Longitudinal progression of blood biomarkers reveals a key role of astrocyte reactivity in preclinical Alzheimer's disease
Varma, V.; Yang, A.; Kac, P. R.; Bilgel, M.; Moghekar, A.; Loeffler, T.; Amschl, D.; Troncoso, J.; Blennow, K.; Zetterberg, H.; Ashton, N. J.; Resnick, S. M.; Thambisetty, M.
Show abstract
Defining the progression of blood biomarkers of Alzheimers disease (AD) is essential for targeting treatments in patients most likely to benefit from early intervention. We delineated the temporal ordering of blood biomarkers a decade prior to the onset of AD symptoms in participants in the Baltimore Longitudinal Study of Aging. We show that increased astrocyte reactivity, assessed by elevated glial fibrillary acidic protein (GFAP) levels is an early event in the progression of blood biomarker changes in preclinical AD. In AD-converters who are initially cognitively unimpaired (N=158, 377 serial plasma samples), higher plasma GFAP levels are observed as early as 10-years prior to the onset of cognitive impairment due to incident AD compared to individuals who remain cognitively unimpaired (CU, N=160, 379 serial plasma samples). Plasma GFAP levels in AD-converters remain elevated 5-years prior to and coincident with the onset of cognitive impairment due to AD. In participants with neuropathologically confirmed AD, plasma GFAP levels are elevated relative to cognitively normal individuals and intermediate in those who remain cognitively unimpaired despite significant AD pathology (asymptomatic AD). Higher plasma GFAP levels at death are associated with greater severity of both neuritic plaques and neurofibrillary tangles. In the 5XFAD transgenic model of AD, we observed greater GFAP levels in the cortex and hippocampus of transgenic mice relative to wild-type prior to the development of cognitive impairment. Reactive astrocytosis, an established biological response to neuronal injury, may be an early initiator of AD pathogenesis and a promising therapeutic target.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- TREM2 Risk Variants with Alzheimer’s Disease Differ in Rate of Cognitive Decline 97%
- Plasma biomarkers identify brain ATN abnormalities in a dementia-free population-based cohort 97%
- Assessment of the relationship between synaptic density and metabotropic glutamate receptors in early Alzheimer's disease: a multi-tracer PET study 97%
Similar papers in this journal
- CSF sphingomyelins in Alzheimer’s disease, neurodegeneration, and neuroinflammation 97%
- Differences between plasma and CSF p-tau181 and p-tau231 in early Alzheimer’s disease 96%
- The Association of Alzheimer’s Disease-related Blood-based Biomarkers with Cognitive Screening Test Performance in the Congolese Population in Kinshasa 96%
Similar papers in this journal
Similar papers in this journal
- A conformational variant of p53 (U-p53 AZ ) as blood-based biomarker for the prediction of the onset of symptomatic Alzheimer’s disease 97%
- Identifying Proteomic Prognostic Markers for Alzheimer’s Disease with Survival Machine Learning: the Framingham Heart Study 95%
- Longitudinal subcortical volume changes and their correlations with multiple PET and fluid biomarkers in dominantly inherited Alzheimer disease. 95%