化学
活性氧
氧化应激
生物物理学
硫黄素
荧光
苯并噻唑
淀粉样蛋白(真菌学)
β淀粉样蛋白
生物化学
阿尔茨海默病
生物
肽
无机化学
病理
物理
医学
疾病
量子力学
作者
Prabir Kumar Gharai,Juhee Khan,Rathnam Mallesh,Shubham Garg,Abhijit Saha,Subhajit Ghosh,Surajit Ghosh,Surajit Ghosh,Surajit Ghosh
标识
DOI:10.1021/acschemneuro.2c00771
摘要
The misfolding of amyloid beta (Aβ) peptides into Aβ fibrillary aggregates is a major hallmark of Alzheimer's disease (AD), which responsible for the excess production of hydrogen peroxide (H2O2), a prominent reactive oxygen species (ROS) from the molecular oxygen (O2) by the reduction of the Aβ-Cu(I) complex. The excessive production of H2O2 causes oxidative stress and inflammation in the AD brain. Here, we have designed and developed a dual functionalized molecule VBD by using π-conjugation (C═C) in the backbone structure. In the presence of H2O2, the VBD can turn into fluorescent probe VBD-1 by cleaving of the selective boronate ester group. The fluorescent probe VBD-1 can undergo intramolecular charge transfer transition (ICT) by a π-conjugative system, and as a result, its emission increases from the yellow (532 nm) to red (590 nm) region. The fluorescence intensity of VBD-1 increases by 3.5-fold upon binding with Aβ fibrillary aggregates with a high affinity (Kd = 143 ± 12 nM). Finally, the VBD reduces the cellular toxic H2O2 as proven by the CCA assay and DCFDA assay and the binding affinity of VBD-1 was confirmed by using in vitro histological staining in 8- and 18-month-old triple transgenic AD (3xTg-AD) mice brain slices.
科研通智能强力驱动
Strongly Powered by AbleSci AI