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We are analyzing https://link.springer.com/article/10.1186/s40478-015-0250-y.

Title:
Murine versus human apolipoprotein E4: differential facilitation of and co-localization in cerebral amyloid angiopathy and amyloid plaques in APP transgenic mouse models | Acta Neuropathologica Communications
Description:
Introduction Amyloid β (Aβ) accumulates in the extracellular space as diffuse and neuritic plaques in Alzheimer’s disease (AD). Aβ also deposits on the walls of arterioles as cerebral amyloid angiopathy (CAA) in most cases of AD and sometimes independently of AD. Apolipoprotein E (apoE) ɛ4 is associated with increases in both Aβ plaques and CAA in humans. Studies in mouse models that develop Aβ deposition have shown that murine apoE and human apoE4 have different abilities to facilitate plaque or CAA formation when studied independently. To better understand and compare the effects of murine apoE and human apoE4, we bred 5XFAD (line 7031) transgenic mice so that they expressed one copy of murine apoE and one copy of human apoE4 under the control of the normal murine apoE regulatory elements (5XFAD/apoEm/4). Results The 5XFAD/apoEm/4 mice contained levels of parenchymal CAA that were intermediate between 5XFAD/apoEm/m and 5XFAD/apoE4/4 mice. In 5XFAD/apoEm/4 mice, we found that Aβ parenchymal plaques co-localized with much more apoE than did parenchymal CAA, suggesting differential co-aggregation of apoE with Aβ in plaques versus CAA. More importantly, within the brain parenchyma of the 5XFAD/apoEm/4 mice, plaques contained more murine apoE, which on its own results in more pronounced and earlier plaque formation, while CAA contained more human apoE4 which on its own results in more pronounced CAA formation. We further confirmed the co-aggregation of mouse apoE with Aβ in plaques by showing a strong correlation between insoluble mouse apoE and insoluble Aβ in PS1APP-21/apoEm/4 mice which develop plaques without CAA. Conclusions These studies suggest that both murine apoE and human apoE4 facilitate differential opposing effects in influencing Aβ plaques versus CAA via different co-aggregation with these two amyloid lesions and set the stage for understanding these effects at a molecular level.
Website Age:
28 years and 1 months (reg. 1997-05-29).

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  • Technology & Computing
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Custom-built

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🌠 Phenomenal Traffic: 5M - 10M visitors per month


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Keywords {🔍}

apoe, caa, mouse, plaques, mice, pubmed, amyloid, human, article, parenchymal, google, scholar, fig, cas, deposition, plaque, brain, disease, apppsapoem, cerebral, xfadapoem, apolipoprotein, central, alzheimers, data, contained, leptomeningeal, transgenic, insoluble, antibody, colocalization, compared, angiopathy, levels, xfadapoemm, area, xfadapoe, apoem, formation, coaggregation, elisa, fraction, differential, colocalized, generated, performed, figure, additional, murine, versus,

Topics {✒️}

amyloid-related imaging abnormalities accumulate human dutch/iowa community-dwelling older persons article download pdf amyloid-modifying therapeutic trials intraneuronal beta-amyloid aggregates apoe predicts amyloid-beta abeta42-driven cerebral amyloidosis brain beta-amyloid levels blood-brain barrier disorder apoe influences amyloid-beta vascular amyloid deposition support laboratory research minimal apoe/abeta association cerebral amyloid angiopathy amyloid precursor protein amyloid-beta deposition disease research center clinical brain research late-onset alzheimer disease privacy choices/manage cookies /amyloid-beta interaction article liao anti-aβ35-40 hj2 anti-aβ37-42 hj7 anti-aβ13-28 hj5 increased amyloid accumulation assessed 5xfad/apoem/4 mice full size image fibrillar amyloid deposition dose-dependent fashion cognitively normal aging creative commons license plaque-related pathology express human app low aβ40/aβ42 ratio late onset families facilitates plaque deposition fan liao 5xfad/apoem/4 brains shown shared instrumentation grant human apoe isoforms kuru plaque amyloid related subjects plaque deposition began full access hereditary cerebral hemorrhage genetic risk factor leptomeningeal cerebrovascular amyloid rare dutch mutation

Schema {🗺️}

WebPage:
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         headline:Murine versus human apolipoprotein E4: differential facilitation of and co-localization in cerebral amyloid angiopathy and amyloid plaques in APP transgenic mouse models
         description:Amyloid β (Aβ) accumulates in the extracellular space as diffuse and neuritic plaques in Alzheimer’s disease (AD). Aβ also deposits on the walls of arterioles as cerebral amyloid angiopathy (CAA) in most cases of AD and sometimes independently of AD. Apolipoprotein E (apoE) ɛ4 is associated with increases in both Aβ plaques and CAA in humans. Studies in mouse models that develop Aβ deposition have shown that murine apoE and human apoE4 have different abilities to facilitate plaque or CAA formation when studied independently. To better understand and compare the effects of murine apoE and human apoE4, we bred 5XFAD (line 7031) transgenic mice so that they expressed one copy of murine apoE and one copy of human apoE4 under the control of the normal murine apoE regulatory elements (5XFAD/apoEm/4). The 5XFAD/apoEm/4 mice contained levels of parenchymal CAA that were intermediate between 5XFAD/apoEm/m and 5XFAD/apoE4/4 mice. In 5XFAD/apoEm/4 mice, we found that Aβ parenchymal plaques co-localized with much more apoE than did parenchymal CAA, suggesting differential co-aggregation of apoE with Aβ in plaques versus CAA. More importantly, within the brain parenchyma of the 5XFAD/apoEm/4 mice, plaques contained more murine apoE, which on its own results in more pronounced and earlier plaque formation, while CAA contained more human apoE4 which on its own results in more pronounced CAA formation. We further confirmed the co-aggregation of mouse apoE with Aβ in plaques by showing a strong correlation between insoluble mouse apoE and insoluble Aβ in PS1APP-21/apoEm/4 mice which develop plaques without CAA. These studies suggest that both murine apoE and human apoE4 facilitate differential opposing effects in influencing Aβ plaques versus CAA via different co-aggregation with these two amyloid lesions and set the stage for understanding these effects at a molecular level.
         datePublished:2015-11-10T00:00:00Z
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            Amyloid plaques
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            Neurosciences
            Pathology
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      headline:Murine versus human apolipoprotein E4: differential facilitation of and co-localization in cerebral amyloid angiopathy and amyloid plaques in APP transgenic mouse models
      description:Amyloid β (Aβ) accumulates in the extracellular space as diffuse and neuritic plaques in Alzheimer’s disease (AD). Aβ also deposits on the walls of arterioles as cerebral amyloid angiopathy (CAA) in most cases of AD and sometimes independently of AD. Apolipoprotein E (apoE) ɛ4 is associated with increases in both Aβ plaques and CAA in humans. Studies in mouse models that develop Aβ deposition have shown that murine apoE and human apoE4 have different abilities to facilitate plaque or CAA formation when studied independently. To better understand and compare the effects of murine apoE and human apoE4, we bred 5XFAD (line 7031) transgenic mice so that they expressed one copy of murine apoE and one copy of human apoE4 under the control of the normal murine apoE regulatory elements (5XFAD/apoEm/4). The 5XFAD/apoEm/4 mice contained levels of parenchymal CAA that were intermediate between 5XFAD/apoEm/m and 5XFAD/apoE4/4 mice. In 5XFAD/apoEm/4 mice, we found that Aβ parenchymal plaques co-localized with much more apoE than did parenchymal CAA, suggesting differential co-aggregation of apoE with Aβ in plaques versus CAA. More importantly, within the brain parenchyma of the 5XFAD/apoEm/4 mice, plaques contained more murine apoE, which on its own results in more pronounced and earlier plaque formation, while CAA contained more human apoE4 which on its own results in more pronounced CAA formation. We further confirmed the co-aggregation of mouse apoE with Aβ in plaques by showing a strong correlation between insoluble mouse apoE and insoluble Aβ in PS1APP-21/apoEm/4 mice which develop plaques without CAA. These studies suggest that both murine apoE and human apoE4 facilitate differential opposing effects in influencing Aβ plaques versus CAA via different co-aggregation with these two amyloid lesions and set the stage for understanding these effects at a molecular level.
      datePublished:2015-11-10T00:00:00Z
      dateModified:2015-11-10T00:00:00Z
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         Alzheimer’s disease
         Apolipoprotein E
         Amyloid plaques
         Cerebral amyloid angiopathy
         Neurosciences
         Pathology
         Neurology
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                     name:GRECC, Durham Veterans Affairs Medical Center, Durham, USA
                     type:PostalAddress
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                     name:Department of Medicine (Geriatrics), Duke University Medical Center, Durham, USA
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            name:David M. Holtzman
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            address:
               name:Department of Neurology, Hope Center for Neurological Disorders, Charles F. and Joanne Knight Alzheimer’s Disease Research Center, Washington University School of Medicine, St. Louis, USA
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            address:
               name:Department of Neurology, Hope Center for Neurological Disorders, Charles F. and Joanne Knight Alzheimer’s Disease Research Center, Washington University School of Medicine, St. Louis, USA
               type:PostalAddress
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            address:
               name:GRECC, Durham Veterans Affairs Medical Center, Durham, USA
               type:PostalAddress
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            address:
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      name:David M. Holtzman
      affiliation:
            name:Washington University School of Medicine
            address:
               name:Department of Neurology, Hope Center for Neurological Disorders, Charles F. and Joanne Knight Alzheimer’s Disease Research Center, Washington University School of Medicine, St. Louis, USA
               type:PostalAddress
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      email:[email protected]
PostalAddress:
      name:Department of Neurology, Hope Center for Neurological Disorders, Charles F. and Joanne Knight Alzheimer’s Disease Research Center, Washington University School of Medicine, St. Louis, USA
      name:Department of Neurology, Hope Center for Neurological Disorders, Charles F. and Joanne Knight Alzheimer’s Disease Research Center, Washington University School of Medicine, St. Louis, USA
      name:Department of Neurology, Hope Center for Neurological Disorders, Charles F. and Joanne Knight Alzheimer’s Disease Research Center, Washington University School of Medicine, St. Louis, USA
      name:Department of Neurology, Hope Center for Neurological Disorders, Charles F. and Joanne Knight Alzheimer’s Disease Research Center, Washington University School of Medicine, St. Louis, USA
      name:Department of Neurology, Hope Center for Neurological Disorders, Charles F. and Joanne Knight Alzheimer’s Disease Research Center, Washington University School of Medicine, St. Louis, USA
      name:Department of Cell and Molecular Biology, The Feinberg School of Medicine, Northwestern University, Chicago, USA
      name:GRECC, Durham Veterans Affairs Medical Center, Durham, USA
      name:Department of Medicine (Geriatrics), Duke University Medical Center, Durham, USA
      name:Department of Neurology, Hope Center for Neurological Disorders, Charles F. and Joanne Knight Alzheimer’s Disease Research Center, Washington University School of Medicine, St. Louis, USA

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