Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.
Inorg Chem. 2013 Sep 3;52(17):9915-20. doi: 10.1021/ic4010642. Epub 2013 Jul 16.
In an effort to expand the therapeutic range of platinum anticancer agents, several new approaches to platinum-based therapy, including nanodelivery, are under active investigation. To better understand the effect of ligand lipophilicity on the encapsulation of Pt(IV) prodrugs within polymer nanoparticles, the series of compounds cis,cis,trans-[Pt(NH3)2Cl2L2] was prepared, where L = acetate, propanoate, butanoate, pentanoate, hexanoate, heptanoate, octanoate, nonanoate, and decanoate. The lipophilicities of these compounds, assessed by reversed-phase HPLC, correlate with the octanol/water partition coefficients of their respective free carboxylic acid ligands, which in turn affect the degree of encapsulation of the Pt(IV) complex within the hydrophobic core of poly(lactic-co-glycolic acid)-block-poly(ethylene glycol) (PLGA-PEG-COOH) nanoparticles. The most lipophilic compound investigated, cis,cis,trans-[Pt(NH3)2Cl2(O2C(CH2)8CH3)2], displayed the best encapsulation. This compound was therefore selected to evaluate the effect of increased platinum concentration on encapsulation. As the platinum concentration was increased, there was an initial increase in encapsulation followed by a decrease due to macroscopic precipitation. Maximal loading occurred when the platinum complex was present at a 40% w/w ratio with respect to polymer during the nanoprecipitation step. Particles formed under these optimal conditions had diameters of approximately 50 nm, as determined by transmission electron microscopy.
为了扩大铂类抗癌药物的治疗范围,人们正在积极研究几种新的铂类治疗方法,包括纳米递药。为了更好地了解配体疏水性对铂(IV)前药在聚合物纳米粒子中包封的影响,合成了一系列化合物 cis,cis,trans-[Pt(NH3)2Cl2L2],其中 L = 乙酸盐、丙酸盐、丁酸盐、戊酸盐、己酸盐、庚酸盐、辛酸、壬酸盐和癸酸盐。通过反相高效液相色谱法评估这些化合物的疏水性,与它们各自游离羧酸配体的辛醇/水分配系数相关,而这又影响 Pt(IV)配合物在聚(乳酸-共-乙醇酸)-嵌段-聚(乙二醇)(PLGA-PEG-COOH)纳米粒子的疏水性核内的包封程度。研究中最疏水的化合物 cis,cis,trans-[Pt(NH3)2Cl2(O2C(CH2)8CH3)2]显示出最佳的包封效果。因此,选择该化合物来评估增加铂浓度对包封的影响。随着铂浓度的增加,包封最初增加,随后由于宏观沉淀而减少。当铂配合物在纳米沉淀步骤中相对于聚合物以 40%w/w 的比例存在时,出现最大负载。通过透射电子显微镜确定,在这些最佳条件下形成的粒子的直径约为 50nm。