Universal digital high resolution melt analysis for the diagnosis of bacteremia

Author:

Aralar April,Goshia Tyler,Ramchandar Nanda,Lawrence Shelley M.,Karmakar Aparajita,Sharma Ankit,Sinha Mridu,Pride David T.,Kuo Peiting,Lecrone Khrissa,Chiu Megan,Mestan Karen,Sajti Eniko,Vanderpool Michelle,Lazar Sarah,Crabtree Melanie,Tesfai Yordanos,Fraley Stephanie I.ORCID

Abstract

ABSTRACTFast and accurate diagnosis of bloodstream infection is necessary to inform treatment decisions for septic patients, who face hourly increases in mortality risk. Blood culture remains the gold standard test but typically requires ∼15 hours to detect the presence of a pathogen. Here, we assess the potential for universal digital high-resolution melt (U-dHRM) analysis to accomplish faster broad-based bacterial detection, load quantification, and species-level identification directly from whole blood. Analytical validation studies demonstrated strong agreement between U-dHRM load measurement and quantitative blood culture, indicating that U-dHRM detection is highly specific to intact organisms. In a pilot clinical study of 21 whole blood samples from pediatric patients undergoing simultaneous blood culture testing, U-dHRM achieved 100% concordance when compared with blood culture and 90.5% concordance when compared with clinical adjudication. Moreover, U-dHRM identified the causative pathogen to the species level in all cases where the organism was represented in the melt curve database. These results were achieved with a 1 mL sample input and sample-to-answer time of 6 hrs. Overall, this pilot study suggests that U-dHRM may be a promising method to address the challenges of quickly and accurately diagnosing a bloodstream infection.Universal digital high resolution melt analysis for the diagnosis of bacteremiaApril Aralar, Tyler Goshia, Nanda Ramchandar, Shelley M. Lawrence, Aparajita Karmakar, Ankit Sharma, Mridu Sinha, David Pride, Peiting Kuo, Khrissa Lecrone, Megan Chiu, Karen Mestan, Eniko Sajti, Michelle Vanderpool, Sarah Lazar, Melanie Crabtree, Yordanos Tesfai, Stephanie I. Fraley

Publisher

Cold Spring Harbor Laboratory

Reference66 articles.

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