62748-45-2Relevant academic research and scientific papers
Design, synthesis and evaluation of scutellarein-O-acetamidoalkylbenzylamines as potential multifunctional agents for the treatment of Alzheimer's disease
Sang, Zhipei,Qiang, Xiaoming,Li, Yan,Xu, Rui,Cao, Zhongcheng,Song, Qing,Wang, Ting,Zhang, Xiaoyu,Liu, Hongyan,Tan, Zhenghuai,Deng, Yong
, p. 307 - 323 (2017/05/01)
A series of scutellarein-O-acetamidoalkylbenzylamines derivatives were designed based on a multitarget-directed ligands strategy for the treatment of Alzheimer's disease. Among these compounds, compound T-22 demonstrated excellent acetylcholinesterase inhibitory, moderate inhibitory effects on self-induced Aβ1-42 aggregation, Cu2+-induced Aβ1-42 aggregation, human AChE-induced Aβ1-40 aggregation and disassembled Cu2+-induced aggregation of the well-structured Aβ1-42 fibrils, and also acted as potential antioxidant and biometals chelator. Both kinetic analysis of AChE inhibition and molecular modeling study suggested that T-22 interacted with both the catalytic active site and peripheral anionic site of AChE. Moreover, compound T-22 showed a good neuroprotective effect against H2O2-induced PC12?cell injury and low toxicity in SH-SY5Y cells. Furthermore, the step-down passive avoidance test indicated T-22 significantly reversed scopolamine-induced memory deficit in mice. Taken together, the data showed that T-22 was an interesting multifunctional lead compound worthy of further study for AD.
Pterostilbene-O-acetamidoalkylbenzylamines derivatives as novel dual inhibitors of cholinesterase with anti-β-amyloid aggregation and antioxidant properties for the treatment of Alzheimer's disease
Li, Yuxing,Qiang, Xiaoming,Li, Yan,Yang, Xia,Luo, Li,Xiao, Ganyuan,Cao, Zhongcheng,Tan, Zhenghuai,Deng, Yong
supporting information, p. 2035 - 2039 (2016/04/05)
A series of pterostilbene-O-acetamidoalkylbenzylamines were designed, synthesized and evaluated as dual inhibitors of AChE and BuChE. To further explore the multifunctional properties of the new derivatives, their antioxidant activities and inhibitory effects on self-induced Aβ1-42 aggregation and HuAChE-induced Aβ1-40 aggregation were also tested. The results showed that most of these compounds could effectively inhibit AChE and BuChE. Particularly, compound 21d exhibited the best AChE inhibitory activity (IC50 = 0.06 μM) and good inhibition of BuChE (IC50 = 28.04 μM). Both the inhibition kinetic analysis and molecular modeling study revealed that these compounds showed mixed-type inhibition, binding simultaneously to the CAS and PAS of AChE. In addition to cholinesterase inhibitory activities, these compounds showed different levels of antioxidant activity. However, the inhibitory activities against self-induced and HuAChE-induced Aβ aggregation of these new derivatives were unsatisfied. Taking into account the results of the biological evaluation, further modifications will be designed in order to increase the potency on the different targets. The results displayed in this Letter can be a new starting point for further development of multifunctional agents for Alzheimer's disease.
Novel class of quinone-bearing polyamines as multi-target-directed ligands to combat Alzheimer's disease
Bolognesi, Maria Laura,Banzi, Rita,Bartolini, Manuela,Cavalli, Andrea,Tarozzi, Andrea,Andrisano, Vincenza,Minarini, Anna,Rosini, Michela,Tumiatti, Vincenzo,Bergamini, Christian,Fato, Romana,Lenaz, Giorgio,Hrelia, Patrizia,Cattaneo, Antonino,Recanatini, Maurizio,Melchiorre, Carlo
, p. 4882 - 4897 (2008/03/11)
One of the characteristics of Alzheimer's disease (AD) that hinders the discovery of effective disease-modifying therapies is the multifactorial nature of its etiopathology. To circumvent this drawback, the use of multi-target-directed ligands (MTDLs) has
Useful for treating neuropraxia Alzheimer 2, 5-BIS-Dimamine-[ 1, 4] Benzoquinonimine derivative, and a method for manufacturing the same, and a method for manufacturing the intermediate body
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Page/Page column 27, (2008/06/13)
2,5-bis-diamine-[1,4]benzoquinonic derivatives, having a general formula (I) have proved useful for the treatment of Alzheimer's disease; a method for preparing them and intermediates used in said method are also described.
Design, synthesis and biological evaluation of ambenonium derivatives as AChE inhibitors
Bolognesi, Maria Laura,Cavalli, Andrea,Andrisano, Vincenza,Bartolini, Manuela,Banzi, Rita,Antonello, Alessandra,Rosini, Michela,Melchiorre, Carlo
, p. 917 - 928 (2007/10/03)
Ambenonium (1), an old AChE inhibitor, is endowed with an outstanding affinity and a peculiar mechanism of action that, taken together, make it a very promising pharmacological tool for the treatment of Alzheimer's disease (AD). Unfortunately, the bisquaternary structure of 1 prevents its passage through the blood brain barrier. In a search of centrally active ambenonium derivatives, we planned to synthesize tertiary amines of 1, such as 2 and 3. In addition, to add new insights into the binding mechanism of the inhibitor, we designed constrained analogues of ambenonium by incorporating the diamine functions into cyclic moieties (4-12). The biological evaluation of the new compounds has been assessed in vitro against human AChE and BChE. All tertiary amine derivatives resulted more than 1000-fold less potent than 1 and, unlike prototype, did not show any selectivity between the two enzymes. This result, because of recent findings concerning the role of BChE in AD, makes our compounds, endowed with a well-balanced profile of AChE/BChE inhibition, valuable candidates for further development. To better clarify the interactions that account for the high affinity of 1, docking simulations and molecular dynamics studies on the AChE-1 complex were also carried out.
