Early life high fructose exposure disrupts microglia function and impedes neurodevelopment

果糖 小胶质细胞 突触修剪 体内 生物 内分泌学 内科学 医学 生物化学 炎症 生物技术
作者
Zhaoquan Wang,Allie Lipshutz,Zong-Lin Liu,Alissa Trzeciak,Isabella C. Miranda,Celia Martinez de la Torre,Tanya Schild,Tomi Lazarov,Waleska Saitz Rojas,Pedro Saavedra,Jesús E. Romero-Pichardo,Ann Baako,Frédéric Geissmann,Giuseppe Faraco,Li Gan,Jon Iker Etchegaray,Christopher D. Lucas,Christopher N. Parkhurst,Melody Y. Zeng,Kayvan R. Keshari
出处
期刊: [Cold Spring Harbor Laboratory]
被引量:6
标识
DOI:10.1101/2023.08.14.553242
摘要

Abstract Despite the success of fructose as a low-cost food additive, recent epidemiological evidence suggests that high fructose consumption by pregnant mothers or during adolescence is associated with disrupted neurodevelopment 1–7 . An essential step in appropriate mammalian neurodevelopment is the synaptic pruning and elimination of newly-formed neurons by microglia, the central nervous system’s (CNS) resident professional phagocyte 8–10 . Whether early life high fructose consumption affects microglia function and if this directly impacts neurodevelopment remains unknown. Here, we show that both offspring born to dams fed a high fructose diet and neonates exposed to high fructose exhibit decreased microglial density, increased uncleared apoptotic cells, and decreased synaptic pruning in vivo . Importantly, deletion of the high affinity fructose transporter SLC2A5 (GLUT5) in neonates completely reversed microglia dysfunction, suggesting that high fructose directly affects neonatal development. Mechanistically, we found that high fructose treatment of both mouse and human microglia suppresses synaptic pruning and phagocytosis capacity which is fully reversed in GLUT5-deficient microglia. Using a combination of in vivo and in vitro nuclear magnetic resonance- and mass spectrometry-based fructose tracing, we found that high fructose drives significant GLUT5-dependent fructose uptake and catabolism, rewiring microglia metabolism towards a hypo-phagocytic state. Importantly, mice exposed to high fructose as neonates exhibited cognitive defects and developed anxiety-like behavior which were rescued in GLUT5-deficient animals. Our findings provide a mechanistic explanation for the epidemiological observation that early life high fructose exposure is associated with increased prevalence of adolescent anxiety disorders.
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