PPT-Figure 4 Figure 4. Neuropathology in transgenic mice following inoculation with brain

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Diack AB Ritchie D Peden AH Brown D Boyle A Morabito L et al Variably ProteaseSensitive Prionopathy a Unique Prion Variant with Inefficient Transmission Properties

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Figure 4 Figure 4. Neuropathology in transgenic mice following inoculation with brain: Transcript


Diack AB Ritchie D Peden AH Brown D Boyle A Morabito L et al Variably ProteaseSensitive Prionopathy a Unique Prion Variant with Inefficient Transmission Properties Emerg Infect Dis 2014201219691979 httpsdoiorg103201eid2012140214. By: Chrisanthi Kanaris. Dr. . Lynes. . MCB 5255. 21 March 2012. MDSC= myeloid-derived suppressor cell. Diverse group of cells . Precursors of myeloid cells, dendritic cells, macrophages, granulocytes . S Dasari. 1. ,. . S Kesh. 1. , J Buursma. 2. , S Livingston. 2. , D Kearn. 2. ,B Herndon. 1. , G . Vanden. Heuvel. 3. , R Baybutt. 2. , A Molteni. 1. .. 1. UMKC School of Medicine, . 2. Wheaton College, . Chapter 12 – Transgenic Animals Transgenic mice: methodology Transgenic mice: applications Transgenic livestock Transgenic poultry Transgenic fish Establishing transgenic mice by DNA microinjection Figure S3. MILI antibody specifically recognizes MILI.mili(+/+)mili(+/-mili(-/-) testes. Tubulin serveseIF3a, eIF4GII, and ribosomal protein S6 in MILI antibody co-precipitated MILI and eIF3a from Julia . Kofler. and Kate McFadden. Outline. The CNS Autopsy. Dura removal. Spinal cord squeeze. Basic . Neuroanatomy. Gross Neuropathology. Bloody brain. The CNS Autopsy. Examination of the brain and spinal cord at autopsy is performed to diagnose diseases affecting the CNS and to correlate lesion type/ patterning with . Brain Necrosis 1 2 Brain Necrosis 4 Brain Necrosis Brain Necrosis retrosplenial cortex (white arrow). Selective vulnerability of brain regions to the effects of toxic compounds may imitate the lesions Downloaded from http://rupress.org/jem/article-pdf/176/4/991/1103092/991.pdf by guest on 28 October 2022 Downloaded from http://rupress.org/jem/article-pdf/176/4/991/1103092/991.pdf by guest on 28 Oct Wadsworth J, Joiner S, Linehan JM, Balkema-Buschmann A, Spiropoulos J, Simmons MM, et al. Atypical Scrapie Prions from Sheep and Lack of Disease in Transgenic Mice Overexpressing Human Prion Protein. Emerg Infect Dis. 2013;19(11):1731-1739. https://doi.org/10.3201/eid1911.121341. Angers RC, Seward TS, Napier D, Green M, Hoover E, Spraker T, et al. Chronic Wasting Disease Prions in Elk Antler Velvet. Emerg Infect Dis. 2009;15(5):696-703. https://doi.org/10.3201/eid1505.081458. Barria MA, Balachandran A, Morita M, Kitamoto T, Barron R, Manson J, et al. Molecular Barriers to Zoonotic Transmission of Prions. Emerg Infect Dis. 2014;20(1):88-97. https://doi.org/10.3201/eid2001.130858. Béringue V, Herzog L, Reine F, Le Dur A, Casalone C, Vilotte J, et al. Transmission of Atypical Bovine Prions to Mice Transgenic for Human Prion Protein. Emerg Infect Dis. 2008;14(12):1898-1901. https://doi.org/10.3201/eid1412.080941. Statistical power as a function of the genotype relative risk (OR) to detect significant association at . α. =2.5E-05 for different disease allele frequencies, using 1358 cases and 12507 controls in the discovery study.. Shelburne SA, Sahasrabhojane P, Saldana M, Yao H, Su X, Horstmann N, et al. Streptococcus mitis Strains Causing Severe Clinical Disease in Cancer Patients. Emerg Infect Dis. 2014;20(5):762-771. https://doi.org/10.3201/eid2005.130953. Torres J, Andréoletti O, Lacroux C, Prieto I, Lorenzo P, Larska M, et al. Classical Bovine Spongiform Encephalopathy by Transmission of H-Type Prion in Homologous Prion Protein Context. Emerg Infect Dis. 2011;17(9):1636-1644. https://doi.org/10.3201/eid1709.101403.

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