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Updated: Jan 4, 2026

Unbiased Deep Sequencing of RNA Viruses from Clinical Samples
Published on: July 2, 2016
Direct-from-blood RNA sequencing identifies the cause of post-bronchoscopy fever
Emily R Ko1,2, Casandra W Philipson3,4, Thomas W Burke1
1Center for Applied Genomics and Precision Medicine, Duke University School of Medicine, Durham, NC, 27708, USA.
Background:
Antibiotic resistance is rising at disturbing rates and contributes to the deaths of millions of people yearly. Antibiotic resistant infections disproportionately affect those with immunocompromising conditions, chronic colonization, and frequent antibiotic use such as transplant patients or those with cystic fibrosis. However, clinicians lack the diagnostic tools to confidently diagnose and treat infections, leading to widespread use of empiric broad spectrum antimicrobials, often for prolonged duration.
Case Presentation:
A 22 year-old Caucasian female with cystic fibrosis received a bilateral orthotopic lung transplantation 5 months prior to the index hospitalization. She underwent routine surveillance bronchoscopy and was admitted for post-procedure fever. A clear cause of infection was not identified by routine methods. Imaging and bronchoscopic lung biopsy did not identify an infectious agent or rejection. She was treated with a prolonged course of antimicrobials targeting known colonizing organisms from prior bronchoalveolar lavage cultures (Pseudomonas, Staphylococcus aureus, and Aspergillus). However, we identified Stenotrophomonas maltophilia in two independent whole blood samples using direct-pathogen sequencing, which was not identified by other methods.
Conclusions:
This case represents a common clinical conundrum: identification of infection in a high-risk, complex patient. Here, direct-pathogen sequencing identified a pathogen that would not otherwise have been identified by common techniques. Had results been clinically available, treatment could have been customized, avoiding a prolonged course of broad spectrum antimicrobials that would only exacerbate resistance. Direct-pathogen sequencing is poised to fill a diagnostic gap for pathogen identification, allowing early identification and customization of treatment in a culture-independent, pathogen-agnostic manner.
Insights
Direct-pathogen sequencing identified Stenotrophomonas maltophilia in a cystic fibrosis lung transplant patient when standard methods failed. This advanced technique enables customized treatment, combating antibiotic resistance and improving patient outcomes.
Area of Science:
- Infectious Diseases
- Genomics
- Transplant Medicine
Background:
- Antibiotic resistance is a growing global health crisis, causing millions of deaths annually.
- Complex patients, like those with cystic fibrosis or organ transplants, are particularly vulnerable to antibiotic-resistant infections.
- Current diagnostic limitations necessitate broad-spectrum antibiotic use, exacerbating resistance.
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