Volume 6, Issue 2 (Vol.6 No.2 Apr 2018)                   rbmb.net 2018, 6(2): 208-218 | Back to browse issues page

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Ahmad T A, Rammah S S, Sheweita S A, Haroun M, Hamdy El-Sayed L. The Enhancement of the Pasteurella’s Bacterin by Propolis Extracts. rbmb.net. 2018; 6 (2) :208-218
URL: http://rbmb.net/article-1-192-en.html
Special Projects Department, Bibliotheca Alexandrina, Alexandria, Egypt & SeptivaK Research Group, Immunology and Allergy Department, Medical Research Institute, Alexandria University, Alexandria, Egypt.
Abstract:   (299 Views)
Background: Pasteurella multocida continues to pose a danger to prone farm and wild animals all over the world. Chemotherapeutic treatments are progressively losing their effectiveness, last for long time, and cost a lot of money, as well as being toxic to human consumers. Therefore, clearing the way for immunization as a big-wheel alternative against the economic grain. Yet, the vaccines available in the market do not confer the necessary protection against the pathogen. The integration of the well adjuvanted killed vaccine with the attenuated vaccines proved to offer an effective protection to the host animals. However, the bare use of the killed bacterin to provide protection from the possible harm of the live attenuated vaccine was doubtful.
Methods: In the present study, propolis extracts were used to ameliorate the immunogenicity of the Pasteurella bacterin. The cellular and humoral activities were assessed for the different bacterin formulations.
Results: Propolis extracts adjuvants proved to broaden and extend the IgG potency, as well as to induce a unique mucosal protection against the bacterium. Simultaneously it offered an anti-inflammatory effect that increased the tolerability to the bacterin. While the cellular activity was relatively reduced with propolis extracts.
Conclusions: These results confirm the effectiveness of the formulation of the bacterin with propolis to offer a potent homologous primary protection to the animals against the long-life use of the attenuated Pasteurella vaccines.
 
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Type of Article: Original Article | Subject: Immunology
Received: 2017/08/25 | Accepted: 2017/10/4 | Published: 2017/12/31

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