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Detection of Invasive Pulmonary Aspergillosis in Haematological Malignancy Patients by using Lateral-flow Technology
Published on: March 22, 2012
COVID-19-Associated Invasive Aspergillosis: Data from the UK National Mycology Reference Laboratory
Andrew M Borman1,2, Michael D Palmer3, Mark Fraser3
1UK National Mycology Reference Laboratory, Public Health England South-West, Bristol, United Kingdom Andy.Borman@nbt.nhs.uk.
Abstract:
COVID-19-associated pulmonary aspergillosis (CAPA) was recently reported as a potential infective complication affecting critically ill patients with acute respiratory distress syndrome following severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection, with incidence rates varying from 8 to 33% depending on the study. However, definitive diagnosis of CAPA is challenging. Standardized diagnostic algorithms and definitions are lacking, clinicians are reticent to perform aerosol-generating bronchoalveolar lavages for galactomannan testing and microscopic and cultural examination, and questions surround the diagnostic sensitivity of different serum biomarkers. Between 11 March and 14 July 2020, the UK National Mycology Reference Laboratory received 1,267 serum and respiratory samples from 719 critically ill UK patients with COVID-19 and suspected pulmonary aspergillosis. The laboratory also received 46 isolates of Aspergillus fumigatus from COVID-19 patients (including three that exhibited environmental triazole resistance). Diagnostic tests performed included 1,000 (1-3)-β-d-glucan and 516 galactomannan tests on serum samples. The results of this extensive testing are presented here. For a subset of 61 patients, respiratory specimens (bronchoalveolar lavage specimens, tracheal aspirates, and sputum samples) in addition to serum samples were submitted and subjected to galactomannan testing, Aspergillus-specific PCR, and microscopy and culture. The incidence of probable/proven and possible CAPA in this subset of patients was approximately 5% and 15%, respectively. Overall, our results highlight the challenges in biomarker-driven diagnosis of CAPA, especially when only limited clinical samples are available for testing, and the importance of a multimodal diagnostic approach involving regular and repeat testing of both serum and respiratory samples.
Insights
Diagnosing COVID-19-associated pulmonary aspergillosis (CAPA) is difficult. A multimodal approach using repeated serum and respiratory sample testing is crucial for accurate diagnosis in critically ill patients.
Area of Science:
- Mycology
- Infectious Diseases
- Critical Care Medicine
Background:
- COVID-19-associated pulmonary aspergillosis (CAPA) is a serious complication in critically ill COVID-19 patients.
- Current diagnostic methods for CAPA face challenges, including a lack of standardized definitions and clinician hesitancy towards invasive procedures.
- The diagnostic sensitivity of various serum biomarkers for CAPA remains uncertain.
Purpose of the Study:
- To investigate the incidence and diagnostic challenges of CAPA in critically ill UK patients.
- To evaluate the utility of different diagnostic tests, including serum biomarkers and respiratory sample analysis, for CAPA detection.
- To emphasize the importance of a comprehensive diagnostic strategy.
Main Methods:
- Analysis of serum and respiratory samples from 719 critically ill COVID-19 patients with suspected CAPA.
- Performance of diagnostic tests including galactomannan, (1-3)-β-d-glucan, Aspergillus-specific PCR, microscopy, and culture.
- Detailed examination of a subset of 61 patients with paired serum and respiratory samples.
Main Results:
- The incidence of probable/proven CAPA was approximately 5% and possible CAPA was approximately 15% in the studied subset.
- Results highlight significant challenges in biomarker-driven diagnosis, particularly with limited clinical samples.
- Three isolates of Aspergillus fumigatus exhibited environmental triazole resistance.
Conclusions:
- A multimodal diagnostic approach, incorporating regular and repeat testing of both serum and respiratory samples, is essential for accurate CAPA diagnosis.
- Further research is needed to refine diagnostic algorithms and improve biomarker sensitivity for CAPA.
- Addressing challenges in CAPA diagnosis is critical for improving outcomes in critically ill COVID-19 patients.
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