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Self-assembled albumin nanoparticles for combination therapy in prostate cancer

机译:自组装白蛋白纳米颗粒用于前列腺癌的联合治疗

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摘要

Resistance to regular treatment strategies is a big challenge in the treatment of castration-resistant prostate cancer. Combination of photothermal and photodynamic therapy (PTT/PDT) with chemotherapy offers unique advantages over monotherapy alone. However, free drugs, such as photosensitizers and chemotherapeutic agents, lack tumor-targeted accumulation and can be easily eliminated from the body. Moreover, most of the PTT drugs are hydrophobic and their organic solvents have in vivo toxicity, thereby limiting their potential in clinical translation. Herein, simple multifunctional nanoparticles (NPs) using IR780 (a near-infrared dye) and docetaxel (DTX)-loaded nanoplatform based on human serum albumin (HSA) (HSA@IR780@DTX) was developed for targeted imaging and for PTT/PDT with chemotherapy for the treatment of castration-resistant prostate cancer treatment. In this platform, HSA is a biocompatible nanocarrier that binds to both DTX and IR780. DTX and IR780, as hydrophobic drug, can induce the self-assembly of HSA proteins. Transmission electron microscopic imaging showed that NPs formed by self-assembly are spherical with a smooth surface with a hydrodynamic diameter of 146.5±10.8 nm. The cytotoxicity of HSA@IR780@DTX NPs with or without laser irradiation in prostate cancer cells (22RV1) was determined via CCK-8 assay. The antitumor effect of HSA@IR780@DTX plus laser irradiation was better than either HSA@IR780@DTX without laser exposure or single PTT heating induced by HSA@IR780 NPs under near-infrared laser, suggesting a significant combined effect in comparison to monotherapy. Near-infrared fluorescence imaging showed that HSA@IR780@DTX NPs could preferentially accumulate in tumors. In vivo therapeutic efficacy experiment showed that xenografted prostate tumors on mice treated with HSA@IR780@DTX plus near-infrared laser irradiation were completely inhibited, whereas tumors on mice treated with chemotherapy alone (HSA@DTX and HSA@IR780@DTX without laser) or PTT/PDT alone (HSA@IR780 with laser) showed moderate growth inhibition. Overall, HSA@IR780@DTX NPs showed notable targeting and theranostic potential for the treatment of castration-resistant prostate cancer.
机译:对常规治疗策略的抵抗力是去势抵抗性前列腺癌治疗的一大挑战。将光热和光动力疗法(PTT / PDT)与化学疗法相结合比单独使用单一疗法具有独特的优势。但是,诸如光敏剂和化学治疗剂之类的游离药物缺乏靶向肿瘤的积累,因此很容易从体内清除。此外,大多数PTT药物都是疏水性的,其有机溶剂具有体内毒性,因此限制了其在临床翻译中的潜力。在本文中,开发了使用IR780(近红外染料)和基于人血清白蛋白(HSA)(HSA @ IR780 @ DTX)的多西他赛(DTX)加载的纳米平台的简单多功能纳米颗粒(NPs),用于靶向成像和PTT / PDT用化学疗法治疗去势抵抗性前列腺癌的治疗方法。在这个平台上,HSA是一种生物相容性纳米载体,可与DTX和IR780结合。 DTX和IR780作为疏水性药物,可以诱导HSA蛋白的自组装。透射电子显微镜成像表明,通过自组装形成的纳米颗粒为球形,表面光滑,流体力学直径为146.5±10.8 nm。通过CCK-8分析确定在有或没有激光照射的情况下,HSA @ IR780 @ DTX NP在前列腺癌细胞(22RV1)中的细胞毒性。 HSA @ IR780 @ DTX加上激光照射的抗肿瘤效果要好于没有激光暴露的HSA @ IR780 @ DTX或HSA @ IR780 NP在近红外激光下诱导的单次PTT加热,这表明与单药治疗相比有显着的联合作用。近红外荧光成像显示,HSA @ IR780 @ DTX NPs可以优先在肿瘤中积累。体内治疗效果实验表明,用HSA @ IR780 @ DTX和近红外激光照射治疗的小鼠的异种移植前列腺肿瘤被完全抑制,而仅采用化学疗法治疗的小鼠(HSA @ DTX和HSA @ IR780 @ DTX不使用激光)的肿瘤被完全抑制。或单独使用PTT / PDT(带有激光的HSA @ IR780)显示出中等程度的生长抑制。总体而言,HSA @ IR780 @ DTX NP在治疗去势抵抗性前列腺癌方面显示出显着的靶向性和治疗诊断潜力。

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