B-Cell Deficiency Suppresses Vaccine-Induced Protection against Murine Filariasis but Does Not Increase the Recovery Rate for Primary Infection
- 1 November 2001
- journal article
- research article
- Published by American Society for Microbiology in Infection and Immunity
- Vol. 69 (11) , 7067-7073
- https://doi.org/10.1128/iai.69.11.7067-7073.2001
Abstract
To establish the role of B cells and antibodies in destroying filariae, mice lacking mature B cells and therefore unable to produce antibodies were used.Litomosoides sigmodontisoffers a good opportunity for this study because it is the only filarial species that completes its life cycle in mice. Its development was compared in B-cell-deficient mice (BALB/c μMT mice) and wild-type BALB/c mice in two different in vivo situations, vaccination with irradiated larvae and primary infection. In all cases, mice were challenged with subcutaneous inoculation of 40 infective larvae. Vaccine-induced protection was suppressed in B-cell-deficient mice. In these mice, eosinophils infiltrated the subcutaneous tissue normally during immunization; however, their morphological state did not change following challenge inoculation, whereas in wild-type mice the percentage of degranulated eosinophils was markedly increased. From this, it may be deduced that the eosinophil–antibody–B-cell complex is the effector mechanism of protection in vaccinated mice and that its action is fast and takes place in the subcutaneous tissue. In primary infection, the filarial survival and growth was not modified by the absence of B cells. However, no female worm had uterine microfilariae, nor did any mice develop a patent infection. In these mice, concentrations of type 1 (gamma interferon) and type 2 (interleukin-4 [IL-4], IL-5 and IL-10) cytokines in serum were lower and pleural neutrophils were more numerous. The effects of the μMT mutation therefore differ from those in B1-cell-deficient mice described on the same BALB/c background, which reveal a higher filarial recovery rate and microfilaremia. This outlines B2-cell-dependent mechanisms as favorable to the late maturation ofL. sigmodontis.Keywords
This publication has 43 references indexed in Scilit:
- Interleukin-4 Is Essential for the Control of Microfilariae in Murine Infection with the FilariaLitomosoides sigmodontisInfection and Immunity, 2001
- Drastic Reduction of a Filarial Infection in Eosinophilic Interleukin-5 Transgenic MiceInfection and Immunity, 2000
- Role of Gamma Interferon and Interleukin-4 in Host Defense against the Human Filarial ParasiteBrugia malayiInfection and Immunity, 2000
- Parasitology and immunology of mice vaccinated with irradiated Litomosoides sigmodontis larvaeParasitology, 2000
- Lymphatic filariasis research and control in AfricaParasitology Today, 1997
- Allergic Eosinophil-rich Inflammation Develops in Lungs and Airways of B Cell–deficient MiceThe Journal of Experimental Medicine, 1997
- Eosinophils are the major effector cells of immunity to microfilariae in a mouse model of onchocerciasisParasitology, 1996
- Allergen-specific IgG1 and IgG3 through Fc gamma RII induce eosinophil degranulation.Journal of Clinical Investigation, 1995
- A B cell-deficient mouse by targeted disruption of the membrane exon of the immunoglobulin μ chain geneNature, 1991
- Antibody-mediated cytotoxic effects in vitro and in vivo of rat cells on infective larvae of Brugia malayiInternational Journal for Parasitology, 1990