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生物参数导向的纳米制剂作为磁共振成像造影剂能够实现缺氧肿瘤的特异性可视化。

Bioparameter-directed nanoformulations as MRI CAs enable the specific visualization of hypoxic tumour.

作者信息

Lu Xinyi, Wang Xin, Gao Susu, Chen Ziwei, Bai Ru, Wang Yaling

机构信息

CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety & CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology of China, Beijing, 100190, P. R. China.

University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Analyst. 2023 Oct 5;148(20):4967-4981. doi: 10.1039/d3an00972f.

Abstract

A malignant tumour has hypoxic cells of varying degrees. The more severe the hypoxic degree, the more difficult the prognosis of the tumour and the higher the recurrence rate. Therefore, tumour hypoxia imaging is crucial. Magnetic resonance imaging (MRI) shows its strength in high resolution, depth of penetration and noninvasiveness. However, it needs more excellent contrast agents (CAs) to combat the complex tumour microenvironment (TME) and increased targeting of tumours to enhance clinical safety. Many research studies have focused on developing hypoxia-responsive MRI CAs that take advantage of the unique characteristics of hypoxic tumours. The low oxygen pressure, acidic TME, and up-regulated redox molecule levels found in hypoxic tumours serve as biological stimuli for nanoformulations that can accurately image the hypoxic region. This review highlights the importance of developing bioparameter-directed nanoformulations as MRI CAs for accurate tumour diagnosis. The design strategies and mechanisms of tumour-hypoxia imaging with nanoformulations are exemplified, with a focus on pH-responsiveness, redox-responsiveness, and (O)-responsiveness. The promising future of bioparameter-responsive nanoformulations for accurate tumour diagnosis and personalised cancer treatment is discussed.

摘要

恶性肿瘤存在不同程度的缺氧细胞。缺氧程度越严重,肿瘤的预后越差,复发率越高。因此,肿瘤缺氧成像至关重要。磁共振成像(MRI)在高分辨率、穿透深度和非侵入性方面显示出其优势。然而,它需要更优异的造影剂(CAs)来应对复杂的肿瘤微环境(TME)并增强肿瘤靶向性,以提高临床安全性。许多研究致力于开发利用缺氧肿瘤独特特性的缺氧响应性MRI造影剂。缺氧肿瘤中发现的低氧压力、酸性TME和上调的氧化还原分子水平可作为纳米制剂的生物刺激因素,从而能够准确成像缺氧区域。本综述强调了开发生物参数导向的纳米制剂作为MRI造影剂用于准确肿瘤诊断的重要性。举例说明了纳米制剂用于肿瘤缺氧成像的设计策略和机制,重点关注pH响应性、氧化还原响应性和(氧)响应性。讨论了生物参数响应性纳米制剂在准确肿瘤诊断和个性化癌症治疗方面的广阔前景。

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