化学
检出限
液体活检
DNA
色谱法
磁性纳米粒子
循环肿瘤DNA
生物标志物
磁珠
萃取(化学)
等离子体
DNA提取
DNA甲基化
基质(化学分析)
磁选
纳米颗粒
复矩阵
洗脱
癌症
分析物
血浆
甲基化
人血浆
荧光
一步到位
实时聚合酶链反应
分子生物学
液-液萃取
寡核苷酸
作者
Yong Li,Xiangyu Chen,Ye Wang,Xiaowen Zhao,Jiansen Du,Chao Shi,Cuiping Ma
标识
DOI:10.1021/acs.analchem.6c00059
摘要
DNA methylation serves as a crucial biomarker for early cancer detection, holding great promise in liquid biopsy. However, its low abundance in plasma and interference from complex matrices pose significant challenges to clinical detection sensitivity. To this end, this study developed a novel direct enrichment platform based on methyl-binding domain (MBD) protein-functionalized magnetic nanoparticles (MBD@MNPs). Through systematic optimization, the methylated DNA (mDNA) capture efficiency of MBD@MNPs reached 86.6% with an elution efficiency of 44.9% in simulated systems, while bypassing the cumbersome step of total cell-free DNA (cfDNA) extraction and overcoming plasma matrix interference. In comparison, this strategy enhanced the sensitivity of methylation-specific PCR by 25-fold, with a detection limit as low as 0.04 ng/mL. Applied to plasma samples from patients with various tumors (including colorectal, lung, breast, cervical, liver, and gastric cancers), the technology significantly improved the detection rates up to 100% of tumor-specific methylation biomarkers, such as SDC2, SHOX2, RASSF1A, ZNF671, Septin9, and BMP3. Therefore, this study provides an efficient, universal and user-friendly enrichment and accurate detection of mDNA, laying a methodological foundation for early cancer screening and prognosis assessment.
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