Florey Department of Neuroscience and Mental Health - Research Publications

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    Metabolic patterns and seizure outcomes following anterior temporal lobectomy
    Cahill, V ; Sinclair, B ; Malpas, CB ; McIntosh, AM ; Chen, Z ; Vivash, LE ; O'Shea, MF ; Wilson, SJ ; Desmond, PM ; Berlangieri, SU ; Hicks, RJ ; Rowe, CC ; Morokoff, AP ; King, JA ; Fabinyi, GC ; Kaye, AH ; Kwan, P ; Berkovic, SF ; O'Brien, TJ (WILEY, 2019-02)
    OBJECTIVE: We investigated the relationship between the interictal metabolic patterns, the extent of resection of 18 F-fluorodeoxyglucose positron emission tomography (18 FDG-PET) hypometabolism, and seizure outcomes in patients with unilateral drug-resistant mesial temporal lobe epilepsy (MTLE) following anterior temporal lobe (TL) resection. METHODS: Eighty-two patients with hippocampal sclerosis or normal magnetic resonance imaging (MRI) findings, concordant 18 FDG-PET hypometabolism, and at least 2 years of postoperative follow-up were included in this 2-center study. The hypometabolic regions in each patient were identified with reference to 20 healthy controls (p < 0.005). The resected TL volume and the volume of resected TL PET hypometabolism (TLH) were calculated from the pre- and postoperative MRI scans coregistered with interictal 18 FDG-PET. RESULTS: Striking differences in metabolic patterns were observed depending on the lateralization of the epileptogenic TL. The extent of the ipsilateral TLH was significantly greater in left MTLE patients (p < 0.001), whereas right MTLE patients had significantly higher rates of contralateral (CTL) TLH (p = 0.016). In right MTLE patients, CTL hypometabolism was the strongest predictor of an unfavorable seizure outcome, associated with a 5-fold increase in the likelihood of seizure recurrence (odds ratio [OR] = 4.90, 95% confidence interval [CI] = 1.07-22.39, p = 0.04). In left MTLE patients, greater extent of resection of ipsilateral TLH was associated with lower rates of seizure recurrence (p = 0.004) in univariate analysis; however, its predictive value did not reach statistical significance (OR = 0.96, 95% CI = 0.90-1.02, p = 0.19). INTERPRETATION: The difference in metabolic patterns depending on the lateralization of MTLE may represent distinct epileptic networks in patients with right versus left MTLE, and can guide preoperative counseling and surgical planning. Ann Neurol 2019; 1-10 ANN NEUROL 2019;85:241-250.
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    Avoiding methodological bias in studies of amyloid imaging results disclosure
    Taswell, C ; Donohue, C ; Mastwyk, MT ; Louey, AG ; Giummarra, J ; Robertson, J ; Darby, DG ; Masters, CL ; Rowe, CC (BMC, 2019-06-04)
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    Rates of age- and amyloid β-associated cortical atrophy in older adults with superior memory performance
    Dang, C ; Yassi, N ; Harrington, KD ; Xia, Y ; Lim, YY ; Ames, D ; Laws, SM ; Hickey, M ; Rainey-Smith, S ; Sohrabi, HR ; Doecke, JD ; Fripp, J ; Salvado, O ; Snyder, PJ ; Weinborn, M ; Villemagne, VL ; Rowe, CC ; Masters, CL ; Maruff, P (WILEY, 2019-12)
    INTRODUCTION: Superior cognitive performance in older adults may reflect underlying resistance to age-associated neurodegeneration. While elevated amyloid β (Aβ) deposition (Aβ+) has been associated with increased cortical atrophy, it remains unknown whether "SuperAgers" may be protected from Aβ-associated neurodegeneration. METHODS: Neuropsychologically defined SuperAgers (n = 172) and cognitively normal for age (n = 172) older adults from the Australian Imaging, Biomarkers and Lifestyle study were case matched. Rates of cortical atrophy over 8 years were examined by SuperAger classification and Aβ status. RESULTS: Of the case-matched SuperAgers and cognitively normal for age older adults, 40.7% and 40.1%, respectively, were Aβ+. Rates of age- and Aβ-associated atrophy did not differ between the groups on any measure. Aβ- individuals displayed the slowest rates of atrophy. DISCUSSION: Maintenance of superior memory in late life does not reflect resistance to age- or Aβ-associated atrophy. However, those individuals who reached old age without cognitive impairment nor elevated Aβ deposition (i.e. Aβ-) displayed reduced rates of cortical atrophy.
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    A Randomized Controlled Trial of Adherence to a 24-Month Home-Based Physical Activity Program and the Health Benefits for Older Adults at Risk of Alzheimer's Disease: The AIBL Active-Study
    Cox, KL ; Cyarto, E ; Ellis, KA ; Ames, D ; Desmond, P ; Phal, P ; Sharman, MJ ; Szoeke, C ; Rowe, CC ; Masters, CL ; You, E ; Burrows, S ; Lai, MMY ; Lautenschlager, NT ; Anstey, K ; Peters, R (IOS PRESS, 2019)
    BACKGROUND: Previous studies have demonstrated that physical activity (PA) interventions can improve physical and cognitive outcomes in older adults, but most have been relatively short in duration (<1 year) with a few having specifically targeting individuals at risk of developing Alzheimer's disease. OBJECTIVE: To examine adherence and physical health outcomes in a 24-month home-based PA intervention in older adults at risk of Alzheimer's disease. METHODS: Participants 60 years and older with mild cognitive impairment (MCI) or subjective memory complaints (SMC) with at least 1 cerebrovascular risk factor recruited from The Australian Imaging Biomarkers and Lifestyle Flagship Study of Aging (AIBL) were randomized to a PA or control group (n = 106). The control group continued with their usual lifestyle. The PA group received a 24-month home-based program with a target of 150 minutes/week of moderate PA and a behavioral intervention. Retention (participants remaining) and PA adherence (PA group only, percent PA completed to the PA prescribed) were determined at 6, 12, 18, and 24 months. Assessments at baseline, 6, 12, and 24 months included, PA; fitness; body composition and fat distribution. Key outcome measures were PA adherence and PA. RESULTS: The 24-month retention rate (97.2%) and the median PA adherence 91.67% (Q1-Q3, 81.96, 100.00) were excellent. In the long-term the intervention group achieved significantly better improvements in PA levels, leg strength, fat mass and fat distribution compared to the control. CONCLUSION: This study demonstrates that in this target group, long-term PA adherence is achievable and has physical health benefits.
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    Validation of a priori candidate Alzheimer's disease SNPs with brain amyloid-beta deposition
    Vacher, M ; Porter, T ; Villemagne, VL ; Milicic, L ; Peretti, M ; Fowler, C ; Martins, R ; Rainey-Smith, S ; Ames, D ; Masters, CL ; Rowe, CC ; Doecke, JD ; Laws, SM (NATURE PORTFOLIO, 2019-11-19)
    The accumulation of brain amyloid β (Aβ) is one of the main pathological hallmarks of Alzheimer's disease (AD). However, the role of brain amyloid deposition in the development of AD and the genetic variants associated with this process remain unclear. In this study, we sought to identify associations between Aβ deposition and an a priori evidence based set of 1610 genetic markers, genotyped from 505 unrelated individuals (258 Aβ+ and 247 Aβ-) enrolled in the Australian Imaging, Biomarker & Lifestyle (AIBL) study. We found statistically significant associations for 6 markers located within intronic regions of 6 genes, including AC103796.1-BDNF, PPP3R1, NGFR, KL, ABCA7 & CALHM1. Although functional studies are required to elucidate the role of these genes in the accumulation of Aβ and their potential implication in AD pathophysiology, our findings are consistent with results obtained in previous GWAS efforts.
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    Decrease in p3-Alcβ37 and p3-Alcβ40, products of Alcadein β generated by γ-secretase cleavages, in aged monkeys and patients with Alzheimer's disease
    Hata, S ; Omori, C ; Kimura, A ; Saito, H ; Kimura, N ; Gupta, V ; Pedrini, S ; Hone, E ; Chatterjee, P ; Taddei, K ; Kasuga, K ; Ikeuchi, T ; Waragai, M ; Nishimura, M ; Hu, A ; Nakaya, T ; Meijer, L ; Maeda, M ; Yamamoto, T ; Masters, CL ; Rowe, CC ; Ames, D ; Yamamoto, K ; Martins, RN ; Gandy, S ; Suzuki, T (WILEY, 2019)
    INTRODUCTION: Neuronal p3-Alcβ peptides are generated from the precursor protein Alcadein β (Alcβ) through cleavage by α- and γ-secretases of the amyloid β (Aβ) protein precursor (APP). To reveal whether p3-Alcβ is involved in Alzheimer's disease (AD) contributes for the development of novel therapy and/or drug targets. METHODS: We developed new sandwich enzyme-linked immunosorbent assay (sELISA) systems to quantitate levels of p3-Alcβ in the cerebrospinal fluid (CSF). RESULTS: In monkeys, CSF p3-Alcβ decreases with age, and the aging is also accompanied by decreased brain expression of Alcβ. In humans, CSF p3-Alcβ levels decrease to a greater extent in those with AD than in age-matched controls. Subjects carrying presenilin gene mutations show a significantly lower CSF p3-Alcβ level. A cell study with an inverse modulator of γ-secretase remarkably reduces the generation of p3-Alcβ37 while increasing the production of Aβ42. DISCUSSION: Aging decreases the generation of p3-Alcβ, and further significant decrease of p3-Alcβ caused by aberrant γ-secretase activity may accelerate pathogenesis in AD.
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    COMT val158met is not associated with Aβ-amyloid and APOE ε4 related cognitive decline in cognitively normal older adults
    Porter, T ; Burnham, SC ; Milicic, L ; Savage, G ; Maruff, P ; Sohrabi, HR ; Peretti, M ; Lim, YY ; Weinborn, M ; Ames, D ; Masters, CL ; Martins, RN ; Rainey-Smith, S ; Rowe, CC ; Salvado, O ; Groth, D ; Verdile, G ; Villemagne, VL ; Laws, SM (ELSEVIER, 2019-06)
    The non-synonymous single nucleotide polymorphism (SNP), Val158Met within the Catechol-O-methyltransferase (COMT) gene has been associated with altered levels of cognition and memory performance in cognitively normal adults. This study aimed to investigate the independent and interactional effects of COMT Val158Met on cognitive performance. In particular, it was hypothesised that COMT Val158Met would modify the effect of neocortical Aβ-amyloid (Aβ) accumulation and carriage of the apolipoprotein E (APOE) ε4 allele on cognition in preclinical Alzheimer's disease (AD). In 598 cognitively normal older adults with known neocortical Aβ levels, linear mixed modelling revealed no significant independent or interactional associations between COMT Val158Met and cognitive decline. These findings do not support previous associations between COMT Val158Met and cognitive performance and suggest this variant does not influence Aβ-amyloid or APOE ε4 driven cognitive decline in a well characterised cohort of cognitively normal older adults.
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    Non-invasive in vivo hyperspectral imaging of the retina for potential biomarker use in Alzheimer's disease
    Hadoux, X ; Hui, F ; Lim, JKH ; Masters, CL ; Pebay, A ; Chevalier, S ; Ha, J ; Loi, S ; Fowler, CJ ; Rowe, C ; Villemagne, VL ; Taylor, EN ; Fluke, C ; Soucy, J-P ; Lesage, F ; Sylvestre, J-P ; Rosa-Neto, P ; Mathotaarachchi, S ; Gauthier, S ; Nasreddine, ZS ; Arbour, JD ; Rheaume, M-A ; Beaulieu, S ; Dirani, M ; Nguyen, CTO ; Bui, B ; Williamson, R ; Crowston, JG ; van Wijngaarden, P (NATURE PUBLISHING GROUP, 2019-09-17)
    Studies of rodent models of Alzheimer's disease (AD) and of human tissues suggest that the retinal changes that occur in AD, including the accumulation of amyloid beta (Aβ), may serve as surrogate markers of brain Aβ levels. As Aβ has a wavelength-dependent effect on light scatter, we investigate the potential for in vivo retinal hyperspectral imaging to serve as a biomarker of brain Aβ. Significant differences in the retinal reflectance spectra are found between individuals with high Aβ burden on brain PET imaging and mild cognitive impairment (n = 15), and age-matched PET-negative controls (n = 20). Retinal imaging scores are correlated with brain Aβ loads. The findings are validated in an independent cohort, using a second hyperspectral camera. A similar spectral difference is found between control and 5xFAD transgenic mice that accumulate Aβ in the brain and retina. These findings indicate that retinal hyperspectral imaging may predict brain Aβ load.
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    A plasma protein classifier for predicting amyloid burden for preclinical Alzheimer's disease
    Ashton, NJ ; Nevado-Holgado, AJ ; Barber, IS ; Lynham, S ; Gupta, V ; Chatterjee, P ; Goozee, K ; Hone, E ; Pedrini, S ; Blennow, K ; Scholl, M ; Zetterber, H ; Ellis, KA ; Bush, A ; Rowe, CC ; Villemagne, VL ; Ames, D ; Masters, CL ; Aarsland, D ; Powell, J ; Lovestone, S ; Martins, R ; Hye, A (AMER ASSOC ADVANCEMENT SCIENCE, 2019-02)
    A blood-based assessment of preclinical disease would have huge potential in the enrichment of participants for Alzheimer's disease (AD) therapeutic trials. In this study, cognitively unimpaired individuals from the AIBL and KARVIAH cohorts were defined as Aβ negative or Aβ positive by positron emission tomography. Nontargeted proteomic analysis that incorporated peptide fractionation and high-resolution mass spectrometry quantified relative protein abundances in plasma samples from all participants. A protein classifier model was trained to predict Aβ-positive participants using feature selection and machine learning in AIBL and independently assessed in KARVIAH. A 12-feature model for predicting Aβ-positive participants was established and demonstrated high accuracy (testing area under the receiver operator characteristic curve = 0.891, sensitivity = 0.78, and specificity = 0.77). This extensive plasma proteomic study has unbiasedly highlighted putative and novel candidates for AD pathology that should be further validated with automated methodologies.