CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Molecular Mimicry

  • 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.

  • Chronic anterior uveitis following bacille Calmette-Guérin vaccination: molecular mimicry in action?

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    Abstract Title:

    Chronic anterior uveitis following bacille Calmette-Guérin vaccination: molecular mimicry in action?

    Abstract Source:

    J Pediatr Ophthalmol Strabismus. 2008 Jul-Aug;45(4):252-3. PMID: 18705627

    Abstract Author(s):

    Alexander Spratt, Tim Key, Anthony J Vivian

    Article Affiliation:

    Alexander Spratt

    Abstract:

    A 13-year-old girl developed bilateral chronic anterior uveitis following bacille Calmette-Guérin (BCG) vaccination. HLA testing was negative for B27 but positive for DRB1 *0404, a variant of DR4 often associated with rheumatoid arthritis. The authors propose her HLA repertoire allowed for a BCG-induced abnormal autoimmune response by the mechanism of molecular mimicry.

  • Narcolepsy Following Yellow Fever Vaccination: A Case Report. 📎

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    Abstract Title:

    Narcolepsy Following Yellow Fever Vaccination: A Case Report.

    Abstract Source:

    Front Neurol. 2016 ;7:130. Epub 2016 Aug 10. PMID: 27559330

    Abstract Author(s):

    Richard E Rosch, Michael Farquhar, Paul Gringras, Deb K Pal

    Article Affiliation:

    Richard E Rosch

    Abstract:

    Narcolepsy with cataplexy is a rare, but important differential diagnosis for daytime sleepiness and atonic paroxysms in an adolescent. A recent increase in incidence in the pediatric age group probably linked to the use of the Pandemrix influenza vaccine in 2009, has increased awareness that different environmental factors can"trigger"narcolepsy with cataplexy in a genetically susceptible population. Here, we describe the case of a 13-year-old boy with narcolepsy following yellow fever vaccination. He carries the HLA DQB1*0602 haplotype strongly associated with narcolepsy and cataplexy. Polysomnography showed rapid sleep onset with rapid eye movement (REM) latency of 47 min, significant sleep fragmentation and a mean sleep latency of 1.6 min with sleep onset REM in four out of four nap periods. Together with the clinical history, these findings are diagnostic of narcolepsy type 1. The envelope protein E of the yellow fever vaccine strain 17D has significant amino acid sequence overlap with both hypocretin and the hypocretin receptor 2 receptors in protein regions that are predicted to act as epitopes for antibody production. These findings raise the question whether the yellow fever vaccine strain may, through a potential molecular mimicry mechanism, beanother infectious trigger for this neuro-immunological disorder.

  • Pancreatitis after human papillomavirus vaccination: a matter of molecular mimicry.

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    Abstract Title:

    Pancreatitis after human papillomavirus vaccination: a matter of molecular mimicry.

    Abstract Source:

    Immunol Res. 2016 Jul 16. Epub 2016 Jul 16. PMID: 27421720

    Abstract Author(s):

    Mojca Bizjak, Or Bruck, Sonja Praprotnik, Shani Dahan, Yehuda Shoenfeld

    Article Affiliation:

    Mojca Bizjak

    Abstract:

    A 20-year-old man developed severe abdominal pain 1 week after being vaccinated with the first dose of quadrivalent human papillomavirus (HPV) vaccine (Gardasil(®)). Despite ongoing symptoms of nausea and pain, he received the second dose of the vaccine. Only 10 days later, laboratory results revealed significantly elevated pancreatic enzymes, and with concomitant abdominal pain and vomiting, he was diagnosed with acute pancreatitis. This case of acute pancreatitis after HPV vaccination is not a novel entity. Although confirming the relationship between pancreatitis and vaccine is challenging, some factors suggest a possible link, includingthe positive re-challenge upon repeated exposure to the vaccine, HPV vaccine as probable causal relationship to other autoimmune diseases and a probable mechanism of molecular mimicry. In conjunction with aluminum adjuvant, the induction of immunity through molecular mimicry may potentially culminate in production of cytotoxic autoantibodies with a particular affinity for pancreatic acinar cells.

  • Vaccinations and secondary immune thrombocytopenia with antiphospholipid antibodies by human papillomavirus vaccine.

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    Abstract Title:

    Vaccinations and secondary immune thrombocytopenia with antiphospholipid antibodies by human papillomavirus vaccine.

    Abstract Source:

    Semin Hematol. 2016 Apr ;53 Suppl 1:S48-50. Epub 2016 Apr 7. PMID: 27312165

    Abstract Author(s):

    Mojca Bizjak, Or Bruck, Darja Kanduc, Sonja Praprotnik, Yehuda Shoenfeld

    Article Affiliation:

    Mojca Bizjak

    Abstract:

    A 13-year-old girl developed immune thrombocytopenic purpura (ITP) and concomitant positive antiphospholipid antibodies (aPL) following vaccination with a quadrivalent human papillomavirus (HPV) vaccine. During the course of a disease, she developed clinical manifestation with bleeding and she was treated with intravenous immunoglobulins. Consequently, the number of her platelets remained critically low and she was put on corticosteroids and rituximab. Since then, her platelet count remain within the normal range, but her aPL are still present.

  • Vaccine-induced autoimmunity: the role of molecular mimicry and immune crossreaction. 📎

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    Abstract Title:

    Vaccine-induced autoimmunity: the role of molecular mimicry and immune crossreaction.

    Abstract Source:

    Cell Mol Immunol. 2018 Mar 5. Epub 2018 Mar 5. PMID: 29503439

    Abstract Author(s):

    Yahel Segal, Yehuda Shoenfeld

    Article Affiliation:

    Yahel Segal

    Abstract:

    Since the early 1800s vaccines have saved numerous lives by preventing lethal infections. However, during the past two decades, there has been growing awareness of possible adverse events associated with vaccinations, cultivating heated debates and leading to significant fluctuations in vaccination rates. It is therefore pertinent for the scientific community to seriously address public concern of adverse effects of vaccines to regain public trust in these important medical interventions. Such adverse reactions to vaccines may be viewed as a result of the interaction between susceptibility of the vaccinated subject and various vaccine components. Among the implicated mechanisms for these reactions is molecular mimicry. Molecular mimicry refers to a significant similarity between certain pathogenic elements contained in the vaccine and specific human proteins. This similarity may lead to immune crossreactivity, wherein the reaction of the immune system towards the pathogenic antigens may harm the similar human proteins, essentially causing autoimmune disease. In this review, we address the concept of molecular mimicry and its application in explaining post vaccination autoimmune phenomena. We further review the principal examples of the influenza, hepatitis B, and human papilloma virus vaccines, all suspected to induce autoimmunity via molecular mimicry. Finally, we refer to possible implications on the potential future development of better, safer vaccines.Cellular&Molecular Immunology advance online publication, 5 March 2018; doi:10.1038/cmi.2017.151.

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