# Sex differences in plasma p-tau181 associations with Alzheimer’s disease biomarkers, cognitive decline, and clinical progression

**Authors:** Amaryllis A. Tsiknia, Steven D. Edland, Erin E. Sundermann, Emilie T. Reas, James B. Brewer, Douglas Galasko, Sarah J. Banks

PMC · DOI: 10.1038/s41380-022-01675-8 · Molecular Psychiatry · 2022-06-29

## TL;DR

This study finds that women with Alzheimer's disease show stronger links between plasma p-tau181 levels and brain changes, cognitive decline, and dementia risk compared to men.

## Contribution

The study reveals sex-specific differences in how plasma p-tau181 relates to Alzheimer's biomarkers and disease progression.

## Key findings

- Women with higher plasma p-tau181 had lower brain glucose metabolism and faster cognitive decline compared to men.
- Higher plasma p-tau181 levels in women were associated with greater amyloid-beta and tau deposition in the brain.
- Among Aβ-positive individuals, women had higher dementia risk linked to plasma p-tau181 levels than men.

## Abstract

Studies have shown that women on the Alzheimer’s disease (AD) continuum have more pathological tau in the brain and cerebrospinal fluid (CSF), than men. Some studies have found that higher levels of tau biomarkers are more strongly associated with clinical AD, cognitive decline and neurodegeneration in women than in men. Despite major developments in the use of plasma tau phosphorylated at threonine 181 (p-tau181) as an AD biomarker, it is unknown whether these sex differences apply to plasma p-tau181. In 1060 Alzheimer’s Disease Neuroimaging Initiative (ADNI) participants (47% women, 73.8 ± 7.6 years old), we examined sex differences in plasma p-tau181 levels and their association with other biomarkers, cognitive decline and incident AD. Linear regressions tested for an effect of sex on plasma p-tau181 levels and for plasma p-tau181 × sex interactions on CSF p-tau181, as well as entorhinal cortex tau, cortical amyloid-β (Aβ) deposition, and brain glucose metabolism, quantified using PET imaging. Linear mixed effects models tested for a sex × baseline plasma p-tau181 interaction on change in cognition over time. Finally, Cox models tested for a sex × plasma p-tau181 interaction on the risk of AD dementia in participants who were free of dementia at baseline. Despite similar plasma p-tau181 levels between sexes, women had lower brain glucose metabolism, greater brain Aβ and entorhinal cortex tau deposition, higher CSF p-tau181 and faster cognitive decline in relation to higher baseline plasma p-tau181 levels compared with men. Among Aβ positive, dementia-free participants, women had higher rates of incident AD dementia associated with increasing baseline plasma p-tau181 levels, relative to men. Our results suggest that sex may impact the clinical interpretation of plasma p-tau181 concentrations. If replicated, these findings could have important implications for the use of plasma p-tau181 as an accessible AD biomarker and screening tool for preventive and therapeutic clinical trials.

## Linked entities

- **Diseases:** Alzheimer’s disease (MONDO:0004975)

## Full-text entities

- **Genes:** SERPINA1 (serpin family A member 1) [NCBI Gene 5265] {aka A1A, A1AT, AAT, PI, PI1, PRO2275}, AQP4 (aquaporin 4) [NCBI Gene 361] {aka MIWC, MLC4, WCH4, hAQP4}, APOE (apolipoprotein E) [NCBI Gene 348] {aka AD2, APO-E, ApoE4, LDLCQ5, LPG}, APP (amyloid beta precursor protein) [NCBI Gene 351] {aka AAA, ABETA, ABPP, AD1, APPI, CTFgamma}, MAPT (microtubule associated protein tau) [NCBI Gene 4137] {aka DDPAC, FTD1, FTDP-17, MAPTL, MSTD, MTBT1}
- **Diseases:** hippocampal atrophy (MESH:D001284), depression (MESH:D003866), tau tangles (MESH:C536599), cognitive decline (MESH:D003072), neuroinflammatory (MESH:D000090862), AD (MESH:D000544), MCI (MESH:D060825), brain hypometabolism (MESH:D001927), neurodegeneration (MESH:D019636), memory dysfunction (MESH:D008569), Dementia (MESH:D003704),  (MESH:D018450)
- **Species:** Homo sapiens (human, species) [taxon 9606]

## Full text

_Full body text omitted from this summary view._ Fetch the complete paper as Markdown: https://tomesphere.com/paper/PMC9718670/full.md

## Figures

5 figures with captions in the complete paper: https://tomesphere.com/paper/PMC9718670/full.md

## References

51 references — full list in the complete paper: https://tomesphere.com/paper/PMC9718670/full.md

---
Source: https://tomesphere.com/paper/PMC9718670