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JAMA Netw Open ; 5(8): e2226892, 2022 08 01.
Article in English | MEDLINE | ID: covidwho-1990385

ABSTRACT

Importance: Effective COVID-19 vaccines and therapeutics reached the market within the first year of the pandemic. This rate of development and availability was an unprecedented achievement that required attention to numerous research and development, regulatory, and policy challenges. However, only limited evidence is currently available on the sources of funding for COVID-19 clinical trials. Objective: To compare the number and funding sources of clinical trials aimed at investigating therapeutics and vaccines for COVID-19 vs those for all non-COVID-19 indications. Design, Setting, and Participants: In this cross-sectional study, clinical trials in phase 1 to 3 that were registered to start between January 1, 2020, and August 31, 2021, were examined. All relevant data were collected from ClinicalTrials.gov. Main Outcomes and Measures: Number of clinical trials and their funding sources. Results: A total of 1977 clinical trials that addressed COVID-19 therapeutics and vaccines were registered worldwide with starting dates from January 1, 2020, to August 31, 2021. This cohort represented 13.9% of all trials (N = 14 274) during the same period. Most of the COVID-19 therapeutic and vaccine clinical trials were funded by public sources (1144 [57.9%]), followed by industry (540 [27.3%]) and public-private partnerships (293 [14.8%]). Most of these studies focused on the development of anti-COVID-19 therapeutics (1680 [85.0%]) rather than vaccines (297 [15.0%]). Conclusions and Relevance: The findings of this study suggest that publicly funded research and medical institutions played a leading role as funding sources for generating effective COVID-19 therapeutics and vaccines during the first 1.5 years of the pandemic and were most likely instrumental in their rapid development. It may be beneficial for the public sector to maintain the affordability and global access to these therapeutics and vaccines to ensure that they remain available for use worldwide.


Subject(s)
COVID-19 Vaccines , COVID-19 , Clinical Trials as Topic , COVID-19/epidemiology , COVID-19/prevention & control , COVID-19 Vaccines/therapeutic use , Clinical Trials as Topic/economics , Cross-Sectional Studies , Humans , Pandemics
2.
J Antimicrob Chemother ; 77(4): 1185-1188, 2022 03 31.
Article in English | MEDLINE | ID: covidwho-1672217

ABSTRACT

BACKGROUND: The COVID-19 pandemic has severely impacted healthcare delivery and there are growing concerns that the pandemic will accelerate antimicrobial resistance. OBJECTIVES: To evaluate the impact of the COVID-19 pandemic on antibiotic prescribing in a tertiary paediatric hospital in London, UK. METHODS: Data on patient characteristics and antimicrobial administration for inpatients treated between 29 April 2019 and Sunday 28 March 2021 were extracted from the electronic health record (EHR). Interrupted time series analysis was used to evaluate antibiotic days of therapy (DOT) and the proportion of prescribed antibiotics from the WHO 'Access' class. RESULTS: A total of 23 292 inpatient admissions were included. Prior to the pandemic there were an average 262 admissions per week compared with 212 during the pandemic period. Patient demographics were similar in the two periods but there was a shift in the specialities that patients had been admitted to. During the pandemic, there was a crude increase in antibiotic DOTs, from 801 weekly DOT before the pandemic to 846. The proportion of Access antibiotics decreased from 44% to 42%. However, after controlling for changes in patient characteristics, there was no evidence for the pandemic having an impact on antibiotic prescribing. CONCLUSIONS: The patient population in a specialist children's hospital was affected by the COVID-19 pandemic, but after adjusting for these changes there was no evidence that antibiotic prescribing was significantly affected by the pandemic. This highlights both the value of routine, high-quality EHR data and importance of appropriate statistical methods that can adjust for underlying changes to populations when evaluating impacts of the pandemic on healthcare.


Subject(s)
COVID-19 Drug Treatment , Pandemics , Anti-Bacterial Agents , Child , Hospitals, Pediatric , Humans , Interrupted Time Series Analysis
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