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Multiplex Therapeutic Drug Monitoring by Isotope-dilution HPLC-MS/MS of Antibiotics in Critical Illnesses
Published on: August 30, 2018
Evaluating Safety Reporting in Paediatric Antibiotic Trials, 2000-2016: A Systematic Review and Meta-Analysis
Paola Pansa1,2, Yingfen Hsia1, Julia Bielicki1,3
1Paediatric Infectious Disease Research Group, Institute for Infection and Immunity, St George's University of London, Jenner Wing, Level 2, Room 2.215E, Cranmer Terrace, London, SW17 0RE, UK.
Insights
Adverse events (AEs) in pediatric antibiotic clinical trials (CTs) are predictable and class-specific, with no unexpected age-related side effects found. Streamlining trials by extrapolating adult safety data can accelerate new antibiotic development for children.
Area of Science:
- Pediatric pharmacology
- Infectious diseases
- Clinical trial methodology
Background:
- Limited treatment options exist for pediatric multidrug-resistant bacterial infections.
- Regulatory trial duration and complexity are major barriers to developing new pediatric antibiotics.
- Extrapolating adult safety data could expedite pediatric drug development.
Purpose of the Study:
- Systematically review the safety of antibiotic clinical trials (CTs) in children (0-18 years).
- Evaluate the quality of pediatric safety trials.
- Identify age-specific adverse events (AEs) for antibiotic classes.
Main Methods:
- Searched MEDLINE, Cochrane CENTRAL, and ClinicalTrials.gov (2000-2016).
- Included trials with safety as a primary/secondary endpoint; excluded topical/inhaled routes, non-infectious conditions, prophylaxis, specific populations, and non-RCT designs.
- Assessed trial quality using the CONSORT Extension for harms checklist.
- Quantitatively assessed AE rates by drug class using meta-analysis.
Main Results:
- Included 83 CTs with 27,693 children; 69.7% of CONSORT items were reported.
- Median proportion of any AE was 22.5%, with <8% in any single body system.
- Serious drug-related AEs and discontinuations were rare (median 0.3% and 0.9%).
Conclusions:
- AEs in pediatric antibiotic CTs are predictable and class-specific; no unexpected age-specific AEs were identified.
- Smaller, high-quality pharmacokinetic trials may suffice for common antibiotics, leveraging adult safety data.
- This approach can shorten trial duration, facilitate registration of needed antibiotics, and requires enhanced pharmacovigilance.
Background:
There are very few options to treat multidrug-resistant bacterial infections in children. A major barrier is the duration and complexity of regulatory trials of new antibiotics. Extrapolation of safety data from adult trials could facilitate drug development for children.
Objective:
We performed a systematic review on the safety of antibiotic clinical trials (CTs) in children (0-18 years) to evaluate the overall quality of safety trials conducted in children and to determine if age-specific adverse events (AEs) could be identified for specific antibiotic classes.
Data Sources:
We searched the MEDLINE, Cochrane CENTRAL, and ClinicalTrials.gov electronic databases for trials conducted between 2000 and 2016.
Study Selection:
All trials in which safety was declared a primary or secondary endpoint were included. Exclusion criteria were (1) topical or inhalational route of administration; (2) non-infectious conditions; (3) administration for prophylaxis rather than treatment; (4) selected population (i.e. cystic fibrosis, malignancies, HIV and tuberculosis); and (5) design other than randomized controlled trials. Trials reporting data on both adults and children were included only if paediatric results were reported separately.
Data Extraction And Synthesis:
Two authors independently extracted the data. To assess the quality of published trials, the Extension for harms for Consolidated Standards of Reporting Trials (CONSORT) Statement 2004 was used.
Main Outcome And Measure:
In order to quantitatively assess the rate of developing AEs by drug class, the numbers of overall and body-system-specific AEs were collected for each study arm, and then calculated per single drug class as median and interquartile range (IQR) of the proportions across CTs. The AEs most frequently reported were compared in the meta-analysis by selecting the CTs on the most represented drug classes.
Results:
Eighty-three CTs were included, accounting for 27,693 children. Overall, 69.7% of CONSORT items were fully reported. The median proportion of children with any AE was 22.5%, but did not exceed 8% in any single body system. Serious drug-related AEs and drug-related discontinuations were very rare (median 0.3 and 0.9%, respectively). Limitations included the inability to stratify by age group, particularly neonates.
Conclusions And Relevance:
Overall, AEs in paediatric antibiotic CTs were predictable and class-specific, and no unexpected (age-specific) side effects were identified. Smaller, open-label, dose-finding, high-quality, single-arm pharmacokinetic trials seem potentially sufficient for certain common antibiotic classes, extrapolating well-established safety profiles determined from large adult efficacy trials. This approach could reduce duration and enhance subsequent registration of urgently needed new antibiotics. This will need to be combined with enhanced methods of pharmacovigilance for monitoring of emerging AEs in routine clinical practice.
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