[EN] SPLICEOSTATIN ANALOGS<br/>[FR] ANALOGUES DE SPLICÉOSTATINE
申请人:PFIZER
公开号:WO2014068443A1
公开(公告)日:2014-05-08
The present invention is directed to novel cytotoxic spliceostatin analogs (I) and derivatives, to antibody drug conjugates thereof, and to methods for using the same to treat medical conditions including cancer.
A Bifunctional Spin Label for Ligand Recognition on Surfaces
作者:Michael A. Hollas、Simon J. Webb、Sabine L. Flitsch、Alistair J. Fielding
DOI:10.1002/anie.201703929
日期:2017.8.1
paramagnetic resonance (EPR) of biomolecules spin-labeled with nitroxides can offer uniquely sensitive and selective insights into these processes, but new spin-labeling strategies are needed. The synthesis and study of a bromoacrylaldehyde spin label (BASL), which features two attachment points with orthogonal reactivity is reported. The firstexamples of mannose and biotin ligands coupled to aqueous carboxy-functionalized
HEPARAN SULFATE/HEPARIN MIMETICS WITH ANTI-CHEMOKINE AND ANTI-INFLAMMATORY ACTIVITY
申请人:California Institute of Technology
公开号:US20150038455A1
公开(公告)日:2015-02-05
The present disclosure provides for methods and compositions comprising a series of synthetic glycopolymers. The disclosure also relates to a kit which is suitable for carrying out the inventive methods.
本公开提供了一系列合成糖聚合物的方法和组合物。该公开还涉及一种适用于执行创新方法的试剂盒。
TAILORED GLYCOPOLYMERS AS ANTICOAGULANT HEPARIN MIMETICS
申请人:California Institute of Technology
公开号:US20150038436A1
公开(公告)日:2015-02-05
The present disclosure provides for methods and compositions comprising a series of synthetic glycopolymers. The disclosure also relates to a kit which is suitable for carrying out the inventive methods.
本公开提供了一系列合成糖聚合物的方法和组合物。该公开还涉及一种适用于实施创新方法的试剂盒。
Bioreponsive Polymers
申请人:Laronde Frank
公开号:US20100041771A1
公开(公告)日:2010-02-18
The invention features biodegradable polymers for the delivery of biologically active agents. The polymers include at least one biologically active agent covalently attached via a polyamide linker susceptible to selective hydrolysis by peptidase enzymes. Hydrolysis of the polyamide linker releases the biologically active agent in vivo.