化学
小岛
荧光
胰淀素
硫黄素
淀粉样蛋白(真菌学)
生物物理学
纤维
生物化学
糖尿病
内分泌学
病理
物理
无机化学
生物
阿尔茨海默病
医学
量子力学
疾病
作者
Pin‐Han Lin,Chang-Shun Tsai,Chia-Chien Hsu,I‐Ren Lee,Yuxin Shen,Hsiu‐Fang Fan,Yun-Wen Chen,Ling‐Hsien Tu,Wei‐Min Liu
出处
期刊:Talanta
[Elsevier BV]
日期:2022-11-24
卷期号:254: 124130-124130
被引量:9
标识
DOI:10.1016/j.talanta.2022.124130
摘要
The deposits of human islet amyloid polypeptide (IAPP), also called amylin, in the pancreas have been postulated to be a factor of pancreatic β-cell dysfunction and is one of the common pathological hallmarks of type II diabetes mellitus (T2DM). Therefore, it is imperative to gain an in-depth understanding of the formation of these aggregates. In this study, we demonstrate a rationally-designed strategy of an environmentally sensitive near-infrared (NIR) molecular rotor utilizing thioflavin T (ThT) as a scaffold for IAPP deposits. We extended the π delocalized system not only to improve the viscosity sensitivity but also to prolong the emission wavelength to the NIR region. A naphthalene moiety was also introduced to adjust the sensitivity of our designed probes to differentiate the binding microenvironment polarity of different targeted proteins. As a result, a novel NIR fluorogenic probe toward IAPP aggregates, namely AmySP-4-Nap-Ene, was first developed. When attached to different protein aggregates, this probe exhibited distinct fluorescence emission profiles. In a comparison with ThT, the fluorescence emission of non-ionic AmySP-4-Nap-Ene exhibits a significant difference between the presence of non-fibrillar and fibrillar IAPP and displays a higher binding affinity toward IAPP fibrils. Further, the AmySP-4-Nap-Ene can be utilized to monitor IAPP accumulating process and image fibrils both in vitro and in living cells.
科研通智能强力驱动
Strongly Powered by AbleSci AI