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

A personalised and comprehensive approach is required to suppress or replenish SNCA for Parkinson's disease

帕金森病需要采用个性化和综合性的方法来抑制或补充SNCA。

Li, Dunhui; Yau, Wai Yan; Chen, Shengdi; Wilton, Steve; Mastaglia, Frank

Mental health outcomes and rehabilitation challenges in children with orthopedic trauma: a public health survey from a pediatric rehabilitation center

骨科创伤患儿的心理健康状况及康复挑战:来自儿科康复中心的一项公共卫生调查

Zheng, Shuyue; Cheng, Lijie; Zhao, Xiaoyu; Fang, Jihong; Li, Dunhui; Wu, Fengqin

Controversies and insights into PTBP1-related astrocyte-neuron transdifferentiation: neuronal regeneration strategies for Parkinson's and Alzheimer's disease

PTBP1相关星形胶质细胞-神经元转分化的争议与见解:帕金森病和阿尔茨海默病的神经元再生策略

McDowall, Simon; Bagda, Vaishali; Hodgetts, Stuart; Mastaglia, Frank; Li, Dunhui

Antisense oligonucleotides and their applications in rare neurological diseases

反义寡核苷酸及其在罕见神经系统疾病中的应用

McDowall, Simon; Aung-Htut, May; Wilton, Steve; Li, Dunhui

Targeted Molecular Therapeutics for Parkinson's Disease: A Role for Antisense Oligonucleotides?

帕金森病靶向分子疗法:反义寡核苷酸的作用?

Li, Dunhui; Mastaglia, Frank L; Yau, Wai Yan; Chen, Shengdi; Wilton, Steve D; Akkari, Patrick A

Neurodegenerative diseases: a hotbed for splicing defects and the potential therapies

神经退行性疾病:剪接缺陷的温床及其潜在疗法

Li, Dunhui; McIntosh, Craig Stewart; Mastaglia, Frank Louis; Wilton, Steve Donald; Aung-Htut, May Thandar

Pyrimidine Biosynthetic Enzyme CAD: Its Function, Regulation, and Diagnostic Potential

嘧啶生物合成酶CAD:其功能、调控和诊断潜力

Li, Guanya; Li, Dunhui; Wang, Tao; He, Shanping

Polyglutamine Ataxias: Our Current Molecular Understanding and What the Future Holds for Antisense Therapies

多聚谷氨酰胺共济失调:我们目前的分子机制理解以及反义疗法的未来展望

McIntosh, Craig S; Li, Dunhui; Wilton, Steve D; Aung-Htut, May T

Progress in the molecular pathogenesis and nucleic acid therapeutics for Parkinson's disease in the precision medicine era

精准医疗时代帕金森病分子发病机制和核酸疗法的研究进展

Li, Dunhui; Mastaglia, Frank L; Fletcher, Sue; Wilton, Steve D

Morpholino Oligomer-Induced Dystrophin Isoforms to Map the Functional Domains in the Dystrophin Protein.

利用吗啉代寡聚体诱导的肌营养不良蛋白亚型来绘制肌营养不良蛋白的功能域

Li Dunhui, Adams Abbie M, Johnsen Russell D, Fletcher Susan, Wilton Steve D