Current perspective on veterinary drug and chemical residues in food of animal origin

Author(s):  
Attia H. Atta ◽  
Shimaa A. Atta ◽  
Soad M. Nasr ◽  
Samar M. Mouneir
2019 ◽  
Vol 40 (3) ◽  
pp. 308-341 ◽  
Author(s):  
Anaïs Léger ◽  
Lis Alban ◽  
Anouk Veldhuis ◽  
Gerdien van Schaik ◽  
Katharina D. C. Stärk

1978 ◽  
Vol 61 (5) ◽  
pp. 1194-1197 ◽  
Author(s):  
David J Campbell

Abstract Today it is almost impossible to produce food of animal origin which is free from traces of drugs or chemicals. In Canada the problem of drug residues is controlled by a method of assessment of human safety which involves many factors. The toxicity of the drug in laboratory animals or, if possible, in man, is established and a no-effect dose is then estimated. These studies require oral administration of the drug and include acute, subacute, and teratogenicity studies. Depending on these results, chronic reproductive or carcinogenicity studies may be required before a no-effect dose can be estimated. Residue studies must encompass data on metabolism, pharmacokinetics, and depletion studies in edible tissues and for products such as milk and eggs. For veterinary drug residues, we must consider the target food animal with its particular metabolism, tissue disposition, and excretion patterns. The analytical method for residue detection must be acceptable and its sensitivity limits suitable for the drug and its major metabolites.


Foods ◽  
2021 ◽  
Vol 10 (7) ◽  
pp. 1547
Author(s):  
Radmila Pavlovic ◽  
Federica Di Cesare ◽  
Francesca Longo ◽  
Franco Abballe ◽  
Sara Panseri ◽  
...  

(Poly)phosphates are approved as water-preserving and emulsifying agents that improve the appearance and consistency of many food products. The labelling of added (poly)phosphates is essential for protecting vulnerable population groups and to prevent unfair trade practices resulting in economic fraud. The problems with (poly)phosphates’ utilisation concerns both analytical and legislative issues, such as: (1) their straightforward detection; (2) excessive addition altering freshness perception and misleading consumers; (3) uncontrolled usage increasing foodstuff weight; (4) application in products where they are not permitted; and (5) no indication on the label. Bearing all these issues in mind, the main purpose of this study was the quantification and screening of the (poly)phosphates profile in meat, marine and dairy products (160 samples), of which 43 were without declared (poly)phosphate treatment. Analysis was completed by high-performance ion-exchange chromatography either with conductometric detection or coupled to Q-Exactive Orbitrap high-resolution mass spectrometry. Although the (poly)phosphates profiles varied greatly according to species and processing type, the following criteria for detection of illicit treatment were established: high orthophosphate level, quantified short-chain (poly)phosphate anions and the presence of long-chain forms. In conclusion, the instrumental platforms used in this study can be recommended to inspection bodies as reliable methods for the detection of food adulteration with (poly)phosphates.


2016 ◽  
Vol 100 ◽  
pp. 16-24 ◽  
Author(s):  
Saverio Caini ◽  
Giovanna Masala ◽  
Patrizia Gnagnarella ◽  
Ilaria Ermini ◽  
William Russell-Edu ◽  
...  

Antibiotics ◽  
2021 ◽  
Vol 10 (4) ◽  
pp. 454
Author(s):  
Robinson H. Mdegela ◽  
Elibariki R. Mwakapeje ◽  
Bachana Rubegwa ◽  
Daniel T. Gebeyehu ◽  
Solange Niyigena ◽  
...  

All infections are potentially curable as long as the etiological agents are susceptible to antimicrobials. The increased rate at which antimicrobials are becoming ineffective is a global health risk of increasing concern that threatens withdrawal of beneficial antimicrobials for disease control. The increased demand for food of animal origin, in particular eggs, meat and milk has led to intensification and commercial production systems where excessive use and misuse of antimicrobials may prevail. Antimicrobials, handled and used by farmers and animal attendants with no formal education, may be predisposed to incorrect dosages, misuse, incorrect applications and non-adherence to withdrawal periods. This study was conducted to assess the regulatory roles and governance of antimicrobials, establish the pattern and extent of their use, evaluate the antimicrobial residues and resistance in the food animals and crop agriculture value chains, and relate these findings to existing strategies in place for combating the emergence of antimicrobial resistance in Tanzania. A multimethod approach (desk review, field study and interviews) was used. Relevant establishments were also visited. High levels of resistance to penicillin G, chloramphenicol, streptomycin and oxytetracycline have been reported, especially for Actinobacter pyogenes, Staphylococcus hyicus, Staphylococcus intermedius and Staphylococcus aureus from dairy cattle with mastitis and in humans. Similar trends were found in poultry where eggs and meat are contaminated with Escherichia coli strains resistant to amoxicillin + clavulanate, sulphamethoxazole and neomycin. An increasing trend of emerging multidrug resistant E. coli, Klebsiella pneumoniae, Staphylococcus aureus and Salmonella was also found in food animals. An increase in methicillin resistant Staphlococcus aureus (MRSA) and extended-spectrum beta-lactamase (ESBL) in the livestock sector in Tanzania have been reported. The pathogens isolated in animals were resistant to ampicillin, augmentin, gentamicin, co-trimoxazole, tetracycline, amoxicillin, streptomycin, nalidixic acid, azithromycin, chloramphenicol, tylosin, erythromycin, cefuroxime, norfloxacin and ciprofloxacin. An increased usage of antimicrobials for prophylaxis, and therapeutics against pathogens and for growth promotion in livestock, aquaculture and crop production were observed. A One Health strategic approach is advocated to combat antimicrobial resistance (AMR) in the food and agriculture sectors in Tanzania. Practical recommendations include (a) legislation review and implementation; (b) antimicrobial use (AMU), AMR and antimicrobial residue (AR) awareness and advocacy among stakeholders along the value chain; (c) strengthening of surveillance and monitoring programs for AMU, AMR and AR; (d) enhanced development and use of rapid and innovative diagnostic tests and the promotion of biosecurity principles; and (e) good husbandry practices. The utilization of this information to improve public health policies and reduce the burden of AMR will be beneficial.


2004 ◽  
Vol 33 ◽  
pp. 1-35 ◽  
Author(s):  
D. Thomas ◽  
D. Rangnekar

Livestock production currently accounts for some 40% of the gross value of world agricultural production, and its share is rising (FAO, 2002). Livestock production is the largest user of agricultural land; directly through grazing of pastures and indirectly through the production of forage crops and other feeds. Over the next 20 years, there will be a massive increase in demand for food of animal origin in developing countries, and this increase will be greater than for either the major cereals or roots and tubers (IFPRI, 1995; Delgado et al., 1999).


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