Integrated DNA estimation in tissue biopsy and detection in liquid biopsy by HBV-targeted NGS assay
Liu, H.-N.; Lin, S. Y.; Ramirez, R.; Chen, S.-E.; Heimer, Z.; Kubas, R.; Shieh, F.-S.; Kim, E. S.; Liu, Y.; Lau, D. T. Y.; Chang, T.-T.; Guo, H.; Wang, Z.; Su, Y.-h.
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Background & AimsIntegrated HBV DNA (iDNA) plays a critical role in HBV pathogenesis, particularly in predicting treatment response and HCC. This study aimed to use an HBV hybridization-capture next-generation sequencing (HBV-NGS) assay to detect HBV-host junction sequences (HBV-JS) in a sensitive nonbiased manner to detect and estimate the iDNA fraction in tissue biopsies and HBV genetics by liquid biopsy. MethodsHBV DNA from plasmid monomers, HBV-HCC cell line (SNU398, Hep3B, and PLC/PRF/5), tissue biopsies of patients with serum HBV DNA <4 log IU/ml, and matched urine and plasma of HBV patients were assessed by HBV-NGS. Junction-specific qPCR (JS-qPCR) assays were developed to quantify abundant HBV-JS. ResultsWe demonstrated high coverage uniformity, reproducibility across all HBV genotypes A-D, and 0.1% sensitivity for detecting iDNA by the HBV-NGS assay. The sequence and structures of iDNA molecules from SNU398 and Hep3B are reported. An iDNA estimation model was developed using six abundant HBV-JS sequences identified from tissue biopsies by HBV-NGS assay and validated using total DNA of SNU398 and Hep3B cells. Furthermore, the utility of the HBV-NGS assay for HBV genetic analysis in liquid biopsies was explored using matched plasma-urine samples from three patients with serum HBV DNA levels ranging from high to undetectable. HBV-JS was detected in all body fluids tested, regardless of viral load. ConclusionThese findings suggest that the iDNA fraction in tissue biopsies from patients with limited or undetectable serum HBV DNA can be estimated using a robust HBV-NGS assay, and a sensitive HBV genetics liquid biopsy can be obtained. This study highlights the potential of NGS-based methods to advance HBV management. Impact and implicationsThis study applied an unbiased, sensitive, and robust HBV-captured NGS method to detect integrated HBV DNA (iDNA) in both tissue and liquid (blood and urine) biopsies and generated a model to estimate the intrahepatic iDNA quantity. The availability of this technology makes possible to not only estimate iDNA fraction in total HBV DNA in tissue biopsies, but also perform HBV genetics in a minimally invasive manner in chronic HBV patients for disease monitoring, HCC risk assessment, and for clinical research.
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