Use of UMFNPs/Ce6@MBs in multimodal imaging-guided sono-photodynamic combination therapy for hepatocellular carcinoma.

IF 5.8 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Lijun Xing, Xiaoting Yang, Jianhua Bai, Chunting Zhong, Jing Cai, Qing Dan, Yiran Ji, Bingxuan Xu, Keyan Yu, Xiaoyu Chen, Yulong Qi, Li Li, Yun Chen, Xintao Shuai, Guanxun Cheng, Li Liu, Tingting Zheng
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Abstract

Early diagnosis of liver cancer and appropriate treatment options are critical for obtaining a good prognosis. However, due to technical limitations, it is difficult to make an early and accurate diagnosis of liver cancer, and the traditional imaging model is relatively simple. Therefore, we synthesized multifunctional diagnostic/therapeutic nanoparticles, UMFNPs/Ce6@MBs, loaded with ultra-small manganese ferrite nanoparticles (UMFNPs) and chlorin e6 (Ce6). This nanoplatform can take full advantage of hypoxia, acidic pH (acidosis) and increased levels of reactive oxygen species (e.g. H2O2) in the tumor microenvironment (TME). Specific imaging and drug release can also enhance tumor therapy by modulating the hypoxic state of the TME to achieve the combined effect of sonodynamic therapy and photodynamic therapy (SPDT). In addition, the prepared UMFNPs/Ce6@MBs have H2O2 and pH-sensitive biodegradability and can release UMFNPs and photosensitizer Ce6 in the TME while producing O2 and Mn2+. The obtained Mn2+ ion nanoparticles can be used for T1 magnetic resonance imaging of tumor-bearing mice, and the released Ce6 can provide fluorescence imaging function at the same time. Because UMFNPs/Ce6@MB ultrasonic microbubbles show good ultrasonic imaging results, UMFNPs/Ce6@MBs can simultaneously provide multi-modal imaging functions for magnetic resonance imaging (MRI), ultrasound and fluorescence imaging. In conclusion, UMFNPs/Ce6@MBs realize the synergistic treatment of SDT and PDT under multi-mode near-infrared fluorescence imaging and CEUS monitoring, demonstrating its great potential in tumor precision medicine.

将 UMFNPs/Ce6@MBs 用于肝细胞癌的多模态成像引导声光动力联合疗法。
肝癌的早期诊断和适当的治疗方案是获得良好预后的关键。然而,由于技术限制,肝癌的早期准确诊断较为困难,而传统的成像模式相对简单。因此,我们合成了一种多功能诊断/治疗纳米颗粒--UMFNPs/Ce6@MBs,其中装载了超小型锰铁氧体纳米颗粒(UMFNPs)和氯蛋白e6(Ce6)。这种纳米平台可充分利用肿瘤微环境(TME)中的缺氧、酸性 pH 值(酸中毒)和活性氧(如 H2O2)水平的增加。特异性成像和药物释放还可以通过调节肿瘤微环境的缺氧状态来实现声动力疗法和光动力疗法(SPDT)的综合效果,从而提高肿瘤治疗效果。此外,制备的 UMFNPs/Ce6@MBs 具有 H2O2 和 pH 敏感的生物降解性,可在 TME 中释放 UMFNPs 和光敏剂 Ce6,同时产生 O2 和 Mn2+。获得的 Mn2+ 离子纳米粒子可用于肿瘤小鼠的 T1 磁共振成像,而释放的 Ce6 可同时提供荧光成像功能。由于 UMFNPs/Ce6@MB 超声微泡具有良好的超声成像效果,因此 UMFNPs/Ce6@MB 可同时提供磁共振成像(MRI)、超声成像和荧光成像等多模式成像功能。总之,UMFNPs/Ce6@MBs在多模式近红外荧光成像和CEUS监测下实现了SDT和PDT的协同治疗,显示了其在肿瘤精准医疗中的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biomaterials Science
Biomaterials Science MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.50%
发文量
556
期刊介绍: Biomaterials Science is an international high impact journal exploring the science of biomaterials and their translation towards clinical use. Its scope encompasses new concepts in biomaterials design, studies into the interaction of biomaterials with the body, and the use of materials to answer fundamental biological questions.
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