Adhikari Birendra Babu, Fujii Ayu, Schramm Michael P
Department of Chemistry and Biochemistry, University Long Beach,, 1250 Bellflower Blvd., Long Beach, CA 90840, USA: http://schrammlab.wordpress.com.
European J Org Chem. 2014 May 1;2014(14):2972-2979. doi: 10.1002/ejoc.201400025.
A series of supramolecular calixarenes efficiently transport distinct molecular species through a liquid membrane when attached to a receptor-complementary choline handle. Calix-[6]arene hexacarboxylic acid was highly effective at transporting different target molecules against a pH gradient. Both carboxylic- and phosphonic-acid-functionalized calix[4]arenes effect transport without requiring a pH or ion gradient. NMR binding studies, two-phase solvent extraction, and three-phase transport experiments reveal the necessary and subtle parameters to effect the transport of molecules attached to a choline "handle". On the other hand, rescorin[4]arene cavitands, which have similar guest recognition profiles, did not transport guest molecules. These developments reveal new approaches towards attempting synthetic-receptor-mediated selective small-molecule transport in vesicular and cellular systems.
当与受体互补的胆碱柄相连时,一系列超分子杯芳烃能有效地通过液膜转运不同的分子物种。杯[6]芳烃六羧酸在逆pH梯度转运不同靶分子方面非常有效。羧酸和膦酸功能化的杯[4]芳烃在不需要pH或离子梯度的情况下就能实现转运。核磁共振结合研究、两相溶剂萃取和三相转运实验揭示了影响连接在胆碱“柄”上的分子转运的必要且微妙的参数。另一方面,具有相似客体识别特征的间苯二酚[4]芳烃穴状配体却不能转运客体分子。这些进展揭示了在囊泡和细胞系统中尝试进行合成受体介导的选择性小分子转运的新方法。