نتایج جستجو برای: 3 formylpyridine 2 boronic acid
تعداد نتایج: 3829023 فیلتر نتایج به سال:
Boronic acids were found to facilitate the transport of various ribonucleosides in and out of liposomes (artificial cells). Most experiments were conducted with large unilamellar vesicles composed of dipalmitoylphosphatidyl choline, cholesterol, and phosphatidic acid in the ratio 20:15:2. Rates of nucleoside efflux were determined by a UV assay, whereas the influx experiments used a radiotracer...
Subcomponent exchange transformed new high-spin FeII4L4 cage 1 into previously-reported low-spin FeII4L4 cage 2: 2-formyl-6-methylpyridine was ejected in favor of the less sterically hindered 2-formylpyridine, with concomitant high- to low-spin transition of the cage's FeII centers. High-spin 1 also reacted more readily with electron-rich anilines than 2, enabling the design of a system consist...
Boronic acids play an important role in the design and synthesis of chemosensors for carbohydrates due to their ability to reversibly bind with diol-containing compounds. Along this line, the availability of boronic acids that change fluorescence upon sugar binding is critical to a successful sensor design effort. Here, two boronic acids that show strong fluorescent intensity changes upon sugar...
With the rapidly increasing interest in the field of glycomics, which is the comprehensive study of the roles carbohydrates play in a living system, urgent need for developing quick and highly selective carbohydrate sensors is growing. The boronic acid group, with its electron-deficient structure (6 valence electrons with an open shell), acts as a Lewis acid with high intrinsic affinity towards...
This research was done in order to investigate the anticancer activity of boronic acid arylidene heterocycles. Boronic acid, heterocycles, and aryl compounds have all independently exhibited various anti-microbial properties and have shown potential to be used in pharmaceuticals for the treatment of viruses and cancers. Using a one-step protocol developed by Dr. Murray, several different arylhe...
In association with increasing diabetes prevalence, it is desirable to develop new glucose sensing systems with low cost, ease of use, high stability and good portability. Boronic acid is one of the potential candidates for a future alternative to enzyme-based glucose sensors. Boronic acid derivatives have been widely used for the sugar recognition motif, because boronic acids bind adjacent dio...
We characterize three new fluorescent probes that show both spectral shifts and intensity changes in the presence of aqueous cyanide, allowing for both excitation and fluorescence emission wavelength ratiometric and colorimetric sensing. The relatively high binding constants of the probes for cyanide enables a distinct colorimetric change to be visually observed with as little as 10 microM cyan...
A simple, efficient and environment-friendly procedure for the synthesis of 5-arylidene rhodanines derivatives via a Knoevenagel type reaction was developed using rhodanine, variety differently substituted aldehydes Na2SO3 as benign catalyst in ethanol. Selected were subjected to basic hydrolysis afford 2-mercapto-3-substituted-acrylic acids. The presence boronic acid group is well tolerated su...
A new saccharides sensor based on the TTF-anthracene dyad with two boronic acid (2) groups was designed and synthesized. This new saccharides sensor shows selectivity towards D-glucose while its analogue with one boronic acid group (1) was reported to bind D-Fructose selectively. Moreover, reaction of compound 2 with uridine induced even larger fluorescence enhancement under the same condition.
background : gram-negative bacteria are the most cause of nosocomial infection especially in burned patients. carbapenem resistant strains can limit seriously the choice of antibiotic therapy. ampc can make resistance to carbapenem and detection of that can be useful for identification of carbapenem resistant. the aim of this study was identification of ampc in most prevalent cause of nosocomia...
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