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Fabrication of ZnPc/protein nanohorns for double photodynamic and hyperthermic cancer phototherapy

机译:ZnPc /蛋白质纳米角的制备,用于双光动力和高温癌症光疗

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摘要

Multifunctionalization of carbon nanotubules is easily achieved by attaching functional molecules that provide specific advantages for microscopic applications. We fabricated a double photodynamic therapy (PDT) and photohyperthermia (PHT) cancer phototherapy system that uses a single laser. Zinc phthalocyanine (ZnPc) was loaded onto single-wall carbon nanohorns with holes opened (SWNHox), and the protein bovine serum albumin (BSA) was attached to the carboxyl groups of SWNHox. In this system, ZnPc was the PDT agent, SWNHox was the PHT agent, and BSA enhanced biocompatibility. The double phototherapy effect was confirmed in vitro and in vivo. When ZnPc-SWNHox-BSA was injected into tumors that were subcutaneously transplanted into mice, the tumors almost disappeared upon 670-nm laser irradiation. In contrast, the tumors continued to grow when only ZnPc or SWNHox-BSA was injected. We conclude that carbon nanotubules may be a valuable new tool for use in cancer phototherapy.
机译:碳纳米管的多功能化很容易通过附着功能分子来实现,这些功能分子为微观应用提供了特殊的优势。我们制造了使用单个激光的双光动力疗法(PDT)和光热疗(PHT)癌症光疗系统。将酞菁锌(ZnPc)加载到开孔的单壁碳纳米角(SWNHox)上,并将蛋白牛血清白蛋白(BSA)连接到SWNHox的羧基上。在该系统中,ZnPc是PDT剂,SWNHox是PHT剂,而BSA增强了生物相容性。在体外和体内证实了双重光疗作用。当将ZnPc-SWNHox-BSA注射到皮下移植到小鼠的肿瘤中时,在670 nm激光照射下,肿瘤几乎消失了。相反,仅注射ZnPc或SWNHox-BSA时,肿瘤继续生长。我们得出的结论是,碳纳米管可能是用于癌症光疗的有价值的新工具。

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