Publications by authors named "G A Afanas'eva"

A sensitive and reliable technique for meat species identification is required to prevent food adulteration, particularly in meat production. This work developed an optimized multiplex PCR assay for simultaneous identification of five commonly consumed and five commonly banned meat species in meat products. We designed primers that specifically amplified mitochondrial ATPase subunit 8 gene regions of different lengths of bovine, ovine, swine, chicken, turkey, cat, dog, mouse and human DNAs.

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Therapeutic antibodies are implicated into the very promising and fast growing area of pharmaceutics. Human hybridoma technology, allowing generation of natural human antibodies in a native form, seems to be the most direct way that require no additional modifications for production of therapeutic antibodies. However, technical difficulties in human hybridoma creation discovered in the 80s of the last century have switched the mainstream therapeutic antibody development into new directions like display and transgenic mice techniques.

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The effect of aqueous solutions of dry ethanol extracts of Gratiola officinalis L., Helichrysum arenarium (L.) Moench, and anthocyanin forms of Zea mays L.

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[Morphogenetic study of brachiopods].

Izv Akad Nauk Ser Biol

August 2012

In this work we discuss the results of ontogenetic and morphobiological approaches to phylogenetic reconstructions of articulate brachiopods on the basis of morphogenetic data. These data provide the basis for generalizations concerning phylogeny and system of orders. The ontogenetic approach was the subject of criticism mainly because of arbitrary establishment of the homology of brachiopods.

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Activation of lipid peroxidation, increasing during the elevation of clinical symptoms of Y. pestis intoxication and hypoxic syndrome development, is the efferent link in cytopathogenic effects of toxic and enzymatic factors of this microorganism. Absolute or relative insufficiency of enzymatic mechanisms of blood antioxidant protection systems is the main pathogenic factor in lipid components of biomembrane destruction leading to the haemorrhagic syndrome development in Y.

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