Critical Illness Clinical Trial
Official title:
A Clinical Data-Based Model for Drug Concentration Prediction of Vancomycin in Critical Patients
Verified date | May 2024 |
Source | Peking Union Medical College Hospital |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Observational |
Objective: This study aims to use machine learning methods to establish an optimal model for predicting serum vancomycin trough concentrations in critically ill patients. Methods: This is a single-center, retrospective study. Data on serum vancomycin concentration in the Critical Care Database of Peking Union Medical College Hospital were screened and extracted to construct a prediction model using machine learning methods. The MIMIC-IV (Medical Information Mart for Intensive Care) database will be further used for external verification of the constructed model. The study has been approved by the Medical Ethics Committee of Peking Union Medical College Hospital (K24C1161).
Status | Active, not recruiting |
Enrollment | 401 |
Est. completion date | August 31, 2024 |
Est. primary completion date | August 31, 2024 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 18 Years and older |
Eligibility | Inclusion Criteria: - Age =18 years; - Patients admitted to ICUs; - Patients were administered intravenous vancomycin; - Vancomycin TDM was performed at least two times. Exclusion Criteria: - Vancomycin TDM was performed in a ward rather than in an ICU; - Patients with missing data. |
Country | Name | City | State |
---|---|---|---|
China | Peking Union Medical College Hospita | Beijing | Beijing |
Lead Sponsor | Collaborator |
---|---|
Peking Union Medical College Hospital |
China,
Doupe P, Faghmous J, Basu S. Machine Learning for Health Services Researchers. Value Health. 2019 Jul;22(7):808-815. doi: 10.1016/j.jval.2019.02.012. — View Citation
Ingram PR, Lye DC, Tambyah PA, Goh WP, Tam VH, Fisher DA. Risk factors for nephrotoxicity associated with continuous vancomycin infusion in outpatient parenteral antibiotic therapy. J Antimicrob Chemother. 2008 Jul;62(1):168-71. doi: 10.1093/jac/dkn080. E — View Citation
Obermeyer Z, Emanuel EJ. Predicting the Future - Big Data, Machine Learning, and Clinical Medicine. N Engl J Med. 2016 Sep 29;375(13):1216-9. doi: 10.1056/NEJMp1606181. No abstract available. — View Citation
Rybak MJ, Le J, Lodise TP, Levine DP, Bradley JS, Liu C, Mueller BA, Pai MP, Wong-Beringer A, Rotschafer JC, Rodvold KA, Maples HD, Lomaestro B. Therapeutic Monitoring of Vancomycin for Serious Methicillin-resistant Staphylococcus aureus Infections: A Rev — View Citation
Yasuhara M, Iga T, Zenda H, Okumura K, Oguma T, Yano Y, Hori R. Population pharmacokinetics of vancomycin in Japanese adult patients. Ther Drug Monit. 1998 Apr;20(2):139-48. doi: 10.1097/00007691-199804000-00003. — View Citation
Ye ZK, Li C, Zhai SD. Guidelines for therapeutic drug monitoring of vancomycin: a systematic review. PLoS One. 2014 Jun 16;9(6):e99044. doi: 10.1371/journal.pone.0099044. eCollection 2014. — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | The predicted serum vancomycin concentration | The serum vancomycin concentration predicted by the constructed model | 1 day |
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