错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Sex/gender effects of glial reactivity on preclinical Alzheimer’s disease pathology

  • Clara Vila-Castelar,
  • Muge Akinci,
  • Eleni Palpatzis,
  • Pablo Aguilar-Dominguez,
  • Gregory Operto,
  • Gwendlyn Kollmorgen,
  • Clara Quijano-Rubio,
  • Kaj Blennow,
  • Henrik Zetterberg,
  • Carles Falcon,
  • Karine Fauria,
  • Juan Domingo Gispert,
  • Oriol Grau-Rivera,
  • Marc Suárez-Calvet,
  • Eider M. Arenaza-Urquijo,
  • Federica Anastasi,
  • Annabella Beteta,
  • Anna Brugulat-Serrat,
  • Raffaele Cacciaglia,
  • Irene Cumplido-Mayoral,
  • Alba Cañas,
  • Marta del Campo,
  • Carme Deulofeu,
  • Ruth Dominguez,
  • Maria Emilio,
  • Ana Fernández-Arcos,
  • Sherezade Fuentes,
  • Patricia Genius,
  • Armand González-Escalante,
  • Laura Hernández,
  • Felipe Hernández-Villamizar,
  • Jordi Huguet,
  • David López-Martos,
  • Ferran Lugo,
  • Paula Marne,
  • Tania Menchón,
  • Carolina Minguillon,
  • Paula Ortiz,
  • Wiesje Pelkmans,
  • Albina Polo,
  • Sandra Pradas,
  • Blanca Rodríguez-Fernández,
  • Gonzalo Sánchez-Benavides,
  • Mahnaz Shekari,
  • Anna Soteras,
  • Laura Stankeviciute,
  • Marc Vilanova,
  • Natalia Vilor-Tejedor

摘要

Glial reactivity may contribute to sex/gender differences in Alzheimer’s disease (AD) pathophysiology. Here, we investigated the differential effect of cerebrospinal fluid (CSF) glial markers on AD pathology and neurodegeneration by sex/gender among cognitively unimpaired older adults at increased risk of developing AD. We included 397 participants from the ALFA+ cohort with CSF Aβ42/40, p-tau181, sTREM2, YKL40, and GFAP, magnetic resonance imaging-based hippocampal volume (n = 299), and amyloid burden (centiloids) measured with [18F] flutemetamol positron emission tomography (n = 341). We ran multiple linear regression models to assess the association between glial markers, AD pathology and hippocampal volumes and their interaction with sex/gender, using False Discovery Rate to correct for multiple comparisons. Glial markers significantly contributed to explain amyloid burden, tau pathology, and hippocampal volumes, beyond age and/or primary AD pathology in a sex/gender-specific manner. Compared to men, women showed increased amyloid burden (centiloids) and CSF p-tau181 with increasing levels of sTREM2 and YKL40, and YKL40 and GFAP, respectively. Compared to women, men with greater tau burden showed lower hippocampal volumes as CSF YKL40 levels increased. Overall, our findings suggest that glial reactivity may contribute to sex/gender differences in AD progression, mostly, downstream amyloid. Further research identifying sex/gender-specific temporal dynamics in AD development is warranted to inform clinical trials.