Centre for Biomedical Engineering, Indian Institute of Technology Delhi, Hauz Khas, New Delhi 110016, India.
Vision Research Foundation, Kamalnayan Bajaj Institute for Research in Vision and Ophthalmology, Chennai 600006, Tamil Nadu, India.
J Mater Chem B. 2022 Jul 20;10(28):5388-5401. doi: 10.1039/d2tb00519k.
The overexpression of matrix metalloproteinases and low extracellular pH are two key physiological parameters involved in cancer initiation, progression, and metastasis. These have been the targets for several cancer detection and imaging modalities. Here, dual-sensitive nanoprobes have been fabricated from carbon nanoparticles decorated with a MMP-9 sensitive peptide sequence. Carbon nanoparticles are known for their intrinsic fluorescence properties and hence used as a pH-sensing moiety in the nanoprobes. In addition to this, selective-cleavage of the peptide sequence by MMP-9 results in the generation of a fluorescence signal due to separation of the quencher molecule from the fluorophore attached onto the MMP-9 sensitive peptide sequence, resulting in its detection. This protease-specific activation of the nanoprobes helps in precise tumor environment detection and imaging. The nanoprobes were thoroughly characterized for their chemical, physical and biological activities. The potential of these dual-sensitive nanoprobes to distinguish tumor-like microenvironments (low pH and elevated MMP-9 levels) from non-cancerous ones was evaluated in 2D cell culture as well as in 3D microscaffolds. The fluorescence microscopy images obtained in both systems revealed that low pH and high MMP-9 levels could be successfully visualised using these dual-sensitive nanoprobes. Therefore, these nanoprobes would find potential applications as a non-invasive imaging tool for visualising tumor margins in real-time.
基质金属蛋白酶的过度表达和细胞外低 pH 值是癌症发生、发展和转移涉及的两个关键生理参数。这些已经成为几种癌症检测和成像方式的目标。在这里,我们用 MMP-9 敏感肽序列修饰的碳纳米粒子制备了双敏感纳米探针。碳纳米粒子以其固有荧光特性而闻名,因此在纳米探针中用作 pH 感应部分。除此之外,由于 MMP-9 敏感肽序列上连接的荧光团与猝灭分子分离,通过 MMP-9 选择性切割肽序列会产生荧光信号,从而实现其检测。纳米探针的这种蛋白酶特异性激活有助于精确检测和成像肿瘤微环境。对纳米探针进行了全面的化学、物理和生物学特性表征。在二维细胞培养和 3D 微支架中评估了这些双敏感纳米探针区分肿瘤样微环境(低 pH 值和升高的 MMP-9 水平)与非癌性微环境的潜力。在这两种系统中获得的荧光显微镜图像表明,这些双敏感纳米探针可以成功地可视化低 pH 值和高 MMP-9 水平。因此,这些纳米探针有望成为一种用于实时可视化肿瘤边界的非侵入性成像工具。