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Soliman, R.

Publications and source records attributed to Soliman, R..

3 recordsLinked to original sources

Production of Rabies virus-specific monoclonal antibodies and evaluation of their neutralizing potential

Rabies is a severe viral infection that causes acute encephalomyelitis, with a case fatality rate of nearly 100% following the onset of neurological clinical signs. Rabies irreversible clinical signs development can be effectively avoided with post-exposure prophylaxis (PEP), which includes vaccines and anti-rabies immunoglobulins (RIGs); however, there is no treatment for symptomatic rabies. The major PEP protocol faces serious access and implementation obstacles in association with a resource-limited setting, which could be successfully overcome by substituting RIGs for monoclonal antibodies (mAbs). Lower production costs, consistent supply availability, long-term storage/stability, and an improved safety profile are all advantages of mAbs. The current work focuses on the key characteristics of currently developed mAbs against rabies and highlights their potential as a novel therapeutic approach. Using immunizing Freunds adjuvanted emulsions of inactivated purified Vero cell rabies vaccine (PVRV, VERORAB) produced by Aventis Pasteur to immunize the BALB/c mice. The immunized BALB/c mice were tested for the production of anti-rabies virus-specific antibodies using Enzyme-linked immunosorbent assay (ELISA). High-responder mice were selected for the fusion process. Hybridomas recovered from the fusion process were selected and separated from the unfused cells and unfavorable fused cells by using the selective HAT medium. Twelve days post fusion the produced hybrids were screened for production of Rabies virus-specific antibodies using ELISA. Four murine hybridomas secreting rabies virus-specific monoclonal antibodies (mAbs) have been properly developed. These 4 stable hybrids were successfully cloned into 4 stable clones, namely, 1E4, 1E9, 2F3, 4E1. The rabies virus specific monoclonal antibodies produced by the 4 selected hybridomas were of IgM isotype. Using Western Blot technique, the specificity of the produced hybrids was confirmed. The neutralizing potential of the prepared mAbs was evaluated and the efficacy of mAbs cocktail prepared from the 4 hybridomas to protect mice in post exposure therapy was determined. The mAbs cocktail given to mice at 24 hours post infection was able to offer 100% protection to mice challenged with 1000 LD50 of rabies virus strain whereas all control mice developed the disease.

immunology↗

Preparation of inactivated whole culture vaccine composed of Pasteurella multocida, Avibacterium paragallinarum, and Ornithobacterium rhinotracheale and evaluation of its protective efficacy in chickens

Poultry, mainly chickens and its white meat represents one of the main, nutritionally valuable, and affordable red meat replacer source of protein throughout the whole world with special reference to developing countries. A long list of microbial agents especially bacterial pathogens threat chickens production cycles. They constitute one of the major problems facing the rapidly expanding poultry industry and are responsible for considerable economic losses.). Fowl Cholera, Infectious Coryza, and Ornithobacterium Rhinotracheale (ORT) diseases were among the serious bacterial infections that affect respiratory tract of chickens with an global adverse effect on poultry production. A formalized whole culture vaccine of composed of P. multocida serotypes A5, A8, A9 and D2, Avibacterium paragallinarum serotype A and C and Ornithobacterium rhinotracheale serotype A was prepared. This polyvalent vaccine proved to be safe producing no adverse side effects when injected in chickens. The immunizing efficacy of this vaccine was evaluated in SPF chickens, which were immunized at 6 weeks of age. The protective efficacy of the vaccine was determined using challenge test. The developed vaccine was effective in protecting chickens against Fowl Cholera, Infectious Coryza and Ornithobacterium Infection (ORT diseases) in chickens against challenge with these pathogens. Vaccinated chickens challenged with virulent Pasteurella Multocida serotypes A5, A8, A9 and D2 showed protection rates of 86.6%, 93.3%, 93.3% and 93.3%, respectively, as compared with 100% mortality in the non-vaccinated control. Vaccinated chickens challenged with Avibacterium paragallinarum serotypes A and C showed protection rates of 86.6% and 93.3%, respectively. Also, the protection rate against challenge with virulent Ornithobacterium rhinotracheale serotype A reached to 96.6%.

immunology↗

T cell subsets in chronic hepatitis C patients genotype 4 who achieved SVR following DAAs Therapy

BackgroundT cells are the primary effector cells that mediate viral clearance in spontaneous recovery from HCV infection and T cell dysfunction is a hallmark of progression to chronic HCV infection. Material and methodsThis study included 49 well charcterised HCV genotype 4-infected patients at Egyptian Liver Research Institute and Hospital (ELRIAH), Mansoura, Egypt, who were enrolled to receive direct acting antiviral therapy for hepatitis C. Immuno-phenotyping was performed to assess the expression of multiple T cell lineage, activation and inhibitory receptors. This was done before treatment, during treatment, at end of treatment and one year after treatment. 50 patients were also enrolled as control. ResultsOur data showed, significant increase in the percentages of CD8+ cells as compared to control group. The percentages of PD-1 expression on the CD8+ T-cell population were signifecntly elevated in patients before treatment (p<0.001). Significant increase in Treg (CD4+CD25hFoxP3+) subsets was noticed in comparison with control pateints. The expression of the inhibitory and activated markers in CD8+ T-cells was markedly reduced but more obvios in exhausted cytotoxic T cells compared to baseline finding (p<0.001). exhausted (PD1+CD8+) T-cells from HCV+ individuals reduced markedly after 4 weeks of DAA therapy (by 3 folds, p <0.001). Intereatingly it started to increase gradually again at the end of treatment and after 1 year but the increase doesnt reach levels noticed in healthy control subjects. ConclusionUnderstanding the mechanisms of immune dysfunction and barriers to immune restoration after HCV cure will aid in better understanding of the remaining negative long-term health outcomes for HCV patients and the possibility of HCC development.

immunology↗