Moya Betancourt Sara Natalia, Cámara Candelaria Inés, Riva Julieta Soledad
Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Instituto de Fisicoquímica y Química Inorgánica de Córdoba (INFIQC), Córdoba 5000, Argentina.
Departamento de Fisicoquímica, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Haya de la Torre y Medina Allende, Ciudad Universitaria, Córdoba 5000, Argentina.
Pharmaceutics. 2023 Jan 17;15(2):311. doi: 10.3390/pharmaceutics15020311.
Surface modification of magnetic nanoparticles (MNPs) has been reported to play a significant role in determining their interactions with cell membranes. In this research, the interactions between polymer functionalized (chitosan, CHI or diethylamino-ethyl dextran, DEAE-D) FeO MNPs, pharmaceutical drugs and model cell membranes were investigated by Langmuir isotherms and adsorption measurements. In this study, 1,2-distearoyl-sn-glycerol-3-phosphate (DSPA) phospholipid monolayers were used as cell membrane models. Insertion experiments demonstrate that diclofenac (DCFN) is not absorbed at the air-water interface, whereas triflupromazine (TFPZ) has a MIP (maximum insertion pressure) of 35 m Nm. The insertion of composites MNPs:TFPZ or DCFN has larger MIP values, indicating that the MNPs are adsorbed on the monolayer with the drugs. An FeO@CHI:DCFN composite presented an MIP of 39 m Nm and FeO@DEAE-D:DCFN presented an impressive MIP of 67 mNm. In the case of TFPZ, the enhancement in the MIP values is also evident, being 42 mNm for FeO@CHI:TFPZ and 40 mNm for FeO@DEAE-D:DCFN composite. All MNPs:drugs composites have MIP values greater than commonly accepted membrane pressure values, indicating that MNPs:drugs can penetrate a cellular membrane. The fact that the composite MNPs:drugs present greater MIP values than separated compounds indicates that polymer-coated MNPs can act as good drug delivery systems.
据报道,磁性纳米颗粒(MNPs)的表面修饰在决定其与细胞膜的相互作用中起着重要作用。在本研究中,通过朗缪尔等温线和吸附测量研究了聚合物功能化(壳聚糖,CHI或二乙氨基乙基葡聚糖,DEAE-D)的FeO MNPs、药物与模型细胞膜之间的相互作用。在本研究中,1,2-二硬脂酰-sn-甘油-3-磷酸(DSPA)磷脂单层被用作细胞膜模型。插入实验表明,双氯芬酸(DCFN)在气-水界面不被吸收,而三氟丙嗪(TFPZ)的最大插入压力(MIP)为35 mN/m。复合材料MNPs:TFPZ或DCFN的插入具有更大的MIP值,表明MNPs与药物一起吸附在单层上。FeO@CHI:DCFN复合材料的MIP为39 mN/m,FeO@DEAE-D:DCFN的MIP高达67 mN/m,令人印象深刻。对于TFPZ,MIP值的增强也很明显,FeO@CHI:TFPZ为42 mN/m,FeO@DEAE-D:DCFN复合材料为40 mN/m。所有MNPs:药物复合材料的MIP值均大于普遍接受的膜压力值,表明MNPs:药物可以穿透细胞膜。复合材料MNPs:药物的MIP值高于分离化合物,这一事实表明聚合物包覆的MNPs可以作为良好的药物递送系统。