Department of Hepatobiliary Surgery, Zhujiang Hospital, Southern Medical University, Guangzhou, 510280, China.
Department of Biomedical Engineering, City University of Hong Kong, Hong Kong SAR, 999077, China.
J Mater Chem B. 2021 Nov 3;9(42):8779-8792. doi: 10.1039/d1tb01729b.
Early diagnosis and effective treatment of hepatocellular carcinoma (HCC) is quite critical for improving patients' prognosis. The combination of second near-infrared window photoacoustic imaging (NIR-II PAI) and -magnetic resonance imaging (-MRI) is promising for achieving omnibearing information on HCC diagnosis due to the complementary advantages of outstanding optical contrast, high temporospatial resolution and soft-tissue resolution. Thus, the rational design of a multifunctional targeted nanoplatform with outstanding performance in dual-modal NIR-II PAI/-MRI is particularly valuable for precise diagnosis and imaging-guided non-invasive photothermal therapy (PTT) of early-stage HCC. Herein, a versatile targeted organic-inorganic hybrid nanoprobe was synthesized as a HCC-specific contrast agent for sensitive and efficient theranostics. The developed multifunctional targeted nanoprobe yielded superior HCC specificity, reliable stability and biocompatibility, high imaging contrast in both NIR-II PAI and -MRI, and an excellent photothermal conversion efficiency (74.6%). Furthermore, the theranostic efficiency of the targeted nanoprobe was systematically investigated using the orthotopic early HCC-bearing mice model. The NIR-II PAI exhibited sensitive detection of ultra-small HCCs (diameter less than 1.8 mm) and long-term real-time monitoring of the tumor and nanoprobe targeting process in deep tissues. The -MRI demonstrated clear imaging contrast and a spatial relationship between micro-HCC and adjacent structures for a comprehensive description of the tumor. Moreover, when using the targeted nanoprobe, the non-invasively targeted PTT of orthotopic early HCC was carried out under reliable dual-modal imaging guidance with remarkable anti-tumor efficiency and biosafety. This study provides an insight for constructing a multifunctional targeted nanoplatform for precise and comprehensive theranostics of early-stage HCC, which would greatly benefit the patients in the era of precision medicine.
早期诊断和有效治疗肝细胞癌(HCC)对于改善患者预后至关重要。由于第二近红外窗口光声成像(NIR-II PAI)和磁共振成像(-MRI)的互补优势,具有出色的光学对比度、高时空分辨率和软组织分辨率,因此联合使用这两种方法有望实现 HCC 诊断的全方位信息。因此,合理设计一种具有出色的双模态 NIR-II PAI/-MRI 性能的多功能靶向纳米平台对于早期 HCC 的精确诊断和成像引导的非侵入性光热治疗(PTT)尤为重要。在这里,合成了一种多功能靶向有机-无机杂化纳米探针,作为 HCC 特异性对比剂用于灵敏高效的治疗学。所开发的多功能靶向纳米探针具有优异的 HCC 特异性、可靠的稳定性和生物相容性、在 NIR-II PAI 和 -MRI 中均具有高成像对比度和出色的光热转换效率(74.6%)。此外,还使用原位早期 HCC 荷瘤小鼠模型系统研究了靶向纳米探针的治疗效果。NIR-II PAI 能够灵敏地检测到超小 HCC(直径小于 1.8 毫米),并在深部组织中实现长期实时监测肿瘤和纳米探针靶向过程。-MRI 则清晰地显示了微 HCC 与邻近结构之间的成像对比度和空间关系,全面描述了肿瘤。此外,在使用靶向纳米探针时,在可靠的双模态成像引导下,可对原位早期 HCC 进行非侵入性靶向 PTT,具有显著的抗肿瘤效率和生物安全性。这项研究为构建用于早期 HCC 精确和全面治疗学的多功能靶向纳米平台提供了新的思路,将极大地造福于精准医学时代的患者。