Abstract

Introduction: Xenogeneic melanosomal differentiation antigens, delivered in the form of a plasmid DNA vaccine, can overcome host immune ignorance/tolerance in preclinical animals to melanoma by: 1) generating humoral and cytotoxic T cell responses and 2) inducing protection from tumor challenge. Initial trials of human tyrosinase (huTyr) DNA vaccination of dogs with advanced malignant melanoma (Bergman et al, 2003) demonstrated safety and prolongation of survival with this therapeutic modality. We investigated antigen‐specific immunity in dogs receiving huTyr DNA vaccination.Methods: Three cohorts of three dogs each with advanced (WHO stage II‐IV) canine malignant melanoma (CMM) received four biweekly IM injections (dose levels 100, 500, or 1,500 ug, respectively/vaccination) of huTyr plasmid DNA via the Biojector2000 jet delivery device. Sera samples were taken before and after vaccination to detect specific antibody formation to huTyr by Enzyme‐Linked ImmunoSorbent Assays (ELISAs) and flow‐cytometry.Results: Three dogs have measurable, 2 to 4 fold huTyr‐specific antibody titers. Preliminary studies by flow‐cytometry have confirmed antibody response to huTyr by positive binding to endogenous human tyrosinase in SK‐Mel188 cells using post‐vaccinate serum.Conclusions: Xenogeneic (huTyr) DNA vaccination generates antigen‐specific humoral responses, which may partially explain the previously reported clinical efficacy and anti‐tumor responses. Ongoing studies include: 1) a comprehensive analysis by flow‐cytometry to detect huTyr‐specific antibodies and 2) a quantitative measure of potential cytotoxic T‐cell responses in these dogs by the DNA vaccination.

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