%0 Journal Article %J J Alzheimers Dis %D 2023 %T Plasma Glial Fibrillary Acidic Protein Is Associated with 18F-SMBT-1 PET: Two Putative Astrocyte Reactivity Biomarkers for Alzheimer's Disease. %A Chatterjee, Pratishtha %A Doré, Vincent %A Pedrini, Steve %A Krishnadas, Natasha %A Thota, Rohith %A Bourgeat, Pierrick %A Ikonomovic, Milos D %A Rainey-Smith, Stephanie R %A Burnham, Samantha C %A Fowler, Christopher %A Taddei, Kevin %A Mulligan, Rachel %A Ames, David %A Masters, Colin L %A Fripp, Jurgen %A Rowe, Christopher C %A Martins, Ralph N %A Villemagne, Victor L %K Alzheimer Disease %K Amyloid beta-Peptides %K Apolipoproteins E %K Astrocytes %K Biomarkers %K Brain %K Cognitive Dysfunction %K Glial Fibrillary Acidic Protein %K Humans %K Positron-Emission Tomography %K tau Proteins %X

BACKGROUND: Astrocyte reactivity is an early event along the Alzheimer's disease (AD) continuum. Plasma glial fibrillary acidic protein (GFAP), posited to reflect astrocyte reactivity, is elevated across the AD continuum from preclinical to dementia stages. Monoamine oxidase-B (MAO-B) is also elevated in reactive astrocytes observed using 18F-SMBT-1 PET in AD.

OBJECTIVE: The objective of this study was to evaluate the association between the abovementioned astrocyte reactivity biomarkers.

METHODS: Plasma GFAP and Aβ were measured using the Simoa® platform in participants who underwent brain 18F-SMBT-1 and Aβ-PET imaging, comprising 54 healthy control (13 Aβ-PET+ and 41 Aβ-PET-), 11 mild cognitively impaired (3 Aβ-PET+ and 8 Aβ-PET-) and 6 probable AD (5 Aβ-PET+ and 1 Aβ-PET-) individuals. Linear regressions were used to assess associations of interest.

RESULTS: Plasma GFAP was associated with 18F-SMBT-1 signal in brain regions prone to early Aβ deposition in AD, such as the supramarginal gyrus (SG), posterior cingulate (PC), lateral temporal (LT) and lateral occipital cortex (LO). After adjusting for age, sex, APOE ɛ4 genotype, and soluble Aβ (plasma Aβ42/40 ratio), plasma GFAP was associated with 18F-SMBT-1 signal in the SG, PC, LT, LO, and superior parietal cortex (SP). On adjusting for age, sex, APOE ɛ4 genotype and insoluble Aβ (Aβ-PET), plasma GFAP was associated with 18F-SMBT-1 signal in the SG.

CONCLUSION: There is an association between plasma GFAP and regional 18F-SMBT-1 PET, and this association appears to be dependent on brain Aβ load.

%B J Alzheimers Dis %V 92 %P 615-628 %8 2023 %G eng %N 2 %R 10.3233/JAD-220908 %0 Journal Article %J J Alzheimers Dis %D 2018 %T Associations of Dietary Protein and Fiber Intake with Brain and Blood Amyloid-β. %A Fernando, W M A D Binosha %A Rainey-Smith, Stephanie R %A Gardener, Samantha L %A Villemagne, Victor L %A Burnham, Samantha C %A Macaulay, S Lance %A Brown, Belinda M %A Gupta, Veer Bala %A Sohrabi, Hamid R %A Weinborn, Michael %A Taddei, Kevin %A Laws, Simon M %A Goozee, Kathryn %A Ames, David %A Fowler, Christopher %A Maruff, Paul %A Masters, Colin L %A Salvado, Olivier %A Rowe, Christopher C %A Martins, Ralph N %K Aged %K Alzheimer Disease %K Amyloid beta-Peptides %K Australia %K Biomarkers %K Brain %K Cognition %K Cohort Studies %K Cross-Sectional Studies %K Dietary Fiber %K Dietary Proteins %K Female %K Humans %K Logistic Models %K Male %K Middle Aged %K Neuropsychological Tests %K Positron-Emission Tomography %X

Accumulating evidence suggests a diet high in protein and fiber may confer some protection against Alzheimer's disease (AD). However, no human studies to-date have assessed the relationship between protein and fiber intake, and plasma and brain amyloid-β (Aβ). Consequently, this cross-sectional study, investigated the association of self-reported dietary intakes of protein and fiber, with plasma and brain Aβ burden (n = 541, and n = 162 respectively), in a well-characterized cohort of cognitively normal older adults, drawn from the larger Australian Imaging, Biomarkers and Lifestyle (AIBL) study of aging. We observed 12.59 and 8.43 higher odds of 'high' brain Aβ burden (PiB PET SUVR≥1.5) if protein intake fell in the lowest and middle tertile, respectively, compared to the highest tertile (p = 0.008; p = 0.013). Thus, in this cohort, the more protein consumed, the less likelihood of 'high' Aβ burden in the brain. No other significant associations were observed. The results of this study highlight the potentially protective impact of high dietary protein intake on brain Aβ burden in older adults, before objective memory decline is apparent. While longitudinal validation is required, these findings may assist in the development of dietary approaches aimed at preventing or delaying AD onset.

%B J Alzheimers Dis %V 61 %P 1589-1598 %8 2018 %G eng %N 4 %1 http://www.ncbi.nlm.nih.gov/pubmed/29376865?dopt=Abstract %R 10.3233/JAD-170742