Unit-based clinical pharmacists' prevention of serious medication errors in pediatric inpatients

Rainu Kaushal1, David W Bates, Erika L Abramson

  • 1Department of Public Health, Weill Cornell Medical College, New York, NY 10021, USA. rak2007@med.cornell.edu

Insights

A full-time clinical pharmacist significantly reduced serious medication errors in a pediatric intensive care unit (ICU). However, part-time pharmacists did not reduce errors in general pediatric care units.

Area of Science:

  • Pediatric Pharmacy Practice
  • Medication Safety
  • Inpatient Care Quality

Background:

  • Serious medication errors pose a significant risk in pediatric inpatient settings.
  • The impact of unit-based clinical pharmacists on medication error rates in pediatric units requires further investigation.

Purpose of the Study:

  • To evaluate the effect of introducing unit-based clinical pharmacists on serious medication error rates.
  • To compare the impact of full-time versus part-time clinical pharmacist presence in different pediatric inpatient units.

Main Methods:

  • A pre- and post-intervention study design was employed across pediatric intensive care, general medical, and general surgical units.
  • Error rates were assessed using daily chart reviews by trained nurses, with independent physician validation.
  • Serious medication errors were defined as preventable adverse drug events (ADEs) and non-intercepted near misses.

Main Results:

  • Serious medication error rates per 1000 patient days decreased from 29 to 6 in the pediatric ICU after implementing a full-time clinical pharmacist.
  • No significant reduction in serious medication error rates was observed in the general medical and surgical units with part-time pharmacist coverage.

Conclusions:

  • Full-time unit-based clinical pharmacists are effective in substantially reducing serious medication errors in pediatric ICUs.
  • Part-time clinical pharmacist services in general pediatric care units did not demonstrate a significant impact on medication error reduction.
Abstract

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