Microbiological Assessment of Canned Meat Products with Molecular Detection of Clostridium Perfringens Toxins

2018 ◽  
Vol 59 (2) ◽  
pp. 98
Author(s):  
Hossam Ali ◽  
Hani Yousef ◽  
Mai Amer
Molecules ◽  
2021 ◽  
Vol 26 (8) ◽  
pp. 2247
Author(s):  
Mirosław Słowiński ◽  
Joanna Miazek ◽  
Krzysztof Dasiewicz ◽  
Marta Chmiel

A beneficial aspect of the use of fiber preparations in the meat industry is the improvement of some quality characteristics of meat products. However, the preparation added in the amount of 3 or 6% may affect their color. The effect of the addition of barley, wheat and oat fiber preparations with different fiber lengths, in quantities allowing the product to be indicated as “high in fiber” or “source of fiber”, to pasteurized or sterilized medium-grounded canned meat products on their color, was determined. In the obtained canned meat products, the basic chemical composition and the L*, a* and b*, C* (Chroma) and h* (hue angle) color components were determined. The addition of the barley fiber preparation BG 300 to the model canned meat products caused a significant (p ≤ 0.05) darkening and an increase in the proportion of yellow color. In an industrial practice, this may result in poorer consumer acceptance of the meat product. Fiber length of wheat and barley fiber had no effect on the color components of products. The 6% addition of the wheat fiber preparations WF 200R and WF 600R or the oat fiber preparations HF 200 and HF 600 caused an apparent lightening of their color (ΔE > 2) compared to the control products.


2009 ◽  
Vol 26 (3) ◽  
pp. 272-277 ◽  
Author(s):  
Saeed Akhtar ◽  
Daniel Paredes-Sabja ◽  
J. Antonio Torres ◽  
Mahfuzur R. Sarker

2021 ◽  
Vol 7 (3) ◽  
pp. 172-178
Author(s):  
Serap Coşansu ◽  
Şeyma Şeniz Ersöz

Totally 101 meat and meat product samples obtained from local markets and restaurants were analyzed for incidence and contamination level of Clostridium perfringens. The typical colonies grown anaerobically on Tryptose Sulfite Cycloserine Agar supplemented with 4-Methyliumbelliferyl (MUP) were confirmed by biochemical tests. Forty-eight of the samples (47.5%) were contaminated with C. perfringens. The highest incidence of the pathogen was determined in uncooked meatball samples (72.2%) followed by ground beef samples (61.3%). The incidence of C. perfringens in chicken meat, cooked meat döner, cooked chicken döner and emulsified meat product samples were 33.3, 33.3, 28.6 and 16.7%, respectively. Thirteen out of 101 samples (12.9%) yielded typical colonies on TSC-MUP Agar, but could not be confirmed as C. perfringens. Average contamination levels in sample groups ranged from 8.3 to 1.5×102 cfu/g, with the highest ground beef and the lowest chicken meat.


1965 ◽  
Vol 13 (3) ◽  
pp. 352-357
Author(s):  
Herbert E. Hall ◽  
Robert Angelotti

Author(s):  
Inna Nazarenko ◽  
◽  
Nataliya Novosad ◽  

The article examines the technology of cooking meat by autoclaving while preserving the chemical properties of the product. Autoclaving has been shown to be one of the main technological steps in canned meat. Sterilization of canned meat is a heat treatment of the product, which ensures the death of microflora to prevent microbiological spoilage at temperate temperatures (15-30oC), and if necessary at higher temperatures, and safety, which guarantees the microbiological indicators of the use of canned food for food. Sterilize meat at temperatures above 100o C, most often at temperatures up to 120o C. It has been determined that sterilization of meat in an autoclave determines the preservation of nutritional value, organoleptic properties, harmless to the consumer and creates the necessary prerequisites for long-term preservation of the quality of canned meat products. The technology of cooking meat is reduced to the choice of parameters (temperature and duration) of heating, which ensure maximum destruction of the microflora with minimal loss of nutritional value. Sterilization is carried out in autoclaves of periodic action. Banks with the product are loaded into the baskets of the autoclave, lowered into the autoclave, seal the device, heated to the desired temperature, withstand the required time, then release the pressure, cool and unload.


Foods ◽  
2020 ◽  
Vol 9 (8) ◽  
pp. 1001
Author(s):  
Mirosław Słowiński ◽  
Joanna Miazek ◽  
Marta Chmiel

The aim of this study was to evaluate the quality of model homogenized sterilized canned meat products produced with wheat fiber preparations (WF 200 R or WF 600 R) with different fiber lengths used in the amount of 3% or 6% by weight of the batter. Basic chemical composition (water, protein, fat, collagen and salt content), pH level, water activity, thermal drip, CIEL*a*b* color components, texture parameters (TPA, shear force) and sensory quality were determined. The addition of 3% or 6% of wheat fiber preparations did not affect the basic chemical composition, water activity and pH of products. The 6% addition of both fiber preparations caused lightening of the color of the meat blocks. Products with the addition of both wheat fiber preparations were characterized by significantly (p ≤ 0.05) higher hardness than the control product. Sensory quality of products, except tastiness, with the addition of wheat fiber preparations did not differ from the control product. There was no significant effect of wheat fiber length on the quality of meat blocks. Both lightening the color of canned meat blocks produced with the addition of wheat fiber preparation, as well as increasing their hardness, is desirable and contributes to increasing the quality of products.


2003 ◽  
Vol 66 (7) ◽  
pp. 1227-1232 ◽  
Author(s):  
ROBIN M. KALINOWSKI ◽  
R. BRUCE TOMPKIN ◽  
PETER W. BODNARUK ◽  
W. PAYTON PRUETT

In January 1999, the Food Safety and Inspection Service (FSIS) finalized performance standards for the cooking and chilling of meat and poultry products in federally inspected establishments. More restrictive chilling (stabilization)requirements were adopted despite the lack of strong evidence of a public health risk posed by industry practices employing the original May 1988 guidelines (U.S. Department of Agriculture FSIS Directive 7110.3). Baseline data led the FSIS to estimate a “worst case” of 104 Clostridium perfringens cells per g in raw meat products. The rationale for the FSIS performance standards was based on this estimate and the assumption that the numbers detected in the baseline study were spores that could survive cooking. The assumptions underlying the regulation stimulated work in our laboratory to help address why there have been so few documented outbreaks of C. perfringens illness associated with the consumption of commercially processed cooked meat and poultry products. Our research took into account the numbers of C. perfringens spores in both raw and cooked products. One hundred ninety-seven raw comminuted meat samples were cooked to 73.9°C and analyzed for C. perfringens levels. All but two samples had undetectable levels (<3 spores per g). Two ground pork samples contained 3.3 and 66 spores per g. Research was also conducted to determine the effect of chilling on the outgrowth of C. perfringens spores in cured and uncured turkey. Raw meat blends inoculated with C. perfringens spores, cooked to 73.9°C, and chilled according to current guidelines or under abuse conditions yielded increases of 2.25 and 2.44 log10 CFU/g for uncured turkey chilled for 6 h and an increase of 3.07 log10 CFU/g for cured turkey chilled for 24 h. No growth occurred in cured turkey during a 6-h cooling period. Furthermore, the fate of C. perfringens in cooked cured and uncured turkey held at refrigeration temperatures was investigated. C. perfringens levels decreased by 2.52, 2.54, and 2.75 log10 CFU/g in cured turkey held at 0.6, 4.4, and 10°C, respectively, for 7 days. Finally, 48 production lots of ready-to-eat meat products that had deviated from FSIS guidelines were analyzed for C. perfringens levels. To date, 456 samples have been tested, and all but 25 (ranging from 100 to 710 CFU/g) of the samples contained C. perfringens at levels of <100 CFU/g. These results further support historical food safety data that suggest a very low public health risk associated with C. perfringens in commercially processed ready-to-eat meat and poultry products.


1990 ◽  
Vol 44 (2) ◽  
pp. 309-316 ◽  
Author(s):  
G. Brito ◽  
C. Díaz ◽  
L. Galindo ◽  
A. Hardisson ◽  
D. Santiago ◽  
...  
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