紧身衣
亲脂性
荧光团
碳硼烷
薗头偶联反应
化学
分配系数
荧光
赫拉
硼
生物物理学
组合化学
立体化学
细胞
生物化学
有机化学
催化作用
钯
物理
量子力学
生物
作者
Pablo Labra‐Vázquez,Ricardo Flores‐Cruz,Aylin Galindo‐Hernández,Justo Cabrera‐González,Cristian Guzmán‐Cedillo,Arturo Jiménez‐Sánchez,Pascal G. Lacroix,Rosa Santillán,Norberto Farfán,Rosario Núñez
标识
DOI:10.1002/chem.202002600
摘要
Abstract A set of BODIPY‐carboranyl dyads synthesized by a Sonogashira cross‐coupling reaction, where different C‐substituted ortho ‐ and meta ‐carboranyl fragments have been linked to a BODIPY fluorophore is described. Chemical, photophysical and physicochemical analyses are presented, including NMR and single XRD experiments, optical absorption/emission studies and partition coefficient (log P ) measurements. These studies, supported by DFT computations (M06‐2X/6‐31G**), provide an explanation to the largely divergent cell income that these fluorescent carboranyl‐based fluorophores display, for which a structural or physicochemical explanation remains elusive. By studying the cell uptake efficiency and subcellular localization for our set of dyads on living HeLa cells, we tracked the origins of these differences to significant variations in their static dipole moments and partition coefficients, which tune their ability to interact with lipophilic microenvironments in cells. Remarkably, m ‐carboranyl‐BODIPY derivatives with a higher lipophilicity are much better internalised by cells than their homologous with o ‐carborane, suggesting that m ‐isomers are potentially better theranostic agents for in vitro bioimaging and boron carriers for boron neutron capture therapy.
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