Departamento de Química, Universidad de Burgos, 09001, Burgos, Spain.
U.O.C. Genetica Medica, Instituto Giannina Gaslini, Genoa, Italy.
Sci Rep. 2018 Feb 8;8(1):2608. doi: 10.1038/s41598-018-20708-3.
Anion selective ionophores, anionophores, are small molecules capable of facilitating the transmembrane transport of anions. Inspired in the structure of natural product prodigiosin, four novel anionophores 1a-d, including a 1,2,3-triazole group, were prepared. These compounds proved highly efficient anion exchangers in model phospholipid liposomes. The changes in the hydrogen bond cleft modified the anion transport selectivity exhibited by these compounds compared to prodigiosin and suppressed the characteristic high toxicity of the natural product. Their activity as anionophores in living cells was studied and chloride efflux and iodine influx from living cells mediated by these derivatives was demonstrated. These compounds were shown to permeabilize cellular membranes to halides with efficiencies close to the natural anion channel CFTR at doses that do not compromise cellular viability. Remarkably, optimal transport efficiency was measured in the presence of pH gradients mimicking those found in the airway epithelia of Cystic Fibrosis patients. These results support the viability of developing small molecule anionophores as anion channel protein surrogates with potential applications in the treatment of conditions such as Cystic Fibrosis derived from the malfunction of natural anion transport mechanisms.
阴离子选择性载体(anionophores)是能够促进阴离子跨膜转运的小分子。受天然产物灵菌红素(prodigiosin)结构的启发,我们制备了四个新型阴离子载体 1a-d,其中包含一个 1,2,3-三唑基团。这些化合物在模型磷脂脂质体中被证明是高效的阴离子交换剂。氢键裂缝的改变改变了这些化合物与灵菌红素相比所表现出的阴离子转运选择性,并抑制了天然产物的特征高毒性。研究了它们在活细胞中作为阴离子载体的活性,并证明了这些衍生物介导的氯离子外排和碘离子内流。这些化合物能够使细胞膜对卤化物的通透性接近天然阴离子通道 CFTR 的效率,而不会损害细胞活力。值得注意的是,在模拟囊性纤维化(Cystic Fibrosis)患者气道上皮中发现的 pH 梯度的存在下,测量到了最佳的转运效率。这些结果支持了开发小分子阴离子载体作为阴离子通道蛋白替代物的可行性,它们可能在治疗囊性纤维化等由于天然阴离子转运机制功能障碍而导致的疾病方面具有应用潜力。