CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Rubella

  • Antibodies directed against rubella virus induce demyelination in aggregating rat brain cell cultures.

    Abstract Title:

    Antibodies directed against rubella virus induce demyelination in aggregating rat brain cell cultures.

    Abstract Source:

    J Neurosci Res. 2001 Sep 1;65(5):446-54. PMID: 11536329

    Abstract Author(s):

    C Besson Duvanel, P Honegger, J M Matthieu

    Article Affiliation:

    Laboratory of Neurochemistry, Department of Pediatrics, Centre Hospitalier Universitaire Vaudois, Lausanne, Switzerland.

    Abstract:

    To link the presence of intrathecal virus-specific oligoclonal immunoglobulin G (IgG) in multiple sclerosis patients to a demyelinating activity, aggregating rat brain cell cultures were treated with antibodies directed against two viruses, namely, rubella (RV) and hepatitis B (HB). Anti-RV antibodies in the presence of complement decreased myelin basic protein concentrations in a dose-dependent manner, whereas anti-HB antibodies had no effect. A similar but less pronounced effect was observed on the enzymatic activity of 2',3'-cyclic nucleotide 3'-phosphohydrolase, which is enriched in noncompact membranes of oligodendrocytes. These effects were comparable to those in cultures treated with antibodies directed against myelin oligodendrocyte glycoprotein (MOG), previously found to be myelinotoxic both in vitro and in vivo. Sequence homologies were found between structural glycoprotein E(2) of RV and MOG, suggesting that demyelination was due to molecular mimicry. To support the hypothesis that demyelination was caused by anti-RV IgG that recognized an MOG epitope, we found that anti-RV antibodies depleted MOG in a dose-dependent manner. Further evidence came from the demonstration that anti-RV and anti-MOG IgG colocalized on oligodendrocyte processes and that both revealed by Western blot a 28 kDa protein in CNS myelin, a molecular weight corresponding to MOG. These findings suggest that a virus such as RV exhibiting molecular mimicry with MOG can trigger an autoimmune demyelination.

  • Spotlight on measles 2010: excretion of vaccine strain measles virus in urine and pharyngeal secretions of a child with vaccine associated febrile rash illness, Croatia, March 2010. 📎

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    Abstract Title:

    Spotlight on measles 2010: excretion of vaccine strain measles virus in urine and pharyngeal secretions of a child with vaccine associated febrile rash illness, Croatia, March 2010.

    Abstract Source:

    Euro Surveill. 2010 Sep 2 ;15(35). Epub 2010 Sep 2. PMID: 20822734

    Abstract Author(s):

    B Kaic, I Gjenero-Margan, B Aleraj, T Vilibic-Cavlek, M Santak, A Cvitković, T Nemeth-Blazic, I Ivic Hofman

    Article Affiliation:

    B Kaic

    Abstract:

    We describe excretion of measles vaccine strain Schwarz in a child who developed a febrile rash illness eight days after primary immunisation against measles, mumps and rubella. Throat swabs and urine specimens were collected on the fifth and sixth day of illness, respectively. Genotyping demonstrated measles vaccine strain Schwarz (genotype A). If measles and rubella were not under enhanced surveillance in Croatia, the case would have been either misreported as rubella or not recognised at all.

  • Third of measles cases could just be a reaction to the MMR

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    Third of measles cases could just be a reaction to the MMR image

    More than 30 per cent of cases of measles contributing to the 'epidemic' that has sparked the clamp-down on anti-vaxxers are nothing more than reactions to the vaccine.

    Seventy-three of the 194 measles cases recorded in California in 2015—the outbreak that sparked the kick-back against the anti-vax movement—were merely reactions to the MMR (measles-mumps-rubella) vaccine.

    Although the data has never been published, researchers from the US's Centers for Disease Control and Prevention (CDC) have confirmed that the analysis is correct.

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