Efficient Capture and Isolation of Tumor-Related Circulating Cell-Free DNA from Cancer Patients Using Electroactive Conducting Polymer Nanowire Platforms
Author(s) -
Seunghyun Jeon,
Hyungjae Lee,
Kieun Bae,
KyongAh Yoon,
Eun Sook Lee,
Youngnam Cho
Publication year - 2016
Publication title -
theranostics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.689
H-Index - 97
ISSN - 1838-7640
DOI - 10.7150/thno.14695
Subject(s) - circulating tumor cell , lung cancer , biomarker , breast cancer , cell free fetal dna , cancer research , cancer , medicine , computational biology , nanotechnology , biology , materials science , metastasis , pregnancy , biochemistry , fetus , genetics , prenatal diagnosis
Circulating cell-free DNA (cfDNA) is currently recognized as a key non-invasive biomarker for cancer diagnosis and progression and therapeutic efficacy monitoring. Because cfDNA has been detected in patients with diverse types of cancers, the use of efficient strategies to isolate cfDNA not only provides valuable insights into tumour biology, but also offers the potential for developing new cancer-specific targets. However, the challenges associated with conventional cfDNA extraction methods prevent their further clinical applications. Here, we developed a nanostructured conductive polymer platform for the efficient capture and release of circulating cfDNA and demonstrated its potential clinical utility using unprocessed plasma samples from patients with breast and lung cancers. Our results confirmed that the platform's enhanced efficiency allows tumor-specific circulating cfDNA to be recovered at high yield and purity.
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