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Zonal-centrifuged human diploid cell rabies vaccine.

M Majer, J. Hilfenhaus, R. Mauler, W. Hennessen

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Abstract

In order to reduce the risk of allergic reactions, a purified human diploid cell culture rabies vaccine was developed. Pitman-Moore strain of rabies was propagated in WI-38 or MRC-5 cells. Both cell strains were found to be equally suitable for pro agation of rabies virus. The virus was purified and concentrated by continuous-flow sucrose density gradient ultracentrifugation. Virus peak fractions were diluted with a stabilized and then inactivated with BPL and freeze-dried. According to the standard NIH test for potency, the vaccine proved to be very potent and stable. The results of initial clinical applications of the vaccine will be presented.

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What this paper is about

In order to reduce the risk of allergic reactions, a purified human diploid cell culture rabies vaccine was developed. Pitman-Moore strain of rabies was propagated in WI-38 or MRC-5 cells. Both cell strains were found to be equally suitable for pro agation of rabies virus. The virus was purified and concentrated by continuous-flow sucrose density gradient ultracentrifugation. Virus peak fractions were diluted with a stabilized and then inactivated with BPL and freeze-dried. According to the standard NIH test for potency, the vaccine proved to be very potent and stable. The results of initial clinical applications of the vaccine will be presented.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

In order to reduce the risk of allergic reactions, a purified human diploid cell culture rabies vaccine was developed. Pitman-Moore strain of rabies was propagated in WI-38 or MRC-5 cells. Both cell strains were found to be equally suitable for pro agation of rabies virus. The virus was purified and concentrated by continuous-flow sucrose density gradient ultracentrifugation. Virus peak fractions were diluted with a stabilized and then inactivated with BPL and freeze-dried. According to the standard NIH test for potency, the vaccine proved to be very potent and stable. The results of initial clinical applications of the vaccine will be presented.

Key concepts: Rabies vaccine, Rabies virus, Rabies, Duck embryo vaccine, Virology, Potency, WI-38, Virus

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