Search Results Heading

MBRLSearchResults

mbrl.module.common.modules.added.book.to.shelf
Title added to your shelf!
View what I already have on My Shelf.
Oops! Something went wrong.
Oops! Something went wrong.
While trying to add the title to your shelf something went wrong :( Kindly try again later!
Are you sure you want to remove the book from the shelf?
Oops! Something went wrong.
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
    Done
    Filters
    Reset
  • Discipline
      Discipline
      Clear All
      Discipline
  • Is Peer Reviewed
      Is Peer Reviewed
      Clear All
      Is Peer Reviewed
  • Item Type
      Item Type
      Clear All
      Item Type
  • Subject
      Subject
      Clear All
      Subject
  • Year
      Year
      Clear All
      From:
      -
      To:
  • More Filters
      More Filters
      Clear All
      More Filters
      Source
    • Language
771 result(s) for "Hazard Analysis and Critical Control Points"
Sort by:
Safety Assessment of Foods at Capital Hospital of Pakistan through the Hazard Analysis and Critical Control Point System
Food safety is a current challenge that needs to be addressed globally to overcome burden of foodborne diseases. In this study, food samples collected from Pakistan Institute of Medical Sciences, Islamabad, were analyzed for microbial quality. Parameters to measure the presence or absence of Salmonella, Staphylococcus, coliform, fungi, enteropathogenic Escherichia coli, and total viable counts in foods were studied. Enumeration of aerobic mesophilic bacteria and coliform bacteria was carried out to check the quality of water. The results showed that there was microbial contamination in the foods served at hospital under investigation for this study. Most of the contamination existed because of nonhygienic practices by individuals and serving places. Salmonella, fecal coliforms, and fungal cross-contamination was reported. A hazard analysis and critical control point system was implemented to study what areas are at greater risk and are a reason of contamination in the hospital. The study concluded that high prevalence of the microbial contamination was observed in facilities of the Pakistan Institute of Medical Sciences hospital, requiring strict preventive and precautionary measures to be taken to ensure the safety and health of patients and attendants in the hospital.
Implementation of hazard analysis and critical control point (HACCP) in yogurt production
This study aimed to review hazard analysis and critical control points (HACCP) in the dairy industry for the production of yogurt. The food safety management system (FSMS) was implemented over the last several decades with several amendments. The need for practical and proactive procedures in the dairy industry was identified so that HACCP implementation could ensure that consumers would always have safe food. The concept of HACCP is a systemic and science-based method that can result in safe dairy products such as yogurt based on the complete analysis of manufacturing processes, recognition of hazards potentially present at all stages of production, and risk prevention. In yogurt production, raw milk receipt, pasteurization, packaging, and storage are the steps most susceptible to contamination and were considered critical control points. Further steps also need to be implemented to achieve other related control measures, and these will be discussed.
Review and Analysis of Tuna Recalls in the United States, 2002 through 2020
This review covers 18 years of voluntary recalls of tuna sold commercially in the United States. Recall information is a valuable indicator of failure to implement procedures for food safety. The voluntary recalls involve tuna that was fresh, frozen, processed, hermetically sealed, retorted in a shelf-stable pack (i.e., canned), and formulated into other tuna products. U.S. Food and Drug Administration regulations address the capture, processing, transportation, and sale of raw and processed seafood. These regulations include current good manufacturing practices, the Food Modernization Act, emergency permit controls, and guidelines for low-acid canned foods, seafood hazard analysis and critical control points, food labeling, and sanitary food transportation. Traceability and the food safety culture are important for successfully preventing or implementing recalls. The recalls themselves were separated into product treatment groups: uncooked products, canned shelf-stable products, and products in which tuna was used as an ingredient. The recalls were further categorized and summarized by reason or cause, such as biological and chemical contamination, undeclared ingredients, underprocessing, and foreign materials. The primary causes of recalls of the reviewed tuna products were (in order) Listeria monocytogenes, undeclared allergens, elevated histamine concentrations, and underprocessing of retorted tuna products. The recalls for elevated histamine concentrations primarily affected uncooked (raw) tuna. Recalls for Listeria contamination and the presence of undeclared allergens were primarily class I recalls, and recalls for elevated histamine concentrations and underprocessing were almost always assigned to the less serious recall class II.
Water Safety Plans and HACCP implementation in water utilities around the world: benefits, drawbacks and critical success factors
Drinking water is of paramount importance for people’s health. Many outbreaks due to poor water quality are being recorded even nowadays. Although the institutional framework exists at global (e.g., WHO guidelines) and national level, there are still many factors contributing to water contamination. Risk assessment tools, such as HACCP and Water Safety Plans, are being elaborated all over the world to act proactively referring to drinking water quality. The present paper aims at reviewing the implementation status of risk assessment tools around the world and presenting the benefits and the difficulties recorded during the implementation process. The benefits include improved water quality, improved operational efficiency, reduced consumers’ complaints, reduced production cost, and reduced potential hazardous incidents. Studying the difficulties, the identification of critical success factors for the implementation of such tools is feasible. Some of the critical success factors include the financial and human resources, staff training, effective identification of critical control points, correct estimation of the occurrence and the severity of the hazards, effective coordination, and efficient monitoring.
Effect of Federal Inspection on Louisiana Wild-Caught Catfish Industry, Prevalence of Salmonella, and Microbial Characteristics of Raw Wild-Caught Catfish Fillets
The United States is one of the largest catfish producers in the world. Louisiana is the leading producer of wild-caught catfish. Historically, the U.S. Food and Drug Administration inspected all seafood products; however, in 2008, Congress moved the inspection of fish in the order Siluriformes to the U.S. Department of Agriculture (USDA), Food Safety and Inspection Service. Full enforcement of the rule began on 1 September 2017. The present study was conducted to assess the impact of USDA Siluriformes fish regulation on small Louisiana wild-caught catfish processors and to determine the microbiological quality of and Salmonella prevalence in raw fillets. Nine facilities participated in the assessment study. Surveys were conducted before and after full enforcement to identify whether facilities had established prerequisite programs and record keeping associated with sanitation, hazard analysis and critical control point (HACCP) plans, food defense, and product recall. The processors' attitude about the change in regulations also was analyzed. For analysis of the microbiological quality and Salmonella prevalence, catfish samples were collected once per month for 2 years. Samples were evaluated for aerobic bacteria counts (APC), coliforms, Escherichia coli, Staphylococcus aureus, and Salmonella. The preenforcement survey revealed that only one facility had developed a HACCP plan, but it was not implemented. After 1 year of full enforcement, all the facilities developed and implemented a HACCP plan to process fresh catfish, and 78% of the processors reported a reduction in the amount of catfish processed due to limits in hours of operation and loss of fishermen. For microbiological quality, the mean (±SD) APC and counts of E. coli, coliforms, and S. aureus were 5.01 ± 0.70, 0.58 ± 0.89, 2.16 ± 0.77, and 0.73 ± 1.02 log CFU/g, respectively; 5.3% of the samples was confirmed positive for Salmonella. These findings indicate that after USDA enforcement, facilities improved food safety program documentation; however, the processing practices did not change. The microbial quality of the catfish fillets was within the acceptable levels in accordance with the International Commission on Microbiological Specifications for Foods.
Risk factors for food contamination among children discharged from community management of acute malnutrition programmes in South Sudan: A cross‐sectional study and hazard analysis critical control point approach
Children under‐5 years of age are particularly vulnerable to severe acute malnutrition (SAM), and the risk factors associated with relapse to SAM are poorly understood. Possible causes are asymptomatic or symptomatic infection with enteric pathogens, with contaminated food as a critical transmission route. This cross‐sectional study comprised a household survey with samples of child food (n = 382) and structured observations of food preparation (n = 197) among children aged 6–59 months that were discharged from treatment in community management of acute malnutrition (CMAM) programmes in South Sudan. We quantified Escherichia coli and total coliforms (TCs), measured in colony forming units per g of food (CFU/g), as indicators of microbial contamination of child food. A modified hazard analysis critical control point (HACCP) approach was utilised to determine critical control points (CCPs) followed by multivariate logistic regression analysis to understand the risk factors associated with contamination. Over 40% (n = 164) of samples were contaminated with E. coli (43% >0 E. coli CFU/g, 95% CI 38%–48%), and 90% (n = 343) had >10 TCs (CFU/g) (>10 TC CFU/g, 95% CI 87%–93%). Risk factors associated (p < 0.05) with child food contamination included if the child fed themselves (9.05 RR, 95% CI [3.18, 31.16]) and exposure to animals (2.63 RR, 95% CI [1.33, 5.34]). This study highlights the risk factors and potential control strategies that can support interventions that reduce food contamination exposure in young children and help further protect those that are highly vulnerable to recurrent exposure to enteric pathogens. This study examined how household food preparation, feeding, and storage practices for children who had recovered from severe acute malnutrition in South Sudan may result in contamination. Escherichia coli was found in 43% of the child food samples. Child self‐feeding and the presence of animals were found to be significant risk factors for food contamination. Key messages Food is a potentially important pathway for enteric disease transmission and a major concern for children recovered from severe acute malnutrition (SAM) in humanitarian settings. In low‐income South Sudan, 43% (n = 164) of child food samples from households with a child at risk of relapse to SAM were contaminated with Escherichia coli and 90% (n = 343) with total coliforms (TCs). Child self‐feeding and animal presence in the household were identified as key risk factors for food contamination. Future research should assess the relative importance of the identified critical control points (CCPs), including reducing animal contact in the household, improving knowledge and practices around cooking processes and hygiene practices specific to the child such as handwashing and the use of cutlery.
Emerging Point-of-care Technologies for Food Safety Analysis
Food safety issues have recently attracted public concern. The deleterious effects of compromised food safety on health have rendered food safety analysis an approach of paramount importance. While conventional techniques such as high-performance liquid chromatography and mass spectrometry have traditionally been utilized for the detection of food contaminants, they are relatively expensive, time-consuming and labor intensive, impeding their use for point-of-care (POC) applications. In addition, accessibility of these tests is limited in developing countries where food-related illnesses are prevalent. There is, therefore, an urgent need to develop simple and robust diagnostic POC devices. POC devices, including paper- and chip-based devices, are typically rapid, cost-effective and user-friendly, offering a tremendous potential for rapid food safety analysis at POC settings. Herein, we discuss the most recent advances in the development of emerging POC devices for food safety analysis. We first provide an overview of common food safety issues and the existing techniques for detecting food contaminants such as foodborne pathogens, chemicals, allergens, and toxins. The importance of rapid food safety analysis along with the beneficial use of miniaturized POC devices are subsequently reviewed. Finally, the existing challenges and future perspectives of developing the miniaturized POC devices for food safety monitoring are briefly discussed.
Changes in Salmonella Contamination in Meat and Poultry Since the Introduction of the Pathogen Reduction and Hazard Analysis and Critical Control Point Rule
In 1996, the Food Safety and Inspection Service (FSIS) published its pathogen reduction and hazard analysis and critical control point (PR-HACCP) rule. The intention of this program was to reduce microbial contamination on meat, poultry, and egg products. The program was implemented in stages between January 1998 and January 2000, with sampling for Escherichia coli O157:H7 and/or Salmonella in large production establishments beginning in 1998. As the PR-HACCP program begins its third decade, it is reasonable to question whether there have been reductions in the frequency of pathogen-contaminated meat and poultry products reaching consumers. This study summarizes the results for over 650,000 samples collected by FSIS between 2000 and 2018 in slaughter and processing establishments across the United States and compares these results to the roughly 100,000 retail samples collected by the U.S. Food and Drug Administration between 2002 and 2017. The data demonstrate that there has been an overall reduction in the occurrence of Salmonella on meat and poultry products, but the direction and magnitude of change has not been consistent over time or across commodities. Although the available data do not support the identification of causal factors for the observed changes, a historical review of the timing of various factors and policy decisions generates potential hypotheses for the observed changes.
Helicase-dependent isothermal amplification: a novel tool in the development of molecular-based analytical systems for rapid pathogen detection
Highly sensitive testing of nucleic acids is essential to improve the detection of pathogens, which pose a major threat for public health worldwide. Currently available molecular assays, mainly based on PCR, have a limited utility in point-of-need control or resource-limited settings. Consequently, there is a strong interest in developing cost-effective, robust, and portable platforms for early detection of these harmful microorganisms. Since its description in 2004, isothermal helicase-dependent amplification (HDA) has been successfully applied in the development of novel molecular-based technologies for rapid, sensitive, and selective detection of viruses and bacteria. In this review, we highlight relevant analytical systems using this simple nucleic acid amplification methodology that takes place at a constant temperature and that is readily compatible with microfluidic technologies. Different strategies for monitoring HDA amplification products are described. In addition, we present technological advances for integrating sample preparation, HDA amplification, and detection. Future perspectives and challenges toward point-of-need use not only for clinical diagnosis but also in food safety testing and environmental monitoring are also discussed.
Design of an IOTA Tangle-Based Intelligent Food Safety Service Platform for Bubble Tea
Many food safety incidents have occurred in the world in the past 20 years, causing major threats and harm to human life and health. Each country or region has established different food safety management systems (FSMSs) in response, to increase food safety and to reduce food safety risks. Hence, it is important to develop an FSMS service platform with convenience, consistency, effectiveness, scalability, and lightweight computing. The aim of this study is to design and propose an IOTA Tangle-based intelligent food safety service platform for bubble tea—called IF4BT—which modularizes and integrates hazard analysis and critical control point (HACCP) principles to increase data transparency. The deep learning inference engine is based on long short-term memory and Siamese networks to check and extract significant rare data of high-risk factors, exception factors, and noises, depending on daily check and audit. IF4BT can ensure the correctness of the information of food manufacturers, so as to increase food safety and to reduce food safety issues such as allergen cross-contamination, food expiration, food defense, and food fraud.