Jul 2026· Talanta: The International Journal of Pure and Applied Analytical Chemistry· Vol 311, pp.
130280
· 0 citations· 112 references
Medicine
TL;DR
This review systematically examines the two major strategies: the ones based on bisulfite-dependent DNA modification and the bisulfite-free methods, including the techniques for whole-genome methylation profiling and methods targeting specific genomic regions.
Abstract
Advances in DNA methylation detection technologies have promoted disease-related cell-free DNA (cfDNA) analysis. CfDNA methylation profiling has the potential to serve as a promising clinical tool for early disease diagnosis. However, current detection technologies suffer from high costs, complex operational procedures, and insufficient sensitivity for low-input samples. Moreover, the definitive validation of its clinical value still awaits robust evidence from high-quality confirmatory studies. Therefore, this review begins by mapping the historical evolution of cfDNA methylation, followed by a comparison of the traditional approaches and recent breakthroughs in cfDNA methylation analysis. Specifically, this review systematically examines the two major strategies: the ones based on bisulfite-dependent DNA modification and the bisulfite-free methods, including the techniques for whole-genome methylation profiling and methods targeting specific genomic regions. Additionally, to evaluate the clinical application potential of these methods, this review comprehensively describes the details of these technologies, such as sample input requirements and sensing accuracy in detecting clinical samples. The future development of cfDNA methylation detection will focus on clinical translation, integrating technical innovations with the demands for efficient clinical diagnosis. We believe this review will help researchers select methods tailored to sample availability and clinical applicability.
The recent integration of methylation readers into various biosensor platforms has enabled a significant advancement in epigenetic analysis, offering rapid, sensitive, and conversion-free DNA methylation detection without the need for relatively complex sample preparation.
Samer Aphrham, M. Verheijden, J. Huskens· ACS Sensors· 0 citations
Background: Despite advancements in medicine, cancer still ranks among the top leading causes of death globally, especially in relation to the chances of survival, which are greatly influenced by early diagnostics. The existing approaches suffer from the necessity for invasive procedures, the resulting high cost associ...
Hamdah Alsaeedi· Natural Resources for Human...· 0 citations
This consensus document, jointly authored by the Laboratory Medicine Committee of the Chinese Association of Integrative Medicine, the Molecular Diagnostics Group of the Chinese Society of Laboratory Medicine of Chinese Medical Association, and the Precision Medicine Committee of the Beijing Association of the Integrat...
Unknown authors· Zhonghua yu fang yi xue za z...· 0 citations
The biological and clinical relevance of the epigenetic landscape of cfDNA in LC patients is explored, particularly focusing on DNA methylation-based biomarkers and their evolving applications towards early diagnosis and post-surgical monitoring of minimal residual disease (MRD).
T. D. Bazan Russo, V. Gristina, M. D. Delcuratolo et al.· Frontiers in Oncology· 0 citations
Many clinically relevant biomarkers and molecular targets used in cancer research including EGFR, KRAS, BRAF, BCR-ABL1, circulating tumor DNA (ctDNA), and methylated SEPT9 will be examined.
M. Saleem, Taimoor Riaz, Fatima Saleem et al.· Clinica chimica acta; intern...· 0 citations
Cell-free DNA (cfDNA), released from apoptotic and necrotic cells into body fluids, is a non-invasive source of genetic information for disease prediction, diagnosis, and monitoring. However, its low abundance makes cfDNA highly susceptible to various pre-analytical influences, potentially increasing high molecular wei...
M. Apweiler, J. Broche, M. Loitz et al.· Journal of Molecular Diagnos...· 0 citations
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