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Ferreira, J. B.

Publications and source records attributed to Ferreira, J. B..

2 recordsLinked to original sources

Route of Adenovirus Type 5-Vectored Influenza Vaccination Shapes Systemic and Mucosal Immunity in a Maternal-Neonatal Pig Model

Influenza A virus can cause severe complications in pregnant women and infants, yet no influenza vaccines are approved for infants younger than six months. To address this, novel maternal vaccination strategies are needed to increase global access and coverage in these vulnerable populations. This study evaluated a hemagglutinin (HA) A/California/2009 (H1N1)-based human adenovirus 5 (huAd5) vector vaccine, adjuvanted with a TLR3 agonist, for its ability to induce influenza-specific passive immunity from pregnant and lactating pigs to their piglets following different immunization routes. Influenza naive pregnant dams were vaccinated via oral, intranasal (IN), or intramuscular (IM) routes three weeks prepartum and boosted four weeks later. Serum, colostrum and milk samples were collected longitudinally to assess HA-specific antibody induced by vaccination. H1N1-Ca/09 neutralizing antibodies were evaluated in serum and IFN{gamma} producing cells were assessed in blood, spleen and lymph node cells. IN and IM routes elicited robust serum HA-specific antibody responses when compared to control animals at one- and four-weeks post-boost, whereas the oral route resulted in poor antibody induction across all samples tested. Piglets nursing from IN and IM vaccinated dams showed a significantly higher level of HA-specific antibodies in serum at 2-3 weeks post-partum compared to control piglets. Notably, IN immunized dams and their piglets showed significantly elevated influenza neutralizing antibodies compared to controls. This work demonstrated that both IN and IM immunization with a huAd5-vectored vaccine robustly induced maternal influenza-specific immunity that supported passive transfer to nursing piglets, with IN immunization resulting in superior transfer of neutralizing antibodies.

immunology↗

Evaluation of porcine epidemic diarrhea virus RNA contamination on swine industry transportation vehicles

Porcine epidemic diarrhea virus (PEDV) is one of the most devastating pathogens of global swine health and welfare. It is well known that contaminated fomites and vehicle movements play an important role in farm-to-farm PEDV spread, but the efficacy of cleaning and disinfection (C&D) protocols on the reduction in dissemination risk via vehicles and trailers remains unclear. This study used swine industry data to determine how frequently vehicles and trailers were contaminated with PEDV RNA before and after C&D. Environmental RNA samples were collected at three eastern North Carolina C&D sites from four different vehicle types: crew trucks, feed trucks, pigs-to-farm trucks and trailers, and pigs-to-market trucks and trailers. A total of 2,004 samples were collected from truck cabins, trailers, and tires before and after C&D with two commercial disinfectants at two different concentrations. An in-house RT-qPCR assay was used to detect the presence of PEDV RNA only (not infectivity status). Results suggest that pigs-to-market trucks hauling live pigs were the most likely to be contaminated with PEDV (82.06% of trucks tested positive before C&D and 89.55% tested positive after C&D), while feed trucks were the least likely contaminated (11.73% of trucks testing positive before C&D and 11.25% testing positive after C&D). Based on PEDV RNA detection, we demonstrated that quaternary ammonium and glutaraldehyde is a more effective disinfectant compared to advanced hydrogen peroxide in eliminating detectable PEDV RNA. Results also show that truck cabins are just as contaminated as the exterior of their vehicles. Based on these results, vehicle biosecurity measures should be evaluated and modified to prevent the spread of PEDV.

ecology↗