CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Whooping Cough

  • Acellular pertussis vaccines protect against disease but fail to prevent infection and transmission in a nonhuman primate model. 📎

    Abstract Title:

    Acellular pertussis vaccines protect against disease but fail to prevent infection and transmission in a nonhuman primate model.

    Abstract Source:

    Proc Natl Acad Sci U S A. 2014 Jan 14 ;111(2):787-92. Epub 2013 Nov 25. PMID: 24277828

    Abstract Author(s):

    Jason M Warfel, Lindsey I Zimmerman, Tod J Merkel

    Article Affiliation:

    Jason M Warfel

    Abstract:

    Pertussis is a highly contagious respiratory illness caused by the bacterial pathogen Bordetella pertussis. Pertussis rates in the United States have been rising and reached a 50-y high of 42,000 cases in 2012. Although pertussis resurgence is not completely understood, we hypothesize that current acellular pertussis (aP) vaccines fail to prevent colonization and transmission. To test our hypothesis, infant baboons were vaccinated at 2, 4, and 6 mo of age with aP or whole-cell pertussis (wP) vaccines and challenged with B. pertussis at 7 mo. Infection was followed by quantifying colonization in nasopharyngeal washes and monitoring leukocytosis and symptoms. Baboons vaccinated with aP were protected from severe pertussis-associated symptoms but not from colonization, did not clear the infection faster than naïve animals, and readily transmitted B. pertussis to unvaccinated contacts. Vaccination with wP induced a more rapid clearance compared with naïve and aP-vaccinated animals. By comparison, previously infected animals were not colonized upon secondary infection. Although all vaccinated and previously infected animals had robust serum antibody responses, we found key differences in T-cell immunity. Previously infected animals and wP-vaccinated animals possess strong B. pertussis-specific T helper 17 (Th17) memory and Th1 memory, whereas aP vaccination induced a Th1/Th2 response instead. The observation that aP, which induces an immune response mismatched to that induced by natural infection, fails to prevent colonization or transmission provides a plausible explanation for the resurgence of pertussis and suggests that optimal control of pertussis will require the development of improvedvaccines.

  • Finding the 'who' in whooping cough: vaccinated siblings are important pertussis sources in infants 6 months of age and under. 📎

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    Abstract Title:

    Finding the 'who' in whooping cough: vaccinated siblings are important pertussis sources in infants 6 months of age and under.

    Abstract Source:

    Commun Dis Intell Q Rep. 2014 Sep 30 ;38(3):E195-200. Epub 2014 Sep 30. PMID: 25391405

    Abstract Author(s):

    Christina Bertilone, Tania Wallace, Linda A Selvey

    Article Affiliation:

    Christina Bertilone

    Abstract:

    OBJECTIVES:To describe the epidemiology of pertussis, and to identify changes in the source of pertussis in infants 6 months of age and under, during the 2008-2012 epidemic in south metropolitan Perth.

    DESIGN AND SETTING:Analysis of all pertussis cases notified to the South Metropolitan Population Health Unit and recorded on the Western Australian Notifiable Infectious Disease Database over the study period. Information on the source of pertussis was obtained from enhanced surveillance data.

    RESULTS:Notification rates were highest in the 5-9 years age group, followed by the 0-4 years and 10-14 years age groups. There was a significant increase in the proportion of known sources who were siblings from the early epidemic period of 2008-2010, compared with the peak epidemic period of 2011-2012 (14.3% versus 51.4%, p = 0.002). The majority of sibling sources were fully vaccinated children aged 2 and 3 years.

    CONCLUSIONS:The incidence of pertussis was highest in children aged 12 years and under in this epidemic. At its peak, siblings were the most important sources of pertussis in infants 6 months and younger, particularly fully vaccinated children aged 2 and 3 years. Waning immunity before the booster at 4 years may leave this age group susceptible to infection. Even if cocooning programs could achieve full vaccination coverage of parents and ensure all siblings were fully vaccinated according to national schedules, waning immunity in siblings could provide a means for ongoing transmission to infants. Recent evidence suggests that maternal antenatal vaccination would significantly reduce the risk of pertussis in infants 3 months of age and under.

  • Pertactin negative Bordetella pertussis demonstrates higher fitness under vaccine selection pressure in a mixed infection model.

    Abstract Title:

    Pertactin negative Bordetella pertussis demonstrates higher fitness under vaccine selection pressure in a mixed infection model.

    Abstract Source:

    Vaccine. 2015 Oct 2. Epub 2015 Oct 2. PMID: 26432908

    Abstract Author(s):

    Azadeh Safarchi, Sophie Octavia, Laurence Don Wai Luu, Chin Yen Tay, Vitali Sintchenko, Nicholas Wood, Helen Marshall, Peter McIntyre, Ruiting Lan

    Article Affiliation:

    Azadeh Safarchi

    Abstract:

    Whooping cough or pertussis is a highly infectious respiratory disease in humans caused by Bordetella pertussis. The use of acellular vaccines (ACV) has been associated with the recent resurgence of pertussis in developed countries including Australia despite high vaccination coverage where B. pertussis strains that do not express pertactin (Prn), a key antigenic component of the ACV, have emerged and become prevalent. In this study, we used an in vivo competition assay in mice immunised with ACV and in naïve (control) mice to compare the proportion of colonisation with recent clinical Prn positive and Prn negative B. pertussis strains from Australia. The Prn negative strain colonised the respiratory tract more effectively than the Prn positive strain in immunised mice, out-competing the Prn positive strain by day 3 of infection. However, in control mice, the Prn positive strain out-competed the Prn negative strain. Our findings of greater ability of Prn negative strains to colonise ACV-immunised mice are consistent with reports of selective advantage for these strains in ACV-immunised humans.

  • Pertussis infection in fully vaccinated children in day-care centers, Israel. 📎

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    Abstract Title:

    Pertussis infection in fully vaccinated children in day-care centers, Israel.

    Abstract Source:

    Emerg Infect Dis. 2000 Sep-Oct;6(5):526-9. PMID: 10998384

    Abstract Author(s):

    I Srugo, D Benilevi, R Madeb, S Shapiro, T Shohat, E Somekh, Y Rimmar, V Gershtein, R Gershtein, E Marva, N Lahat

    Article Affiliation:

    Department of Clinical Microbiology, Bnai Zion Medical Center, Haifa, Israel. This email address is being protected from spambots. You need JavaScript enabled to view it.

    Abstract:

    We tested 46 fully vaccinated children in two day-care centers in Israel who were exposed to a fatal case of pertussis infection. Only two of five children who tested positive for Bordetella pertussis met the World Health Organization's case definition for pertussis. Vaccinated children may be asymptomatic reservoirs for infection.

  • Serum reactome induced by Bordetella pertussis infection and Pertussis vaccines: qualitative differences in serum antibody recognition patterns revealed by peptide microarray analysis. 📎

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    Abstract Title:

    Serum reactome induced by Bordetella pertussis infection and Pertussis vaccines: qualitative differences in serum antibody recognition patterns revealed by peptide microarray analysis.

    Abstract Source:

    BMC Immunol. 2015 ;16:40. Epub 2015 Jul 1. PMID: 26129684

    Abstract Author(s):

    Davide Valentini, Giovanni Ferrara, Reza Advani, Hans O Hallander, Markus J Maeurer

    Article Affiliation:

    Davide Valentini

    Abstract:

    BACKGROUND:Pertussis (whooping cough) remains a public health problem despite extensive vaccination strategies. Better understanding of the host-pathogen interaction and the detailed B. pertussis (Bp) target recognition pattern will help in guided vaccine design. We characterized the specific epitope antigen recognition profiles of serum antibodies ('the reactome') induced by whooping cough and B. pertussis (Bp) vaccines from a case-control study conducted in 1996 in infants enrolled in a Bp vaccine trial in Sweden (Gustafsson, NEJM, 1996, 334, 349-355).

    METHODS:Sera from children with whooping cough, vaccinated with Diphtheria Tetanus Pertussis (DTP) whole-cell (wc), acellular 5 (DPTa5), or with the 2 component (a2) vaccines and from infants receiving only DT (n=10 for each group) were tested with high-content peptide microarrays containing 17 Bp proteins displayed as linear (n=3175) peptide stretches. Slides were incubated with serum and peptide-IgG complexes detected with Cy5-labeled goat anti-human IgG and analyzed using a GenePix 4000B microarray scanner, followed by statistical analysis, using PAM (Prediction Analysis for Microarrays) and the identification of uniquely recognized peptide epitopes.

    RESULTS:367/3,085 (11.9%) peptides were recognized in 10/10 sera from children with whooping cough, 239 (7.7%) in DTPwc, 259 (8.4%) in DTPa5, 105 (3.4%) DTPa2, 179 (5.8%) in the DT groups. Recognition of strongly recognized peptides was similar between whooping cough and DPTwc, but statistically different between whooping cough vs. DTPa5 (p<0.05), DTPa2 and DT (p<0.001 vs. both) vaccines. 6/3,085 and 2/3,085 peptides were exclusively recognized in (10/10) sera from children with whooping cough and DTPa2 vaccination, respectively. DTPwc resembles more closely the whooping cough reactome as compared to acellular vaccines.

    CONCLUSION:We could identify a unique recognition signature common for each vaccination group (10/10 children). Peptide microarray technology allows detection of subtle differences in epitope signature responses and may help to guide rational vaccine development by the objective description of a clinically relevant immune response that confers protection against infectious pathogens.

  • Two Distinct Episodes of Whooping Cough Caused by Consecutive Bordetella pertussis and Bordetella parapertussis Infections in a Fully Immunized Healthy Boy. 📎

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    Abstract Title:

    Two Distinct Episodes of Whooping Cough Caused by Consecutive Bordetella pertussis and Bordetella parapertussis Infections in a Fully Immunized Healthy Boy.

    Abstract Source:

    Pediatr Infect Dis J. 2016 Jul 6. Epub 2016 Jul 6. PMID: 27391699

    Abstract Author(s):

    Ulrich Heininger, Detlef Schlassa

    Article Affiliation:

    Ulrich Heininger

    Abstract:

    We describe a 5-year-old, fully immunized boy with PCR proven consecutive B. pertussis and B. parapertussis infections causing typical whooping cough at the age of 2 and 5 years, respectively. Neither pertussis immunization nor disease provides reliable immunity against further episodes of whooping cough.