Diagnosis of genetic diseases in seriously ill children by rapid whole-genome sequencing and automated phenotyping and interpretation

التفاصيل البيبلوغرافية
العنوان: Diagnosis of genetic diseases in seriously ill children by rapid whole-genome sequencing and automated phenotyping and interpretation
المؤلفون: Terence C. Wong, Marie L. Janes, John Reynders, Martin G. Reese, Brett Williams, Patrick Mulrooney, Sergey Batalov, Kristen Wigby, Brandon Camp, Lauge Farnaes, Joshua J.A. Braun, Meredith S. Wright, Narayanan Veeraraghavan, Jeremy Gore, Shareef Nahas, David Dimmock, Sheldon Gilmer, Lisa Salz, Albert Oriol, Mari Tokita, Kejia Lin, Thomas Defay, Erica Sanford, Catherine Yamada, Nathaly M. Sweeney, Stephen F. Kingsmore, Yan Ding, Christina Clarke, Laura Puckett, Katarzyna A. Ellsworth, Richard Gain, Shauna George, Luca Van Der Kraan, Margaret Bray, Mary Gaughran, Curtis Beebe, Alison Frith, Kevin Hall, Kyle McBride, Amber Hildreth, Michelle M. Clark, Haiying Li Grunenwald, Julie Ryu, Cyrielle Kint, Kelly Watkins, Mitchell Creed, Jennifer Friedman, Shimul Chowdhury, Paul D. McDonagh, Zia Rady, Peter Schols, Joseph G. Gleeson, Julie A. Cakici, Lawrence Stewart, Raymond Hovey, Jeanne Carroll, Matthew N. Bainbridge, Daeheon Oh, Calum Yacoubian, Sara A. Caylor, Sarah White
المصدر: Science translational medicine. 11(489)
سنة النشر: 2018
مصطلحات موضوعية: 0301 basic medicine, medicine.medical_specialty, 030105 genetics & heredity, Phenome, Genome, DNA sequencing, Diabetic Ketoacidosis, 03 medical and health sciences, Intensive care, medicine, Electronic Health Records, Humans, Medical diagnosis, Intensive care medicine, Natural Language Processing, Retrospective Studies, Whole genome sequencing, business.industry, General Medicine, Genomics, Intensive Care Units, 030104 developmental biology, DECIPHER, Female, Precision and recall, business
الوصف: By informing timely targeted treatments, rapid whole-genome sequencing can improve the outcomes of seriously ill children with genetic diseases, particularly infants in neonatal and pediatric intensive care units (ICUs). The need for highly qualified professionals to decipher results, however, precludes widespread implementation. We describe a platform for population-scale, provisional diagnosis of genetic diseases with automated phenotyping and interpretation. Genome sequencing was expedited by bead-based genome library preparation directly from blood samples and sequencing of paired 100-nt reads in 15.5 hours. Clinical natural language processing (CNLP) automatically extracted children’s deep phenomes from electronic health records with 80% precision and 93% recall. In 101 children with 105 genetic diseases, a mean of 4.3 CNLP-extracted phenotypic features matched the expected phenotypic features of those diseases, compared with a match of 0.9 phenotypic features used in manual interpretation. We automated provisional diagnosis by combining the ranking of the similarity of a patient’s CNLP phenome with respect to the expected phenotypic features of all genetic diseases, together with the ranking of the pathogenicity of all of the patient’s genomic variants. Automated, retrospective diagnoses concurred well with expert manual interpretation (97% recall and 99% precision in 95 children with 97 genetic diseases). Prospectively, our platform correctly diagnosed three of seven seriously ill ICU infants (100% precision and recall) with a mean time saving of 22:19 hours. In each case, the diagnosis affected treatment. Genome sequencing with automated phenotyping and interpretation in a median of 20:10 hours may increase adoption in ICUs and, thereby, timely implementation of precise treatments.
تدمد: 1946-6242
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::eae12e1a0000f934abf88f8fe62cbf0a
https://pubmed.ncbi.nlm.nih.gov/31171871
رقم الانضمام: edsair.doi.dedup.....eae12e1a0000f934abf88f8fe62cbf0a
قاعدة البيانات: OpenAIRE