Species identification in meat products represents an important subject in the field of modern food control according to the European Union, which has implemented a set of very strict procedures to label food. Thus, specific, sensitive and easy analytical methods for the species detection of food are necessary in order to verify the compliance with labelling requirements. A PCR-based assay for the detection of pork meat in horse fresh sausages was optimised and it was used to evaluate the presence of fraudulently added pork meat. The developed assay showed the presence of pork meat in 6/30 and the total absence of horse meat in 1/30 of the analyzed horse sausage samples
Abstract. In the times of industrial food production, regional and traditional food articles provide...
Pork identification in four types of food products, which are sausages and the casings, bread and bi...
The identification of meat species used in meat products is important by reason of economic consider...
A species-specific PCR assay was developed for the detection of low levels of pork, horse and donkey...
The identification of meat species in food products and pharmaceuticals is vital to minimize food ad...
A species-specific duplex polymerase chain reaction (PCR) assay was developed for the simultaneous ...
Background: Identifying the animal species origin in meat and meat products is important for prevent...
The aim of this study was to develop a species-specific PCR method for rapid identification of meat ...
The origin of horse, dog, cat, bovine, sheep, porcine, and goat meat was determined by the polymeras...
The undeclared presence of meat species in grounded and comminuted meat products is a concern becaus...
A polymerase chain reaction–restriction fragment length polymorphism (PCR–RFLP) using BseDI restrict...
O presente estudo teve por objetivos padronizar a reação em cadeia pela polimerase (PCR) para a iden...
Identification of meat species in processed meat products is a major problem in meat technology to p...
The horse meat scandal of 2013 has to be considered a turning point for DNA analysis in food authen...
Abstract PCR was applied for the discovery of adulteration of crude and processed beef meat with ho...
Abstract. In the times of industrial food production, regional and traditional food articles provide...
Pork identification in four types of food products, which are sausages and the casings, bread and bi...
The identification of meat species used in meat products is important by reason of economic consider...
A species-specific PCR assay was developed for the detection of low levels of pork, horse and donkey...
The identification of meat species in food products and pharmaceuticals is vital to minimize food ad...
A species-specific duplex polymerase chain reaction (PCR) assay was developed for the simultaneous ...
Background: Identifying the animal species origin in meat and meat products is important for prevent...
The aim of this study was to develop a species-specific PCR method for rapid identification of meat ...
The origin of horse, dog, cat, bovine, sheep, porcine, and goat meat was determined by the polymeras...
The undeclared presence of meat species in grounded and comminuted meat products is a concern becaus...
A polymerase chain reaction–restriction fragment length polymorphism (PCR–RFLP) using BseDI restrict...
O presente estudo teve por objetivos padronizar a reação em cadeia pela polimerase (PCR) para a iden...
Identification of meat species in processed meat products is a major problem in meat technology to p...
The horse meat scandal of 2013 has to be considered a turning point for DNA analysis in food authen...
Abstract PCR was applied for the discovery of adulteration of crude and processed beef meat with ho...
Abstract. In the times of industrial food production, regional and traditional food articles provide...
Pork identification in four types of food products, which are sausages and the casings, bread and bi...
The identification of meat species used in meat products is important by reason of economic consider...