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In this study, we present a proof-of-concept classical vaccination experiment that validates the in silico identification of tumor neoantigens (TNAs) using a machine learning-based platform called NAP-CNB. Unlike other TNA predictors, NAP-CNB leverages RNA-seq data to consider the relative expression of neoantigens in tumors. Our experiments show the efficacy of NAP-CNB. Predicted TNAs elicited potent antitumor responses in mice following classical vaccination protocols. Notably, optimal antitumor activity was observed when targeting the antigen with higher expression in the tumor, which was not the most immunogenic. Additionally, the vaccination combining different neoantigens resulted in vastly improved responses compared to each one individually, showing the worth of multiantigen-based approaches. These findings validate NAP-CNB as an innovative TNA identification platform and make a substantial contribution to advancing the next generation of personalized immunotherapies.
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http://dx.doi.org/10.7554/eLife.95010 | DOI Listing |
Avian Pathol
September 2025
Department of Animal Medicine, Production and Health (MAPS), University of Padua, Legnaro (PD), Italy.
Infectious bursal disease virus (IBDV) is a highly contagious, economically relevant immunosuppressive pathogen of chickens. Despite belonging to a single serotype, virulent IBDVs display a remarkable heterogeneity in genetic and functional features. Traditionally, strains are categorized into classical, variant and very virulent viruses, but many atypical IBDVs have been recently identified.
View Article and Find Full Text PDFLancet Planet Health
September 2025
Department of Veterinary Tropical Diseases, Faculty of Veterinary Science, University of Pretoria, Onderstepoort, South Africa.
Rift Valley fever (RVF), a zoonotic mosquito-borne viral disease with erratic occurrence and complex epidemiology, results in substantial costs to veterinary and public health and national economies. Since 1985, RVF virus (RVFV) epidemiology has focused on epidemics triggered by flood-induced emergence of transovarially infected mosquitoes, following an interepidemic period during which RVFV persists primarily in floodwater Aedes spp mosquito eggs, with potential for low-level interepidemic circulation. In this Personal View, we challenge this classic framework of RVFV epidemiology, presenting instead a spectrum of RVFV dynamics ranging from epidemic to hyperendemic.
View Article and Find Full Text PDFCase Rep Med
August 2025
Clinical Research Department, Pasteur Institute of Iran, Tehran, Iran.
COVID-19 pandemic led to a fast vaccine design due to the threat of rapid spreading worldwide. Safety profile of the approved vaccines has been achieved mostly through clinical trials. However, some unsolicited adverse events in a longer duration of time have been recorded in addition to the late disorders known as long-COVID, stemming from classical infection.
View Article and Find Full Text PDFVet Microbiol
September 2025
Center for Food Animal Health, Department of Animal Sciences, College of Food, Agricultural and Environmental Sciences, The Ohio State University, Wooster, OH 44691, USA; Department of Veterinary Preventive Medicine, College of Veterinary Medicine, The Ohio State University, Columbus, OH 43210, USA.
Porcine sapovirus (PoSaV) is an emerging enteric pathogen in swine industry, primarily associated with diarrhea in weaning and post-weaning pigs. To date, eight genogroups of PoSaVs have been identified, with genogroup III (GIII) being the most prevalent worldwide. However, the isolation of field strains in various cell lines has achieved limited success, hindering progress in PoSaV research.
View Article and Find Full Text PDFRecent Adv Drug Deliv Formul
August 2025
Swami Devi Dyal Group of Professional Institute, Panchkula, India.
For centuries, injections have been the primary method for vaccination; however, these traditional approaches present challenges due to pain, fear, and difficulties in administration. Scientists from Stanford University have developed vaccine creams, representing a revolutionary approach to the field of vaccination. Genetically modified Staphylococcus epidermidis forms the basis of these cream products, which support skin-based, painless vaccination without invasive procedures, while playing an essential role in the immune response.
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