343604-17-1Relevant academic research and scientific papers
Beta-amyloid protein targeting fluorescent probe, preparation and application of beta-amyloid protein targeting fluorescent probe in Alzheimer's disease
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Paragraph 0109; 0263-0264, (2021/06/09)
The invention discloses a beta-amyloid protein targeting fluorescent probe, preparation and application of the beta-amyloid protein targeting fluorescent probe in Alzheimer's disease. The structural formula of the fluorescent probe is as shown in formula I in the specification. The fluorescent probe disclosed by the invention is a compound taking 6-dimethylamino-1-methylquinoline as a parent structure, and the fluorescent probe has the advantages of long emission wavelength, large Stock shift, capability of specifically detecting beta amyloid protein, sensitivity to viscosity in tissue cells, and good response to the viscosity. After the fluorescent probe is combined with beta amyloid protein in the brain of a patient suffering from the Alzheimer's disease, a fluorescence signal is obviously enhanced, and the fluorescent probe can be used for detecting the beta amyloid protein and early diagnosing the Alzheimer's disease and has important guiding significance on development of diagnosis and treatment probes of the Alzheimer's disease.
Design, synthesis and evaluation of phenylthiazole and phenylthiophene pyrimidindiamine derivatives targeting the bacterial membrane
Chen, Yihua,Fan, Tingting,Guo, Weikai,Hu, Pan,Liu, Mingyao,Shao, Ting,Yi, Zhengfang,Zhou, Wenbo
, (2020/02/20)
As the continuous rise in the incidence of antibiotic resistance, it is urgent to develop novel chemical scaffolds with antibacterial activities to control the spread of resistance to conventional antibiotics. In this study, a series of phenylthiazole and
Metal-Free Aerobic Oxidative Selective C-C Bond Cleavage in Heteroaryl-Containing Primary and Secondary Alcohols
Xia, Anjie,Qi, Xueyu,Mao, Xin,Wu, Xiaoai,Yang, Xin,Zhang, Rong,Xiang, Zhiyu,Lian, Zhong,Chen, Yingchun,Yang, Shengyong
supporting information, (2019/05/07)
A transition-metal-free aerobic oxidative selective C-C bond-cleavage reaction in primary and secondary heteroaryl alcohols is reported. This reaction was highly efficient and tolerated various heteroaryl alcohols, generating a carboxylic acid derivative and a neutral heteroaromatic compound. Experimental studies combined with density functional theory calculations revealed the mechanism underlying the selective C-C bond cleavage. This strategy also provides an alternative simple approach to carboxylation reaction.
Bulky α-diimine palladium complexes: Highly efficient for direct C-H bond arylation of heteroarenes under aerobic conditions
Ouyang, Jia-Sheng,Li, Yan-Fang,Shen, Dong-Sheng,Ke, Zhuofeng,Liu, Feng-Shou
, p. 14919 - 14927 (2016/10/11)
Through the strategy to enhance the bulkiness on both the backbone and the N-aryl moieties, we designed and synthesized a type of bulky α-diimine palladium complex (i.e., {[Ar-NC(R)-C(R)N-Ar]PdCl2, (Ar = 2-benzhydryl-4,6-dimethylphenyl)}, C1, R = H; C2, R = An; C3, R = Ph). The structures of these palladium complexes were well characterized, while C1 and C3 were further characterized by X-ray diffraction. The catalytic performances of the precatalysts were screened for direct C-H bond arylation of heteroarenes. The bidentate N,N-palladium complex C3 with both a backbone and N-aryl bulkiness was found to be a highly efficient precatalyst under aerobic conditions. With a low palladium loading of 0.5-0.1 mol%, a variety of heteroarenes with challenging bulky steric aryl bromides as well as heteroaryl bromides are all applicable for this cross-coupling reaction.
Ligand-less palladium-catalyzed direct 5-arylation of thiophenes at low catalyst loadings
Roger, Julien,Pozgan, Franc,Doucet, Henri
experimental part, p. 425 - 432 (2010/04/22)
Ligand-less Pd(OAc)2 provides a very efficient catalyst for the direct 5-arylation of thiophene derivatives. With this catalyst, a low palladium concentration (0.1-0.001 mol%) should be employed in order to obtain high yields of coupling products. At higher concentrations a fast formation of inactive "Pd black" generally occurs. Substrates/catalysts ratios up to 100000 can be employed with the most reactive aryl bromides. A very wide variety of functional groups is tolerated on both coupling partners. The major waste of this reaction is HBr associated with KOAc. Therefore this procedure is more economically and environmentally attractive than the traditional cross-coupling procedures employing organometallic derivatives.
