The Potency and Durability of DNA- and Protein-Based Vaccines Against Leishmania major Evaluated Using Low-Dose, Intradermal Challenge
- 15 April 2001
- journal article
- research article
- Published by Oxford University Press (OUP) in The Journal of Immunology
- Vol. 166 (8) , 5122-5128
- https://doi.org/10.4049/jimmunol.166.8.5122
Abstract
DNA- and protein- based vaccines against cutaneous leishmaniasis due to Leishmania major were evaluated using a challenge model that more closely reproduces the pathology and immunity associated with sand fly-transmitted infection. C57BL/6 mice were vaccinated s.c. with a mixture of plasmid DNAs encoding the Leishmania Ags LACK, LmSTI1, and TSA (AgDNA), or with autoclaved L. major promastigotes (ALM) plus rIL-12, and the mice were challenged by inoculation of 100 metacyclic promastigotes in the ear dermis. When challenged at 2 wk postvaccination, mice receiving AgDNA or ALM/rIL-12 were completely protected against the development of dermal lesions, and both groups had a 100-fold reduction in peak dermal parasite loads compared with controls. When challenged at 12 wk, mice vaccinated with ALM/rIL-12 maintained partial protection against dermal lesions and their parasite loads were no longer significantly reduced, whereas the mice vaccinated with AgDNA remained completely protected and had a 1000-fold reduction in dermal parasite loads. Mice vaccinated with AgDNA also harbored few, if any, parasites in the skin during the chronic phase, and their ability to transmit L. major to vector sand flies was completely abrogated. The durable protection in mice vaccinated with AgDNA was associated with the recruitment of both CD8+ and CD4+ T cells to the site of intradermal challenge and with IFN-γ production by CD8+ T cells in lymph nodes draining the challenge site. These data suggest that under conditions of natural challenge, DNA vaccination has the capacity to confer complete protection against cutaneous leishmaniasis and to prevent the establishment of infection reservoirs.Keywords
This publication has 30 references indexed in Scilit:
- Genetic Immunization with Glycoprotein 63 cDNA Results in a Helper T Cell Type 1 Immune Response and Protection in a Murine Model of LeishmaniasisHuman Gene Therapy, 1998
- Nucleic Acid Vaccination against Toxoplasma gondii in MiceThe Journal of Eukaryotic Microbiology, 1996
- Leishmania Major Infection in Major Histocompatibility Complex Class II-Deficient Mice: CD8+ T Cells Do not Mediate a Protective Immune ResponseImmunobiology, 1996
- Expression Cloning of a Protective Leishmania AntigenScience, 1995
- Direct gene transfer in skeletal muscle: plasmid DNA-based immunization against the hepatitis B virus surface antigenVaccine, 1994
- Towards a DNA vaccine against tuberculosisVaccine, 1994
- The Adjuvant Effect of Interleukin-12 in a Vaccine Against Leishmania majorScience, 1994
- Heterologous Protection Against Influenza by Injection of DNA Encoding a Viral ProteinScience, 1993
- Genetic immunization is a simple method for eliciting an immune responseNature, 1992
- Immunoregulation of cutaneous leishmaniasis. T cell lines that transfer protective immunity or exacerbation belong to different T helper subsets and respond to distinct parasite antigens.The Journal of Experimental Medicine, 1988