Chen Sijie, Huang Biying, Pei Wenjing, Xu Yan, Jiang Zichao, Li Jingyi, Wang Long, Niu Chengcheng
Department of Ultrasound Diagnosis, The Second Xiangya Hospital, Central South University Changsha Hunan 410011 China
Department of Orthopedics, Xiangya Hospital, Central South University Changsha Hunan 410008 China.
RSC Adv. 2019 Nov 21;9(65):38154-38164. doi: 10.1039/c9ra08281f. eCollection 2019 Nov 19.
Over the past several decades, nanocarriers have constituted a vital research area for accurate tumor therapy. Herein, magnetically targeted nanoparticles (IRFes) for photothermal therapy were generated by integrating IR780, a molecule with strong emission and absorption in the NIR spectrum and the ability to produce heat after laser irradiation, with FeO nanoparticles (NPs). These IRFes were guided to the tumor site by the application of an external magnetic field. In particular, the strong NIR absorption of IR780 was used for NIRF imaging, and we also demonstrated effective magnetic targeting for the photothermal ablation of tumors. cell viability and antitumor experiments showed that these IRFes can ablate 4T1 cells or transplanted 4T1 cell tumors when exposed to 808 nm laser irradiation and a magnetic field. experiments showed that IRFes only act on tumors, do not damage other organs and can be used to image tumors. These results demonstrate the enormous potential of local photothermal therapy for cancer under the guidance of external magnetic fields and reveal the prospect for the use of multifunctional nanoparticles in tumor therapy.
在过去几十年中,纳米载体已成为精确肿瘤治疗的一个重要研究领域。在此,通过将IR780(一种在近红外光谱中具有强发射和吸收能力且在激光照射后能产生热量的分子)与FeO纳米颗粒(NPs)相结合,制备了用于光热治疗的磁性靶向纳米颗粒(IRFes)。通过施加外部磁场将这些IRFes引导至肿瘤部位。特别地,利用IR780的强近红外吸收进行近红外荧光成像,并且我们还展示了对肿瘤光热消融的有效磁靶向。细胞活力和抗肿瘤实验表明,当暴露于808 nm激光照射和磁场时,这些IRFes可以消融4T1细胞或移植的4T1细胞肿瘤。实验表明,IRFes仅作用于肿瘤,不损伤其他器官,并且可用于肿瘤成像。这些结果证明了在外部磁场引导下局部光热治疗癌症的巨大潜力,并揭示了多功能纳米颗粒在肿瘤治疗中的应用前景。