Centre for Nanotechnology Innovation, Department of Chemistry, Rhodes University, Grahamstown 6140, South Africa.
Biotechnology Innovation Centre, Rhodes University, Grahamstown 6140, South Africa.
J Photochem Photobiol B. 2018 Sep;186:216-224. doi: 10.1016/j.jphotobiol.2018.07.025. Epub 2018 Jul 29.
In this work, the photodynamic therapy (PDT) activities (using human carcinoma adherent MCF-7 cells) of zinc phthalocyanine derivatives: complexes 1 (Zn mono cinnamic acid phthalocyanine) and 2 (zinc mono carboxyphenoxy phthalocyanine) when covalently linked to folic acid (FA) and amine functionalized magnetic nanoparticles (AMNPs) are reported. The covalent linkage of asymmetric zinc cinnamic acid Pc (1) to FA (1-FA) through an amide bond is reported for the first time. Complex 1 is insoluble in water, but upon linkage to FA, (to form 1-FA) the molecule become water soluble, hence the UV-Vis spectrum and singlet oxygen quantum yield for 1-FA were also done in water since water solubility is essential for biological applications. The reported 2-FA is also water soluble. Linking complexes 1 and 2 to FA and AMNPs decreased the dark toxicity of 1 and 2 on MCF-7 cells. Pc-FA (1-FA and 2-FA) conjugates had better singlet oxygen quantum yields (Φ) in DMSO as compared to Pc-AMNPs (1-AMNPs and 2-AMNPs). The water- soluble 1-FA and 2-FA also achieved a better photodynamic therapy (PDT) activity as compared to 1-AMNPs and 2-AMNPs. Folic acid targeting on the tumor cells may have also facilitated better bioavailability of 1-FA and 2-FA and improved PDT activity on MCF-7 cells over AMNPs carriers.
在这项工作中,报道了锌酞菁衍生物的光动力疗法(PDT)活性(使用人癌细胞贴壁 MCF-7 细胞):通过酰胺键将不对称锌肉桂酸 Pc(1)共价连接到叶酸(FA)上的复合物 1(锌单肉桂酸酞菁)和 2(锌单羧基苯氧基酞菁)。复合物 1 不溶于水,但与 FA 连接(形成 1-FA)后,分子变得水溶性,因此也在水中进行了 1-FA 的紫外可见光谱和单线态氧量子产率的测定,因为水溶性对于生物应用至关重要。报道的 2-FA 也是水溶性的。将复合物 1 和 2 与 FA 和 AMNPs 连接降低了 1 和 2 在 MCF-7 细胞上的暗毒性。与 Pc-AMNPs(1-AMNPs 和 2-AMNPs)相比,Pc-FA(1-FA 和 2-FA)缀合物在 DMSO 中具有更好的单线态氧量子产率(Φ)。水溶性的 1-FA 和 2-FA 也比 1-AMNPs 和 2-AMNPs 具有更好的光动力治疗(PDT)活性。肿瘤细胞上的叶酸靶向也可能促进了 1-FA 和 2-FA 的更好的生物利用度,并提高了 MCF-7 细胞上的 PDT 活性超过 AMNPs 载体。