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Mackenzie, I.

Publications and source records attributed to Mackenzie, I..

2 recordsLinked to original sources

Sex differences in the clinical manifestation of autosomal dominant frontotemporal dementia

INTRODUCTIONSex differences are apparent in neurodegenerative diseases, but have not been comprehensively characterized in frontotemporal dementia (FTD). METHODSParticipants included 337 adults with autosomal dominant FTD enrolled in the ALLFTD Consortium. Clinical assessments and plasma were collected annually for up to six years. Linear mixed-effects models investigated how sex and disease stage associated with longitudinal trajectories of cognition, function, and neurofilament light chain (NfL). RESULTSWhile sex differences were not apparent at asymptomatic stages, females showed more rapid declines across all outcomes in symptomatic stages compared to males. In asymptomatic participants, the association between baseline NfL and clinical trajectories was weaker in females versus males, a difference that attenuated in symptomatic participants. DISCUSSIONIn genetic FTD, females show cognitive resilience in early disease stages followed by steeper clinical declines later in disease. Baseline NfL may be a less sensitive prognostic tool for clinical progression in females with FTD-causing mutations.

neuroscience↗

Relationship between therapeutic activity and preferential targeting of toxic soluble aggregates by amyloid-beta-directed antibodies

BackgroundAmyloid-beta (A{beta})-directed antibodies tested clinically for therapeutic activity against Alzheimers disease (AD) have shown varying degrees of efficacy. Although all of these antibodies target the A{beta} peptide, their binding profile to different molecular species of A{beta} differs and may underlie the observed variability in clinical outcomes. ObjectiveExplore the relationship between targeting of soluble toxic A{beta} species and therapeutic efficacy. MethodsSurface plasmon resonance (SPR) was used to conduct a side-by-side comparison of the binding of various A{beta}-directed antibodies to monomers and soluble A{beta} oligomers from AD brains. Immunohistochemistry was performed to assess reactivity with plaque. Preclinical activity was assessed in human amyloid precursor protein (APP) transgenic mouse models of AD. ResultsNon-selective, pan-A{beta} reactive antibodies such as crenezumab and gantenerumab, which have failed to produce a clinical benefit, bound all forms of A{beta} tested. In a competition assay, these antibodies lost the ability to bind toxic AD brain oligomers when exposed to monomers. Aggregate-selective antibodies such as aducanumab, lecanemab and donanemab, showed reduced monomer binding and a greater ability to withstand monomer competition which correlated with their reported inhibition of cognitive decline. Of the antibodies in earlier stages of clinical testing, ACU193 and PMN310 displayed the greatest ability to retain binding to toxic AD brain oligomers while PRX h2731 was highly susceptible to monomer competition. Plaque binding was observed with all aggregate-reactive antibodies with the exception of PMN310, which was strictly selective for soluble oligomers. Targeting of oligomers by PMN310 protected cognition and was not associated with microhemorrhages in mouse models of AD. ConclusionsOverall, these results suggest that selectivity for soluble toxic A{beta} oligomers may be a driver of clinical efficacy, with a potentially reduced risk of ARIA if engagement with plaque is minimized.

neuroscience↗