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Eunran Suh

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Open access Jul 2026

Clinicopathologic Evaluation of Amyloid Clearance in Alzheimer Disease

Importance: The long-term efficacy of amyloid targeting therapies hinge on their ability to slow downstream neuropathologic change, but little is known about the influence of amyloid clearance on tau pathology and neurodegeneration. Objective: To determine the post-mortem and in vivo association between post-treatment amyloid levels and downstream neuropathology in a patient with patchy areas showing minimal residual amyloid following aducanumab therapy. Design, Setting, and Participants: Clinicopathologic case report from a single academic memory center. A p.R47H TREM2 (a variant associated with higher Alzheimer disease risk) male carrier in his 50s with mild cognitive impairment who received aducanumab in the EMERGE/EMBARK trials and 14 age- or TREM2-matched untreated controls from the Penn Center for Neurodegenerative Disease Research. Exposures: 30 doses of aducanumab (cumulative dose 280mg/kg) over 4.5 years. Main Outcomes and Measures: Neuropathologic evaluation of amyloid, tau, and neuroinflammation; Amyloid PET and Tau PET standardized uptake value ratio, longitudinal change in cortical thickness. Results: Four years after receiving his final dose of aducanumab, the patient died and autopsy demonstrated variable levels of amyloid pathology, including regions with very low amyloid juxtaposed with regions showing typical high amyloid burden in deep cortical layers with only low amyloid burden in superficial layers. Regions showing low post-treatment amyloid were preferentially found in gyral crests and were associated with less tau pathology than untreated controls on autopsy and slower longitudinal atrophy on in vivo MRI (β = −0.50, [−0.62, −0.37], t = −7.96, p < .001). In contrast, regions with high amyloid burden were preferentially found in sulcal depths and had similar levels of tau pathology as seen in untreated controls on autopsy. Conclusion and Relevance: In this case report, areas of extensive amyloid clearance following amyloid targeting therapy were associated with less downstream neuropathological change and appear to preferentially occur in gyral crests. Future studies should evaluate the differential mechanisms involved in amyloid clearance from superficial and deep cortical layers and in gyri and sulci, as extensive amyloid clearance may be necessary to achieve downstream neuropathologic benefit following amyloid removal.

C. A. Brown, J. Robinson, Sandhitsu R. Das et al. · 0 citations
Open access Aug 2026

Activated microglial phenotypes in the hippocampal CA2 subfield are implicated in Lewy body disease progression

Histopathologic staging models of neuronal α-synuclein pathology (n-asyn) in Lewy body disease (LBD) seldom evaluate brain regions with direct synaptic connectivity to model the role of microglial processes. We address this gap by testing the hypothesis that, within the well-defined synaptic connectivity of the intrahippocampal circuit, n-asyn is associated with activated microglial phenotypes. We selected a cohort of autopsy-confirmed LBD patients and minimal age-related copathologies (n = 62) and a control cohort of cognitively healthy patients with isolated hippocampal tau accumulation (i.e., primary age-related tauopathy, PART; n = 12), to control for neurodegenerative pathology without amyloid plaques. We immunostained consecutive hippocampal sections for n-asyn and established markers of activated microglial phenotypes, Iba1, HLA-DR, and CD68. With validated digital histology methods, we measured percent area occupied (%AO) of each marker in 6 hippocampal subfields to compare and correlate microglial morphologic and proteomic activation phenotypes between cohorts and used linear mixed effects models to compare the %AO between subfields while covariying for demographics. We also constructed groups of n-asyn restricted to the cornu ammonis (CA) 2–3 subfields (Focal Subtype) or widespread n-asyn within additional subfields (Widespread Subtype) to model hypothesized n-asyn spread within the intrahippocampal circuit. LBD patients exhibited increased HLA-DR and CD68%AO in most hippocampal subfields compared with PART. In LBD patients, all microglial markers were the highest in the CA2. CA2 n-asyn correlated with HLA-DR and CD68 but not Iba1%AO. Patients classified as Widespread Subtype had worse cognitive impairment and increased CA2 HLA-DR and CD68%AO. CA2 HLA-DR and CD68%AO correlated with distal n-asyn in retrograde, but not anterograde connected subfields. Our data show that activated microglial phenotypes in the CA2 of LBD patients are associated with worse clinical outcomes and retrograde n-asyn transmission. These data suggest that measures of microglial states can refine LBD histopathological progression models.

Esteban Luna, K. Cousins, Sheina Emrani et al. · 0 citations

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