis System. User’s Guide: Statistics, SAS Institute Inc., Editors, Cary, NC.

Swai ES, Schooman L. 2013. Application of Hazard Analysis Critical Control Point (HACCP) practice to the milk production and marketing chain: the case of Tanga region, Tanzania. Livestock Research for Rural Development 25(2), 1-10.

Swanson KM, Busta FF, Peterson EH, Johnson MG. 1992. Colony count methods. In C.Vanderzant and F.spilistoesser (eds) compendium of methods for the microbiological examination of foods. American Public Health Association, Wasington. USA p 75-95.

Tambekar DH, Jaiswal VJ, Dhanorkar DV, Gulhane PB, Dudhane MN. 2009. Microbial quality & safety of street vended fruit juices: A case study of Amaravati city. Internet Journal Food Safety. 10, 72-76.

WHO. (World Health Organization). 2015. Report on Preparedness, surveillance and response. Saudi Arabia health profile.

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