Department of Chemistry, University of Science and Technology of China, Hefei, Anhui, 230026, China.
Anhui Provincial Key Laboratory of High Magnetic Resonance Image, High Magnetic Field Laboratory, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei, Anhui, 230031, China.
Small. 2023 Jul;19(29):e2300015. doi: 10.1002/smll.202300015. Epub 2023 Apr 8.
Magnetic resonance imaging (MRI) is a superior and noninvasive imaging technique with unlimited tissue penetration depth and superb spatiotemporal resolution, however, using intracellular self-assembly of Gd-containing nanoparticles to enhance the T -weighted MR contrast of cancer cells in vivo for precise tumor MRI is rarely reported. The lysosomal cysteine protease cathepsin B (CTSB) is regarded as an attractive biomarker for the early diagnosis of cancers and metastasis. Herein, taking advantage of a biocompatible condensation reaction, a "smart" Gd-based CTSB-responsive small molecular contrast agent VC-Gd-CBT is developed, which can self-assemble into large intracellular Gd-containing nanoparticles by glutathione reduction and CTSB cleavage to enhance the T -weighted MR contrast of CTSB-overexpressing MDA-MB-231 cells at 9.4 T. In vivo T -weighted MRI studies using MDA-MB-231 murine xenografts show that the T -weighted MR contrast change of tumors in VC-Gd-CBT-injected mice is distinctly larger than the mice injected with the commercial agent gadopentetate dimeglumine, or co-injected with CTSB inhibitor and VC-Gd-CBT, indicating that the accumulation of self-assembled Gd-containing nanoparticles at tumor sites effectively enhances the T -weighted MR tumor imaging. Hence, this CTSB-targeted small molecule VC-Gd-CBT has the potential to be employed as a T contrast agent for the clinical diagnosis of cancers at an early stage.
磁共振成像(MRI)是一种优越的、非侵入性的成像技术,具有无限的组织穿透深度和卓越的时空分辨率,然而,利用含钆的纳米粒子的细胞内自组装来增强体内癌细胞的 T -加权磁共振对比,用于精确的肿瘤 MRI 很少有报道。溶酶体半胱氨酸蛋白酶 cathepsin B (CTSB) 被认为是癌症和转移的早期诊断的有吸引力的生物标志物。在此,利用生物相容性的缩合反应,开发了一种“智能”基于 Gd 的 CTSB 响应小分子对比剂 VC-Gd-CBT,它可以通过谷胱甘肽还原和 CTSB 切割自组装成大的细胞内含 Gd 的纳米粒子,以增强 CTSB 过表达的 MDA-MB-231 细胞在 9.4 T 下的 T -加权磁共振对比。使用 MDA-MB-231 鼠异种移植的体内 T -加权 MRI 研究表明,VC-Gd-CBT 注射小鼠肿瘤的 T -加权 MR 对比变化明显大于注射商业造影剂钆喷替酸二葡甲胺或与 CTSB 抑制剂和 VC-Gd-CBT 共注射的小鼠,表明自组装的含 Gd 纳米粒子在肿瘤部位的积累有效地增强了 T -加权磁共振肿瘤成像。因此,这种靶向 CTSB 的小分子 VC-Gd-CBT 有可能作为一种 T 对比剂,用于癌症的早期临床诊断。