School of Science, Constructor University, Campus Ring 1, 28759 Bremen, Germany.
Institute of Inorganic Chemistry, Czech Academy of Sciences, v.v.i. Hlavní 1001, CZ-250 68 Řež, Czech Republic.
J Am Chem Soc. 2023 Jun 21;145(24):13089-13098. doi: 10.1021/jacs.3c01623. Epub 2023 Jun 2.
Cobalt bisdicarbollides (COSANs) are inorganic boron-based anions that have been previously reported to permeate by themselves through lipid bilayer membranes, a propensity that is related to their superchaotropic character. We now introduce their use as selective and efficient molecular carriers of otherwise impermeable hydrophilic oligopeptides through both artificial and cellular membranes, without causing membrane lysis or poration at low micromolar carrier concentrations. COSANs transport not only arginine-rich but also lysine-rich peptides, whereas low-molecular-weight analytes such as amino acids as well as neutral and anionic cargos (phalloidin and BSA) are not transported. In addition to the unsubstituted isomers (known as - and -COSAN), four derivatives bearing organic substituents or halogen atoms have been evaluated, and all six of them surpass established carriers such as pyrenebutyrate in terms of activity. U-tube experiments and black lipid membrane conductance measurements establish that the transport across model membranes is mediated by a molecular carrier mechanism. Transport experiments in living cells showed that a fluorescent peptide cargo, FITC-Arg, is delivered into the cytosol.
钴双(二硼烷)(COSANs)是一种无机硼基阴离子,此前有报道称其能够自行穿透脂质双层膜,这种特性与它们的超亲油性有关。我们现在将其用作选择性和高效的分子载体,用于转运原本不可渗透的亲水性寡肽,即使在低微摩尔载体浓度下也不会导致膜裂解或穿孔。COSANs 不仅可以转运富含精氨酸的肽,还可以转运富含赖氨酸的肽,而低分子量的分析物(如氨基酸)以及中性和阴离子载物(鬼笔环肽和 BSA)则不能被转运。除了未取代的异构体(称为 - 和 -COSAN)外,我们还评估了四个带有有机取代基或卤素原子的衍生物,所有这六种衍生物在活性方面都超过了已有的载体,如吡喃丁酸酯。U 型管实验和黑质脂质膜电导率测量确立了穿过模型膜的转运是由分子载体机制介导的。在活细胞中的转运实验表明,荧光肽货物 FITC-Arg 被递送到细胞质中。