Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Analytical Chemistry for Living Biosystems, CAS Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Anal Chem. 2021 Jul 20;93(28):9778-9787. doi: 10.1021/acs.analchem.1c01254. Epub 2021 Jul 6.
Broad-spectrum detection and long-term monitoring of circulating tumor cells (CTCs) remain challenging due to the extreme rarity, heterogeneity, and dynamic nature of CTCs. Herein, a dual-affinity nanostructured platform was developed for capturing different subpopulations of CTCs and monitoring CTCs during treatment. Stepwise assembly of fibrous scaffolds, a ligand-exchangeable spacer, and a lysosomal protein transmembrane 4 β (LAPTM4B)-targeting peptide creates biomimetic, stimuli-responsive, and multivalent-binding nanointerfaces, which enable harvest of CTCs directly from whole blood with high yield, purity, and viability. The stable overexpression of the target LAPTM4B protein in CTCs and the enhanced peptide-protein binding facilitate the capture of rare CTCs in patients at an early stage, detection of both epithelial-positive and nonepithelial CTCs, and tracking of therapeutic responses. The reversible release of CTCs allows downstream molecular analysis and identification of specific liver cancer genes. The consistency of the information with clinical diagnosis presents the prospect of this platform for early diagnosis, metastasis prediction, and prognosis assessment.
由于循环肿瘤细胞 (CTC) 的极端稀有性、异质性和动态性,广谱检测和长期监测 CTC 仍然具有挑战性。在此,开发了一种双重亲和纳米结构平台,用于捕获 CTC 的不同亚群并在治疗期间监测 CTC。纤维支架、配体可交换间隔物和溶酶体蛋白跨膜 4β(LAPTM4B)靶向肽的逐步组装创建了仿生、响应性和多价结合的纳米界面,使 CTC 能够直接从全血中以高产率、高纯度和高活力收获。在 CTC 中靶标 LAPTM4B 蛋白的稳定过表达和增强的肽-蛋白结合促进了早期患者中稀有 CTC 的捕获、上皮阳性和非上皮性 CTC 的检测以及治疗反应的跟踪。CTC 的可逆释放允许下游分子分析和鉴定特定的肝癌基因。该平台的信息与临床诊断的一致性为早期诊断、转移预测和预后评估提供了前景。