[EN] SMALL MOLECULES AGAINST CEREBLON TO ENHANCE EFFECTOR T CELL FUNCTION<br/>[FR] PETITES MOLÉCULES DIRIGÉES CONTRE LE CÉRÉBLON POUR AMÉLIORER LA FONCTION DES LYMPHOCYTES T EFFECTEURS
申请人:H LEE MOFFITT CANCER CENTER & RES INST INC
公开号:WO2017161119A1
公开(公告)日:2017-09-21
Disclosed are small molecules against cereblon to enhance effector T cell function. Methodos of making thes molecules and methods of using them to treat various disease states are also disclosed.
ALANYL GLUTAMINE COMPOUND AND PREPARATION METHOD THEREOF
申请人:Tao Linggang
公开号:US20150038740A1
公开(公告)日:2015-02-05
A process for preparing a pure alanylglutamine comprises the steps of: 1) reacting N-(α-chloro)-propionyl-glutamine and hydrazine compound to obtain an alanylglutamine crude product; 2) mixing anhydrous methanol and the alanylglutamine crude product to provide a filter cake; 3) dissolving the filter cake in water, heating, adding ethanol, and cooling to yield the pure alanylglutamine.
Small molecules against cereblon to enhance effector t cell function
申请人:H. LEE MOFFITT CANCER CENTER AND RESEARCH INSTITUTE, INC.
公开号:US11395820B2
公开(公告)日:2022-07-26
Disclosed are small molecules against cereblon to enhance effector T cell function. Methods of making these molecules and methods of using them to treat various disease states are also disclosed.
所公开的是抗脑龙的小分子,可增强效应 T 细胞的功能。还公开了制造这些分子的方法以及用它们治疗各种疾病的方法。
Analytical system based upon spore germination
申请人:——
公开号:US20030008337A1
公开(公告)日:2003-01-09
An analytical system for rapid detection and identification of different analytes directly from a test sample by mixing test material with a germinogenic source and enzyme-free spores, allowing the mixture to stand for a time to allow analyte-induced spore germination and subsequent de novo activity of an enzyme capable of producing a germinant in the presence of the germinogenic source and detecting the presence of a germination-derived product. The germinant which is formed promotes further spore germination with concomitant additional de novo enzyme synthesis or activation which results in a propagating cascade of analyte-independent germination after which a germination-derived product can be easily detected. The technique is particularly efficient to conduct thousands of parallel assays in an array of microscopic wells.