Di-platinum complexes containing thiolato-urea ligands: structural and anion binding studies
作者:Carolina Mendoza、Jordi Benet-Buchholz、Miquel A. Pericás、Ramón Vilar
DOI:10.1039/b819612e
日期:——
thiolato-bridged complexes [(dppp)Ptmicro-S(CH(2))(n)NHC([double bond, length as m-dash]O)NHR}](2)(OTf)(2) (n = 2, 3; R = Et, Ph) have been synthesized. The X-ray crystal structures of three of these complexes have confirmed their formulation and highlighted the ability of the urea groups on the thiolato bridges to display hydrogen bonding interactions with anions. The binding of anions by these receptors
Rapid Assembly of a Library of Lipophilic Iminosugars via the Thiol–Ene Reaction Yields Promising Pharmacological Chaperones for the Treatment of Gaucher Disease
作者:Ethan D. Goddard-Borger、Michael B. Tropak、Sayuri Yonekawa、Christina Tysoe、Don J. Mahuran、Stephen G. Withers
DOI:10.1021/jm201633y
日期:2012.3.22
denaturation by up to 20 K. Cell based assays conducted on Gaucherdisease patient derived fibroblasts demonstrated that administration of the compounds can increase lysosomal glucocerebrosidase activity levels by therapeutically relevant amounts, as much as 3.2-fold in cells homozygous for the p.N370S mutation and 1.4-fold in cells homozygous for the p.L444P mutation. Several compounds elicited this increase
[EN] beta-GLUCOCEREBROSIDASE CHAPERONES<br/>[FR] CHAPERONS MOLÉCULAIRES DE Beta-GLUCOCÉRÉBROSIDASE
申请人:HOSPITAL FOR SICK CHILDREN
公开号:WO2013075227A1
公开(公告)日:2013-05-30
The present application relates to compounds of the Formula (I): which are useful or the treatment of diseases in which the wild type or a mutant form of the enzyme β-glucocerebrosidase is implicated.
本申请涉及式(I)的化合物,这些化合物对于治疗涉及野生型或突变型酶β-葡糖苷酶的疾病是有用的。
Block copolymers and self-assembling nanoparticles formed therefrom
申请人:International Business Machines Corporation
公开号:US10376468B2
公开(公告)日:2019-08-13
The subject matter of this invention relates to block copolymers (BCPs) and, more particularly, to block copolymers capable of self-assembly into nanoparticles for the delivery of hydrophobic cargos. The BCPs include a hydrophobic block that contains a thioether functional group that is susceptible to oxidation, transforming the solubility of the block from hydrophobic to hydrophilic, thereby releasing the hydrophobic cargo of the nanoparticle.