Metagenomic Next-Generation Sequencing Identifies Pathogens Causing CNS Infections
By LabMedica International staff writers Posted on 12 Jul 2024 |

Metagenomic next-generation sequencing (mNGS) is a shotgun sequencing method where all the nucleic acid (DNA and RNA) in a clinical sample is sequenced at a very high depth, 10-20 million sequences per sample. This technique is applicable to various clinical samples, including cerebrospinal fluid, plasma, respiratory secretions, urine, stool, or tissue. A single mNGS test can detect sequences from all pathogens—viruses, bacteria, fungi, and parasites—thereby aiding in identifying the potential cause of a patient’s infection. Now, data from a new study underscores the effectiveness and diagnostic capabilities of mNGS in diagnosing infectious diseases such as meningitis, encephalitis, and myelitis in both adults and children.
mNGS technology, originally developed at the University of California, San Francisco (UCSF, San Francisco, CA, USA) and exclusively licensed to Delve Bio (Boston, MA, USA), has been hailed as the future of infectious disease diagnostics, enabling physicians to avoid frustrating cycles of testing for patients battling serious neurological infections. The study analyzed over 4,800 patients who underwent cerebrospinal fluid (CSF) mNGS testing from 2016 to 2023. The results revealed that mNGS identified 797 organisms from 697 out of 4,828 samples (14.4%), encompassing 440 unique pathogenic species. The detection covered DNA and RNA viruses in nearly three-quarters of the cases, along with a wide range of bacteria, fungi, and parasites.
Further analysis and clinical review of more than 1,000 patients treated at UCSF indicated that 21.8% (48 out of 220) of infections were exclusively detected by mNGS. The sensitivity and specificity of CSF mNGS testing in clinically diagnosed infections were 63.1% and 99.6%, respectively, with a positive predictive value (PPV) of 97.1%, and a negative predictive value (NPV) of 92.3%. Comparatively, CSF mNGS demonstrated a higher diagnostic yield (63.1%) than all other forms of direct detection testing from CSF (45.9%), direct detection from non-CSF samples (15.0%), and indirect serologic testing (28.8%).
“Our experience over the seven years at UCSF covered in these studies shows that mNGS delivers the single most conclusive, unbiased and actionable tool for the diagnosis of infectious diseases,” said Charles Chiu, M.D., Ph.D., Delve Bio co-founder and UCSF Professor of Laboratory Medicine and Infectious Diseases and Director of the Clinical Microbiology Laboratory. “These data offer a compelling look at our real-world experience of using mNGS to uncover the cause of difficult-to-diagnose central nervous system infections to guide timely management and treatment for these life-threatening conditions.”
Latest Molecular Diagnostics News
- Novel Cell-Based Assay Provides Sensitive and Specific Autoantibody Detection in Demyelination
- Novel Point-of-Care Technology Delivers Accurate HIV Results in Minutes
- Blood Test Rules Out Future Dementia Risk
- D-Dimer Testing Can Identify Patients at Higher Risk of Pulmonary Embolism
- New Biomarkers to Improve Early Detection and Monitoring of Kidney Injury
- Chemiluminescence Immunoassays Support Diagnosis of Alzheimer’s Disease
- Blood Test Identifies Multiple Biomarkers for Rapid Diagnosis of Spinal Cord Injury
- Highly Accurate Blood Test Diagnoses Alzheimer’s and Measures Dementia Progression
- Simple DNA PCR-Based Lab Test to Enable Personalized Treatment of Bacterial Vaginosis
- Rapid Diagnostic Test to Halt Mother-To-Child Hepatitis B Transmission
- Simple Urine Test Could Help Patients Avoid Invasive Scans for Kidney Cancer
- New Bowel Cancer Blood Test to Improve Early Detection
- Refined Test Improves Parkinson’s Disease Diagnosis
- New Method Rapidly Diagnoses CVD Risk Via Molecular Blood Screening
- Blood Test Shows Promise for Early Detection of Dementia
- CRISPR-Based Diagnostic Test Detects Pathogens in Blood Without Amplification
Channels
Clinical Chemistry
view channel
Carbon Nanotubes Help Build Highly Accurate Sensors for Continuous Health Monitoring
Current sensors can measure various health indicators, such as blood glucose levels, in the body. However, there is a need to develop more accurate and sensitive sensor materials that can detect lower... Read more
Paper-Based Device Boosts HIV Test Accuracy from Dried Blood Samples
In regions where access to clinics for routine blood tests presents financial and logistical obstacles, HIV patients are increasingly able to collect and send a drop of blood using paper-based devices... Read moreHematology
view channel
New Scoring System Predicts Risk of Developing Cancer from Common Blood Disorder
Clonal cytopenia of undetermined significance (CCUS) is a blood disorder commonly found in older adults, characterized by mutations in blood cells and a low blood count, but without any obvious cause or... Read more
Non-Invasive Prenatal Test for Fetal RhD Status Demonstrates 100% Accuracy
In the United States, approximately 15% of pregnant individuals are RhD-negative. However, in about 40% of these cases, the fetus is also RhD-negative, making the administration of RhoGAM unnecessary.... Read moreImmunology
view channel
Stem Cell Test Predicts Treatment Outcome for Patients with Platinum-Resistant Ovarian Cancer
Epithelial ovarian cancer frequently responds to chemotherapy initially, but eventually, the tumor develops resistance to the therapy, leading to regrowth. This resistance is partially due to the activation... Read more
Machine Learning-Enabled Blood Test Predicts Immunotherapy Response in Lymphoma Patients
Chimeric antigen receptor (CAR) T-cell therapy has emerged as one of the most promising recent developments in the treatment of blood cancers. However, over half of non-Hodgkin lymphoma (NHL) patients... Read moreMicrobiology
view channel
New AI-Based Method Improves Diagnosis of Drug-Resistant Infections
Drug-resistant infections, particularly those caused by deadly bacteria like tuberculosis and staphylococcus, are rapidly emerging as a global health emergency. These infections are more difficult to treat,... Read more
Breakthrough Diagnostic Technology Identifies Bacterial Infections with Almost 100% Accuracy within Three Hours
Rapid and precise identification of pathogenic microbes in patient samples is essential for the effective treatment of acute infectious diseases, such as sepsis. The fluorescence in situ hybridization... Read moreInnovative ID/AST System to Help Diagnose Infectious Diseases and Combat AMR
Each year, 11 million people across the world die of sepsis out of which 1.3 million deaths are due to antibiotic-resistant bacteria. The burden of antimicrobial resistance (AMR) continues to weigh heavily,... Read more
Gastrointestinal Panel Delivers Rapid Detection of Five Common Bacterial Pathogens for Outpatient Use
Acute infectious gastroenteritis results in approximately 179 million cases each year in the United States, leading to a significant number of outpatient visits and hospitalizations. To address this, a... Read morePathology
view channel
AI Model Effectively Predicts Patient Outcomes in Common Lung Cancer Type
Lung adenocarcinoma, the most common form of non-small cell lung cancer (NSCLC), typically adopts one of six distinct growth patterns, often combining multiple patterns within a single tumor.... Read more
AI Model Predicts Patient Response to Bladder Cancer Treatment
Each year in the United States, around 81,000 new cases of bladder cancer are diagnosed, leading to approximately 17,000 deaths annually. Muscle-invasive bladder cancer (MIBC) is a severe form of bladder... Read moreTechnology
view channel
Pain-On-A-Chip Microfluidic Device Determines Types of Chronic Pain from Blood Samples
Chronic pain is a widespread condition that remains difficult to manage, and existing clinical methods for its treatment rely largely on self-reporting, which can be subjective and especially problematic... Read more
Innovative, Label-Free Ratiometric Fluorosensor Enables More Sensitive Viral RNA Detection
Viruses present a major global health risk, as demonstrated by recent pandemics, making early detection and identification essential for preventing new outbreaks. While traditional detection methods are... Read moreIndustry
view channel
Cepheid and Oxford Nanopore Technologies Partner on Advancing Automated Sequencing-Based Solutions
Cepheid (Sunnyvale, CA, USA), a leading molecular diagnostics company, and Oxford Nanopore Technologies (Oxford, UK), the company behind a new generation of sequencing-based molecular analysis technologies,... Read more
Grifols and Tecan’s IBL Collaborate on Advanced Biomarker Panels
Grifols (Barcelona, Spain), one of the world’s leading producers of plasma-derived medicines and innovative diagnostic solutions, is expanding its offer in clinical diagnostics through a strategic partnership... Read more