Wu Baoyan, Zhao Na
MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, China.
Nanomaterials (Basel). 2016 Nov 17;6(11):216. doi: 10.3390/nano6110216.
A novel targeting theranostic nanoprobe based on single-walled carbon nanotubes (SWCNTs)-natural biopolymer chitosan composites was developed for cancer cell targeting imaging and fluorescence imaging-guided photodynamic therapy. First, chitosan was respectively conjugated with a tumor-homing molecule folic acid, or a photosensitizing drug pyropheophorbide a using a water-soluble carbodiimide coupling chemistry. Chitosan was fluorescently labeled by fluorescein isothiocyanate via the covalently linkage of the isothiocyanate group with the amino group. Second, SWCNTs were sonicated in the functional chitosan aqueous solution for 6 h at room temperature in order to obtain the nanoprobe (PPa/FITC-SWCNT-FA). The as-prepared nanoprobe has been characterized with transmission electron microscope, confocal microscopy, and cell cytotoxicity tests. Chitosan was decorated onto SWCNTs resulting in the water-dispersible PPa/FITC-SWCNT-FA, and can be selectively transported inside folate receptor-positive tumor cell with good targeting imaging. PPa/FITC-SWCNT-FA exhibited low dark toxicity about 7%-13%, and high phototoxicity about 60%-74% against HeLa cells upon a 635 nm laser irradiation, indicating satisfying biocompatibility and antitumor activity. These results suggest the study could offer a feasible alternative to presently available nanoparticle-based theranostic agents.
基于单壁碳纳米管(SWCNTs)-天然生物聚合物壳聚糖复合材料开发了一种新型靶向诊疗纳米探针,用于癌细胞靶向成像和荧光成像引导的光动力疗法。首先,使用水溶性碳二亚胺偶联化学方法,将壳聚糖分别与肿瘤归巢分子叶酸或光敏药物焦脱镁叶绿酸a偶联。壳聚糖通过异硫氰酸酯基团与氨基的共价连接,用异硫氰酸荧光素进行荧光标记。其次,将SWCNTs在功能性壳聚糖水溶液中于室温超声处理6小时,以获得纳米探针(PPa/FITC-SWCNT-FA)。所制备的纳米探针已通过透射电子显微镜、共聚焦显微镜和细胞毒性测试进行了表征。壳聚糖修饰在SWCNTs上,形成了水分散性的PPa/FITC-SWCNT-FA,并且能够选择性地转运到叶酸受体阳性肿瘤细胞内,具有良好的靶向成像效果。在635nm激光照射下,PPa/FITC-SWCNT-FA对HeLa细胞表现出约7%-13%的低暗毒性和约60%-74%的高光毒性,表明其具有令人满意的生物相容性和抗肿瘤活性。这些结果表明,该研究可为目前可用的基于纳米颗粒的诊疗剂提供一种可行的替代方案。