首页> 美国卫生研究院文献>other >Synthesis Physicochemical Properties and In Vitro Cytotoxicity of Nicotinic Acid Ester Prodrugs Intended for Pulmonary Delivery Using Perfluorooctyl Bromide as Vehicle
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Synthesis Physicochemical Properties and In Vitro Cytotoxicity of Nicotinic Acid Ester Prodrugs Intended for Pulmonary Delivery Using Perfluorooctyl Bromide as Vehicle

机译:打算以全氟辛基溴为载体进行肺部递送的烟酸酯前药的合成理化性质和体外细胞毒性

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摘要

This study explores perfluorooctyl bromide (PFOB) as a potential vehicle for the pulmonary delivery of a series of prodrugs of nicotinic acid using cell culture studies. The prodrugs investigated have PFOB-water (log Kp = 0.78 to > 2.2), perfluoromethylcyclohexane-toluene (log Kp = −2.62 to 0.13) and octanol-water (log Kp = 0.90 to 10.2) partition coefficients spanning several orders of magnitude. In confluent NCI-358 human lung cancer cells, the toxicity of prodrugs administered in culture medium or PFOB depends on the medium of administration, with EC20’s above 8 mM and 2.5 mM for culture medium and PFOB, respectively. Short-chain nicotinates administered both in PFOB and medium increase cellular NAD/NADP levels at 1 mM nicotinate concentrations. Long-chain nicotinates, which could not be administered in medium due to their poor aqueous solubility, increased NAD/NADP levels if administered in PFOB at concentrations ≥ 10 mM. These findings suggest that even highly lipophilic prodrugs can partition out of the PFOB phase into cells, where nicotinic acid is released and converted to NAD. Thus, PFOB may be a novel and biocompatible vehicle for the delivery of lipophilic prodrugs of nicotinic acid and other drugs directly to the lung of laboratory animals and humans.
机译:这项研究利用细胞培养研究探索了全氟辛基溴(PFOB)作为肺传递一系列烟酸前药的潜在载体。所研究的前药具有PFOB-水(log Kp = 0.78至> 2.2),全氟甲基环己烷-甲苯(log Kp = -2.62至0.13)和辛醇-水(log Kp = 0.90至10.2)分配系数,跨度达几个数量级。在融合的NCI-358人肺癌细胞中,在培养基或PFOB中施用的前药的毒性取决于所用的培养基,其中EC20对于培养基和PFOB分别高于8 mM和2.5 mM。在PFOB和培养基中同时施用的短链烟酸盐在1 mM烟酸盐浓度下会增加细胞NAD / NADP水平。由于其水溶性差而不能在培养基中施用的长链烟酸酯,如果在浓度≥10 mM的PFOB中施用,则会增加NAD / NADP含量。这些发现表明,即使是高度亲脂性的前药也可以从PFOB相中分配进入细胞,在其中释放出烟酸并转化为NAD。因此,PFOB可能是用于将烟酸和其他药物的亲脂性前药直接递送至实验动物和人类肺部的新颖且生物相容的载体。

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