Bona fide atypical scrapie faithfully reproduced for the first time in a rodent model
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Published:2022-12-13
Issue:1
Volume:10
Page:
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ISSN:2051-5960
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Container-title:Acta Neuropathologica Communications
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language:en
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Short-container-title:acta neuropathol commun
Author:
Vidal Enric, Sánchez-Martín Manuel A., Eraña Hasier, Lázaro Sonia Pérez, Pérez-Castro Miguel A., Otero Alicia, Charco Jorge M., Marín Belén, López-Moreno Rafael, Díaz-Domínguez Carlos M., Geijo Mariví, Ordóñez Montserrat, Cantero Guillermo, di Bari Michele, Lorenzo Nuria L., Pirisinu Laura, d’Agostino Claudia, Torres Juan María, Béringue Vincent, Telling Glenn, Badiola Juan J., Pumarola Martí, Bolea Rosa, Nonno Romolo, Requena Jesús R., Castilla JoaquínORCID
Abstract
AbstractAtypical Scrapie, which is not linked to epidemics, is assumed to be an idiopathic spontaneous prion disease in small ruminants. Therefore, its occurrence is unlikely to be controlled through selective breeding or other strategies as it is done for classical scrapie outbreaks. Its spontaneous nature and its sporadic incidence worldwide is reminiscent of the incidence of idiopathic spontaneous prion diseases in humans, which account for more than 85% of the cases in humans. Hence, developing animal models that consistently reproduce this phenomenon of spontaneous PrP misfolding, is of importance to study the pathobiology of idiopathic spontaneous prion disorders. Transgenic mice overexpressing sheep PrPC with I112 polymorphism (TgShI112, 1–2 × PrP levels compared to sheep brain) manifest clinical signs of a spongiform encephalopathy spontaneously as early as 380 days of age. The brains of these animals show the neuropathological hallmarks of prion disease and biochemical analyses of the misfolded prion protein show a ladder-like PrPres pattern with a predominant 7–10 kDa band. Brain homogenates from spontaneously diseased transgenic mice were inoculated in several models to assess their transmissibility and characterize the prion strain generated: TgShI112 (ovine I112 ARQ PrPC), Tg338 (ovine VRQ PrPC), Tg501 (ovine ARQ PrPC), Tg340 (human M129 PrPC), Tg361 (human V129 PrPC), TgVole (bank vole I109 PrPC), bank vole (I109I PrPC), and sheep (AHQ/ARR and AHQ/AHQ churra-tensina breeds). Our analysis of the results of these bioassays concludes that the strain generated in this model is indistinguishable to that causing atypical scrapie (Nor98). Thus, we present the first faithful model for a bona fide, transmissible, ovine, atypical scrapie prion disease.
Funder
Fundació la Marató de TV3 Ministerio de Ciencia, Innovación y Universidades Ministerio de Ciencia e Innovación
Publisher
Springer Science and Business Media LLC
Subject
Cellular and Molecular Neuroscience,Neurology (clinical),Pathology and Forensic Medicine
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