声动力疗法
放射性核素治疗
光热治疗
纳米载体
医学
胰腺癌
放射性核素
核医学
医学物理学
癌症研究
癌症
药理学
内科学
放射科
纳米技术
材料科学
超声波
药品
物理
量子力学
作者
Jie An,Xinyi He,Huizhu Ma,Yanglei Li,Yayuan Li,Xinyu Zhang,Qizhi Shuai,YinMeng Wang,Wen Liu,Weihua Li,Hongliang Wang,Zhifang Wu,Sijin Li
标识
DOI:10.1016/j.jcis.2023.03.111
摘要
Radionuclide therapy (RNT) is an effective method for the clinical precise treatment of cancer. However, the uneven dose distribution and rapid metabolism of nuclides limit the effective killing of tumors. To overcome the limitations of radionuclide therapeutic approaches, combining different therapeutic strategies to treat cancer has manifested great promise in basic and clinical research. Here, a new combination therapy strategy was developed to combine radionuclide therapy, sonodynamic therapy and photothermal therapy (RNT-SDT-PTT) under radionuclide imaging guided achieve highly effective combination therapy. We prepared a polydopamine-modified Au nanostar (AN), then loaded with the acoustic sensitizer protoporphyrin (IX) and labeled with diagnostic (99mTc) or therapeutic (131I) radionuclides (131I/99mTc-AN@D/IX) for the precise diagnosis and treatment of pancreatic cancer. After intratumor administration, single photon emission computed tomography imaging showed that the nanocarriers were mostly retained in the tumor compared to free radionuclide. As well as using near-infrared light to trigger PTT and ultrasound with high penetration depth to activate IX to generate reactive oxygen species achieved SDT of tumor. The ultimate significantly improved the inhibitory effects by the RNT-SDT-PTT combined therapy for pancreatic cancer. Therefore, this study proposes an effective radionuclide combination therapy regimen consisting of three widely used treatments, offering promising prospects for the future of oncology.
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