日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Microglial heterogeneity: influence of human 2D, 3D, and co-culture models on gene expression and immune function

小胶质细胞异质性:人2D、3D和共培养模型对基因表达和免疫功能的影响

Etebar, Fazeleh; White, Anthony R; Quek, Hazel

Drug repurposing candidates for amyotrophic lateral sclerosis using common and rare genetic variants

利用常见和罕见基因变异对肌萎缩侧索硬化症的候选药物进行再利用

Gerring, Zachary F; Bhalala, Oneil G; Fearnley, Liam G; Oikari, Lotta E; White, Anthony R; Derks, Eske M; Watson, Rosie; Yassi, Nawaf; Bahlo, Melanie; Reay, William R

The Role of Air Pollution and Olfactory Dysfunction in Alzheimer's Disease Pathogenesis

空气污染和嗅觉功能障碍在阿尔茨海默病发病机制中的作用

Odendaal, Louise; Quek, Hazel; Cuní-López, Carla; White, Anthony R; Stewart, Romal

A patient-derived amyotrophic lateral sclerosis blood-brain barrier model for focused ultrasound-mediated anti-TDP-43 antibody delivery.

患者来源的肌萎缩侧索硬化症血脑屏障模型用于聚焦超声介导的抗TDP-43抗体递送

Wasielewska Joanna M, Chaves Juliana C S, Cabral-da-Silva Mauricio Castro, Pecoraro Martina, Viljoen Stephani J, Nguyen Tam Hong, Bella Vincenzo La, Oikari Lotta E, Ooi Lezanne, White Anthony R

Non-invasive in vivo imaging of brain and retinal microglia in neurodegenerative diseases

神经退行性疾病中脑和视网膜小胶质细胞的非侵入性体内成像

Etebar, Fazeleh; Harkin, Damien G; White, Anthony R; Dando, Samantha J

Ferroptosis drives immune-mediated neurodegeneration in multiple sclerosis

铁死亡驱动多发性硬化症中的免疫介导性神经退行性变

White, Anthony R

Patient-specific monocyte-derived microglia as a screening tool for neurodegenerative diseases

患者特异性单核细胞来源的小胶质细胞作为神经退行性疾病的筛查工具

Quek, Hazel; White, Anthony R

Recent Advances in Microglia Modelling to Address Translational Outcomes in Neurodegenerative Diseases

小胶质细胞模型在解决神经退行性疾病转化研究方面的最新进展

Cuní-López, Carla; Stewart, Romal; Quek, Hazel; White, Anthony R

Increased iron content in the heart of the Fmr1 knockout mouse

Fmr1基因敲除小鼠心脏中铁含量增加

Talvio, Karo; Kanninen, Katja M; White, Anthony R; Koistinaho, Jari; Castrén, Maija L

Cu(II)(atsm) improves the neurological phenotype and survival of SOD1(G93A) mice and selectively increases enzymatically active SOD1 in the spinal cord

Cu(II)(atsm)可改善SOD1(G93A)小鼠的神经表型和存活率,并选择性地增加脊髓中具有酶活性的SOD1。

Hilton, James B; Mercer, Stephen W; Lim, Nastasia K H; Faux, Noel G; Buncic, Gojko; Beckman, Joseph S; Roberts, Blaine R; Donnelly, Paul S; White, Anthony R; Crouch, Peter J