Li Yinhui, Xu Di, Sun Anyang, Ho See-Lok, Poon Chung-Yan, Chan Hei-Nga, Ng Olivia T W, Yung Ken K L, Yan Hui, Li Hung-Wing, Wong Man Shing
Key Laboratory for Green Organic Synthesis and Application of Hunan Province , Key Laboratory of Environmentally Friendly Chemistry , Application of Ministry of Education , College of Chemistry , Xiangtan University , Xiangtan , 411105 , China.
Department of Chemistry , Hong Kong Baptist University , Kowloon Tong , Hong Kong SAR , China . Email:
Chem Sci. 2017 Dec 1;8(12):8279-8284. doi: 10.1039/c7sc03974c. Epub 2017 Oct 9.
Alzheimer's disease (AD) is the most prevalent but still incurable neurodegenerative form of dementia. Early diagnosis and intervention are crucial for delaying the onset and progression of the disease. We herein report a novel fluoro-substituted cyanine, F-SLOH, which exhibits good Aβ oligomer selectivity with a high binding affinity, attributed to the synergistic effect of strong π-π stacking and intermolecular CH···O and CH···F interactions. The selectivity towards the Aβ oligomers in the brain was ascertained by labelling on tissue sections and labelling through the systemic administration of F-SLOH in 7 month APP/PS1 double transgenic (Tg) and APP/PS1/Tau triple Tg mouse models. F-SLOH also shows remarkably effective inhibition on Aβ aggregation and highly desirable neuroprotective effects against Aβ-induced toxicities, including the inhibition of ROS production and Ca influx. Its excellent blood-brain barrier (BBB) penetrability and low bio-toxicity further support its tremendous potential as a novel theranostic agent for both early diagnosis and therapy of AD.
阿尔茨海默病(AD)是最常见但仍无法治愈的神经退行性痴呆形式。早期诊断和干预对于延缓疾病的发作和进展至关重要。我们在此报告一种新型的氟取代花菁F-SLOH,它对Aβ寡聚体具有良好的选择性和高结合亲和力,这归因于强π-π堆积以及分子间CH···O和CH···F相互作用的协同效应。通过在组织切片上标记以及在7月龄APP/PS1双转基因(Tg)和APP/PS1/Tau三转基因小鼠模型中通过全身给药F-SLOH来确定其对大脑中Aβ寡聚体的选择性。F-SLOH还对Aβ聚集表现出显著有效的抑制作用,并且对Aβ诱导的毒性具有非常理想的神经保护作用,包括抑制活性氧生成和钙内流。其出色的血脑屏障(BBB)通透性和低生物毒性进一步支持了其作为AD早期诊断和治疗新型治疗诊断剂的巨大潜力。