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Cribb, L.

Publications and source records attributed to Cribb, L..

2 recordsLinked to original sources

Plasma pTau-217 Correlates with Brain Atrophy, Cognition, and CSF Biomarkers in a Cognitively Healthy Community Cohort

Plasma biomarkers are promising for detecting Alzheimers disease (AD) pathology, but their role in cognitively healthy individuals remains unclear. Plasma pTau-217 has high diagnostic accuracy for clinical and prodromal AD, yet its relevance in preclinical stages is underexplored. We examined if plasma biomarkers of AD, neurodegeneration, and neuroinflammation were associated with cognition, brain structure, and their cerebrospinal fluid (CSF) counterparts in dementia-free older adults. We studied community-based, dementia-free older adults from the Brain and Cognitive Health (BACH) cohort. Neuropsychological testing assessed global cognition (MMSE), memory (Logical Memory II), visual processing (Hooper Visual Organization Test), processing speed (Trail Making Test-A), and reasoning (Similarities). Paired plasma and CSF biomarkers (pTau-217, pTau-181, GFAP, NfL, A{beta}42/40) were measured using SIMOA. MRI-derived cortical thickness was used as a neurodegeneration marker. Multivariable linear regression assessed associations between log10-transformed plasma biomarker levels, cognition (adjusted for age, sex, education, hypertension, hyperlipidemia, diabetes), and cortical thickness (adjusted for age, sex, education, and intracranial volume). Pearsons correlations and Bland-Altman plots evaluated plasma-CSF agreement. There were 147 dementia-free participants (mean age{+/-}SD: 66.7{+/-}7.7 years; 56 % women). Higher plasma pTau-217 levels associated with lower global cognition scores ({beta} -0.80, 95% C.I. -1.56, -0.03, p=0.041) and abstract reasoning ({beta} -0.86, 95% confidence interval [C.I.] -1.62, -0.09, p=0.028). Greater plasma pTau-217 also associated with lower global cortical thickness ({beta}eta [{beta}] -0.21, 95% confidence interval [C.I]. -0.37, -0.06, per log unit change; p=0.006). No associations were found between the plasma biomarkers and processing speed or visual processing (p>0.05 for all). Among 47 participants with paired plasma-CSF biomarkers, plasma pTau-217 showed the strongest correlation with its CSF counterpart (R=0.76, p<0.0001), outperforming pTau-181 (R=0.61, p<0.0001), GFAP (R=0.66, p<0.0001), NfL (R=0.56, p<0.0001), and A{beta}42/40 (R=0.53, p=0.0001). In conclusion, plasma pTau-217 levels were associated with both cognition and cortical thickness in dementia-free older adults. All plasma biomarkers correlated significantly with their CSF counterpart. These findings reinforce the utility of plasma biomarkers, particularly pTau-217, as indicators of neurodegenerative processes, even in asymptomatic individuals.

neuroscience↗

Relationships between measures of neurovascular integrity and fluid transport in aging: a multi-modal neuroimaging study

Fluid transport in the neurovascular unit (NVU) is essential for maintaining brain health through nutrient delivery and waste clearance. NVU integrity and fluid regulation can be assessed through MRI measures, including water exchange rate through the NVU (BBB kw), enlarged perivascular spaces (ePVS), cerebral blood flow (CBF), free water (FW), and white matter hyperintensities (WMH). This study investigated relationships between these MRI measures using Bayesian mixed models, and their variation with chronological age or biological brain age (brainageR) using linear regression in 132 non-clinical older adults (mean age=67 years; 68% female). BBB kw positively associated with CBF ({beta}^=0.08, 95% credible interval (CI)=[0.02,0.15]). FW positively associated with both ePVS ({beta}^=0.44, CI=[0.30,0.63]) and WMH ({beta}^=0.13, CI=[0.04,0.21]). BBB kw, CBF and ePVS decreased with age, while FW and WMH increased (all p<.05). There were no associations with brain age (all p>.05). Relationships between FW, ePVS and WMH likely reflect interconnectivity of fluid regulation within different compartments, while the relationship between BBB kw and CBF indicates a link between NVU fluid flow and vessel function. While individual metrics of NVU integrity are associated with age, their inter-relationships appear stable, providing a baseline for future research in fluid transport and vascular health in neurodegenerative disease. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=190 SRC="FIGDIR/small/622194v1_ufig1.gif" ALT="Figure 1"> View larger version (58K): org.highwire.dtl.DTLVardef@df1273org.highwire.dtl.DTLVardef@1343e84org.highwire.dtl.DTLVardef@f475c2org.highwire.dtl.DTLVardef@15f32d1_HPS_FORMAT_FIGEXP M_FIG O_FLOATNOGraphical Abstract:C_FLOATNO Neurovascular function and the fluid transport system. The brains fluid transport system comprises the neurovascular unit, interstitial fluid exchange in the parenchyma and venous outflow. a. The flow of water molecules from the vessel to the perivascular space through the blood-brain barrier, and subsequently into the brain (facilitated by aquaporin-4 (AQP4) channels) in quantified by BBB kw. b. Greater cerebral blood flow rate (CBF) is associated with greater BBB kw, possibly due to vessel pulsations increasing osmotic pressure. c. Enlarged perivascular spaces (ePVS) may indicate reduced fluid flow within the NVU and are associated with (d.) increased extracellular free water (FW) in the parenchyma, suggesting a link between fluid regulation within the vasculature and the surrounding brain tissue. Greater white matter hyperintensity (WMH) volume also occurs alongside increase FW, in line with WMH reflecting more severe fluid flow stagnation occurring in concert with neuroinflammation and/or neuronal demyelination. C_FIG

neuroscience↗