[EN] MULTI-SENSOR ARRAY COMPOUND AND METHODS OF USE THEREOF<br/>[FR] COMPOSÉ DE RÉSEAU MULTICAPTEUR ET SES PROCÉDÉS D'UTILISATION
申请人:YEDA RES & DEV
公开号:WO2014013485A1
公开(公告)日:2014-01-23
The present invention is directed to a multi-sensor array compound including at least three chromophores, at least one receptor and an anchor. Contacting the compound of this invention with an analyte (such as carbohydrate) forms a complex with unique optical signature. The unique optical signature allows differentiating between carbohydrates, diagnosing diseases associated with the carbohydrate, and encoding information in an encoding system.
Multi-sensor array compound and methods of use thereof
申请人:YEDA RESEARCH AND DEVELOPMENT CO.LTD.
公开号:US10017525B2
公开(公告)日:2018-07-10
The present invention is directed to a multi-sensor array compound including at least three chromophores, at least one receptor and an anchor. Contacting the compound of this invention with an analyte (such as carbohydrate) forms a complex with unique optical signature. The unique optical signature allows differentiating between carbohydrates, diagnosing diseases associated with the carbohydrate, and encoding information in an encoding system.
MULTI-SENSOR ARRAY COMPOUND AND METHODS OF USE THEREOF
申请人:YEDA RESEARCH AND DEVELOPMENT CO. LTD.
公开号:US20150232485A1
公开(公告)日:2015-08-20
The present invention is directed to a multi-sensor array compound including at least three chromophores, at least one receptor and an anchor. Contacting the compound of this invention with an analyte (such as carbohydrate) forms a complex with unique optical signature. The unique optical signature allows differentiating between carbohydrates, diagnosing diseases associated with the carbohydrate, and encoding information in an encoding system.
Medication Detection by a Combinatorial Fluorescent Molecular Sensor
作者:Bhimsen Rout、Linor Unger、Gad Armony、Mark A. Iron、David Margulies
DOI:10.1002/anie.201206374
日期:2012.12.7
combining several recognition elements and four fluorescence‐emission channels enabled the identification of a wide range of pharmaceuticals on the basis of distinct photophysical processes. The molecularsensor (see simplified representation; ID=identification) was also used to analyze drug concentrations and combinations in urine samples in a high‐throughput manner.
共同探索真相:分子大小的诊断系统,结合了多个识别元件和四个荧光发射通道,能够根据不同的光物理过程识别多种药物。分子传感器(参见简化表示; ID =标识)还用于以高通量方式分析尿液样品中的药物浓度和组合。
Now available! Farnesylated and carboxymethylated Rheb (see picture) and K‐Ras4B GTPases were synthesized in useful amounts by a combination of expressedproteinligation and solid‐phase lipopeptidesynthesis. The functionality of the proteins was proven by biochemical, biophysical, and cell‐based investigations.