Thakare Pramod, Vasile Francesca, Vallaro Maura, Visentin Sonja, Caron Giulia, Licandro Emanuela, Cauteruccio Silvia
Department of Chemistry, University of Milan, 20133, Milan, Italy.
Molecular Biotechnology & Health Sciences Department, University of Turin, 10135, Turin, Italy.
J Pharm Anal. 2021 Oct;11(5):638-645. doi: 10.1016/j.jpha.2020.07.007. Epub 2020 Aug 2.
The first combined experimental and theoretical study on the ionization and lipophilic properties of peptide nucleic acid (PNA) derivatives, including eleven PNA monomers and two PNA decamers, is described. The acidity constants (pK) of individual acidic and basic centers of PNA monomers were measured by automated potentiometric pH titrations in water/methanol solution, and these values were found to be in agreement with those obtained by MoKa software. These results indicate that single nucleobases do not change their pK values when included in PNA monomers and oligomers. In addition, immobilized artificial membrane chromatography was employed to evaluate the lipophilic properties of PNA monomers and oligomers, which showed the PNA derivatives had poor affinity towards membrane phospholipids, and confirmed their scarce cell penetrating ability. Overall, our study not only is of potential relevance to evaluate the pharmacokinetic properties of PNA, but also constitutes a reliable basis to properly modify PNA to obtain mimics with enhanced cell penetration properties.
本文描述了对肽核酸(PNA)衍生物(包括11种PNA单体和2种PNA十聚体)的电离和亲脂性特性进行的首次实验与理论相结合的研究。通过在水/甲醇溶液中进行自动电位滴定法测量PNA单体各个酸性和碱性中心的酸度常数(pK),发现这些值与通过MoKa软件获得的值一致。这些结果表明,单个核碱基在包含于PNA单体和寡聚体中时不会改变其pK值。此外,采用固定化人工膜色谱法评估PNA单体和寡聚体的亲脂性特性,结果表明PNA衍生物对膜磷脂的亲和力较差,并证实了它们稀缺的细胞穿透能力。总体而言,我们的研究不仅对评估PNA的药代动力学特性具有潜在意义,而且为合理修饰PNA以获得具有增强细胞穿透特性的模拟物构成了可靠的基础。