Advantages of Using Egg Yolk Antibodies in the Life Sciences: The Results of Five Studies

Author:

Schade Rüdiger1,Hlinak Andreas2,Marburger Andrea1,Henklein Peter3,Morgenstern Rudolf1,Blankenstein Petra2,Gerl Martin4,Zott Albrecht5,Pfister Claus6,Erhard Michael7

Affiliation:

1. Institute of Pharmacology and Toxicology, Department of Medicine (Charité), Humboldt University, Dorotheenstrasse 94, 10117 Berlin, Germany

2. Institute of Virology, Department of Veterinary Medicine, Free University, Luisenstrasse 56, 10117 Berlin, Germany

3. Institute of Biochemistry, Department of Medicine (Charité), Humboldt University, Dorotheenstrasse 94, 10117 Berlin, Germany

4. Hoechst AG, TD Metabolism, H821, Postfach 800320, 65926 Frankfurt am Main, Germany

5. Paul Ehrlich Institute, Paul Ehrlich Strasse 51–59, 63225 Langen, Germany

6. German Institute of Human Nutrition, Bergholz-Rehbrücke

7. Institute of Physiology, Physiological Chemistry and Animal Nutrition, Department of Veterinary Medicine, Ludwig Maximilians University, Veterinärstrasse 13, 80539 Munich, Germany

Abstract

It has been known for over a century that specific antibodies can be extracted from the eggs of immunised chickens. However, it was only when animal welfare became a subject of public debate that the chicken was considered as an alternative source of antibodies due to the possibility of non-invasive antibody sampling. Unfortunately, the welfare of animals alone is not sufficient to attract the interest of scientists; it is therefore important to demonstrate to potential users that avian antibodies can be used successfully in a variety of scientific investigations. The particular specificity of avian antibodies would appear to be due to the phylogenetic difference between Mammalia and Aves as well as to differences between the molecular structures of avian immunoglobulin (IgY) and mammalian immunoglobulin (IgG). The use of avian antibodies has additional advantages, as a considerable quantity of antibodies can be obtained from one chicken, and because the specificity of avian antibodies often markedly differs from that of comparable mammalian antibodies. This paper aims to demonstrate the advantages of using avian antibodies by presenting the results of five separate studies. In the first study, coordinated by Rüdiger Schade, the visualisation of cholecystokinin-like immuno-reactivity in the substantia nigra of rats by using anti-cholecystokinin antibody, without the pre-treatment of colchicine, is described. The second study, headed by Albrecht Zott, describes the use of avian antibodies in the identification of modern acellular pertussis vaccines by using rocket immunoelectrophoresis. The identification of unknown vaccine batches and the comparison with reference vaccines is a prerequisite for reducing the number of animal experiments necessary for vaccine control. The third study, coordinated by Martin Gerl, investigates the specificity of antibodies directed against the N-terminal propeptide of procollagen type III (PIIINP). Among the antibodies originating from different species (rabbit, mouse and chicken), only the chicken antibody was able to respond to the PIIINP in both human and rat sera. Thus, a direct comparison between human serum samples (alcoholic liver) and serum samples derived from corresponding animal models was possible. The fourth study, coordinated by Michael Erhard, shows that egg yolk antibodies can be successfully used to manage infectious diarrhoea in young agricultural animals. The final study, led by Andreas Hlinak, describes the successful production of anti-bovine leukaemia virus antibody. This antibody could be used in several diagnostic systems (for example, enzyme immunoassays and cytology). The five studies demonstrate that avian antibodies are an attractive alternative to mammalian antibodies, not only with respect to the welfare of animals, but also with respect to scientific and economic considerations.

Publisher

SAGE Publications

Subject

Medical Laboratory Technology,Toxicology,General Biochemistry, Genetics and Molecular Biology,General Medicine

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. References;Matthews' Plant Virology;2002

2. Colloidal stability of IgG- and IgY-coated latex microspheres;Colloids and Surfaces B: Biointerfaces;2001-02

3. 15 Separation of antibodies by liquid chromatography;Handbook of Bioseparations;2000

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