Paper – Metagenomic Next-Generation Sequencing for Identification and Quantitation of Transplant-Related DNA Viruses
Enabling NGS-based metagenomics in the clinical virology laboratory
Metagenomic Next-Generation Sequencing for Identification and Quantitation of Transplant-Related DNA Viruses
Here’s our first peer-reviewed publication as a result of a collaborative study between Dr. Benjamin Pinsky, Director of Clinical Virology at Stanford Healthcare, and Arc Bio demonstrating the analytical validity of the Galileo™ platform using both contrived and residual clinical samples as compared to current gold standard methods (qPCR), published in this month’s issue of the Journal of Clinical Microbiology.
Comparable performance of the Galileo™ platform and singleplex qPCR assays across a range of analytical parameters (including sensitivity, limit of detection, and viral quantitation) was reported. The added ability to detect and quantify 397 viral strains simultaneously from a single specimen with Galileo™ potentially translates into significantly lower time and cost burdens for researchers evaluating viral infections and reactivations.
In addition, here’s an interview in Technology Networks by the first author discussing the paper: Infection Identification: Metagenomic Next-generation Sequencing vs PCR
Abstract:
“Infections with DNA viruses are frequent causes of morbidity and mortality in transplant recipients. This study describes the analytical and clinical performance characteristics of the Arc Bio Galileo Pathogen Solution, an all-inclusive metagenomic next-generation sequencing (mNGS) reagent and bioinformatics pipeline that allows the simultaneous quantitation of 10 transplant-related double-stranded DNA (dsDNA) viruses (adenovirus [ADV], BK virus [BKV], cytomegalovirus [CMV], Epstein-Barr virus [EBV], human herpesvirus 6A [HHV-6A], HHV-6B, herpes simplex virus 1 [HSV-1], HSV-2, JC virus [JCV], and varicella-zoster virus [VZV]). The mNGS 95% limit of detection ranged from 14 copies/ml (HHV-6) to 191 copies/ml (BKV), and the lower limit of quantitation ranged from 442 international units (IU)/ml (EBV) to 661 copies/ml (VZV). An evaluation of 50 residual plasma samples with at least one DNA virus detected in prior clinical testing showed a total percent agreement of mNGS and quantitative PCR (qPCR) of 89.2% (306/343), with a κ statistic of 0.725. The positive percent agreement was 84.9% (73/86), and the negative percent agreement was 90.7% (233/257). Furthermore, mNGS detected seven subsequently confirmed coinfections that were not initially requested by qPCR. Passing-Bablok regression revealed a regression line of y = 0.953x + 0.075 (95% confidence interval [CI] of the slope, 0.883 to 1.011; intercept, –0.100 to 0.299), and Bland-Altman analysis (mNGS – qPCR) showed a slight positive bias (0.28 log10 concentration; 95% limits of agreement, –0.62 to 1.18). In conclusion, the mNGS-based Galileo pipeline demonstrates analytical and clinical performance comparable to that of qPCR for transplant-related DNA viruses.”
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Workshop – Evaluation of the Galileo™ Pathogen Solution Next-Generation Sequencing Pipeline for the Detection and Quantitation of DNA Viruses in Immunocompromised Hosts
Evaluation of the Galileo Pathogen Solution Next-Generation Sequencing Pipeline for the Detection and Quantitation of DNA Viruses in Immunocompromised Hosts
Clinical Virology Symposium 2019 – WorkshopPart of a workshop presented at the Clinical Virology Symposium on May 6th, 2019 by Dr. Benjamin Pinsky, Associate Professor of Pathology and Medicine at Stanford Health Care and Stanford Children’s Health.
Dr. Pinsky outlines the current state of clinical virology testing for immunocompromised hosts and presents data from a single institution retrospective study of the Galileo™-Transplant NGS Pipeline for detection and quantitation of DNA viruses conducted at Stanford Health Care.
In this presentation you will learn:
- Why deploying NGS-based metagenomics (mNGS) into your laboratory makes sense
- How mNGS compares with and improves upon qPCR as a detection platform
- How to validate mNGS-based assays in your laboratory
- How mNGS identified additional viruses missed by conventional qPCR in over 50% of samples
Workshop Video (18:51 minutes):
Workshop Slide Deck (17 slides):
Do you have a question about Galileo™?
We’d love to hear from you!
Workshop – Enabling NGS-based metagenomics in the clinical virology laboratory
Enabling NGS-based metagenomics in the clinical virology laboratory
Clinical Virology Symposium 2019 – Full WorkshopThis workshop was presented at the Clinical Virology Symposium on May 6th, 2019 by:
- Dr. Benjamin Pinsky of Stanford Health Care and Stanford Children’s Clinic
- Dr. Julianne Brown of Great Ormond Street Hospital for Children NHS Foundation Trust
- Dr. Jesus Ching, Senior Vice President of R&D at Arc Bio.
The workshop examines the use of NGS-based metagenomics as a platform for pathogen detection in the clinical virology laboratory.
In these workshop presentations you will learn:
- What is NGS-based metagenomics (mNGS) is and how it can be applied to pathogen detection
- How mNGS compares with and improves upon qPCR as a detection platform
- What the mNGS workflow looks like when deployed in your laboratory
- Why deploying mNGS into your laboratory makes sense
- How mNGS has been used to identify unexpected and novel pathogens related to viral encephalitis
- How mNGS identified additional viruses missed by conventional qPCR in over 50% of samples
- How to validate mNGS-based assays in your laboratory
- How Arc Bio has approached mNGS with its Galileo™ platform
Dr. Benjamin Pinsky
Medical Director, Clinical Virology,
Stanford Health Care and Stanford Children’s Health
Evaluation of the Galileo™ Pathogen Solution Next- Generation Sequencing Pipeline for the Detection and Quantitation of DNA Viruses in Immunocompromised Hosts
Dr. Julianne Brown
Clinical Scientist,
Great Ormond Street Hospital for Children NHS Foundation Trust
How can we use metagenomics for the diagnosis and management of patients?
Dr. Jesus Ching
Senior VP R&D, Arc Bio LLC
Introduction to the Galileo™ Pathogen Solution platform
Workshop Video (1 hour 21 minutes):
Dr. Jesus Ching’s Slides (20 slides):
Dr. Ben Pinsky’s Slides (17 slides):
Dr. Julianne Brown’s Slides (21 slides):


