Please use this identifier to cite or link to this item: https://hdl.handle.net/1/2803
Title: Environmental and financial impacts of perioperative paracetamol use: a multicentre international life-cycle assessment
Authors: Davies, Jessica F;McAlister, Scott;Eckelman, Matthew J;McGain, Forbes;Seglenieks, Richard;Gutman, Elena N;Groome, Jonathan;Palipane, Natasha;Latoff, Katherine;Nielsen, Dominic;Sherman, Jodi D;Wong, Sarah (Collaborator) 
Affliation: Central Coast Local Health District
Gosford Hospital
Issue Date: Dec-2024
Source: 133(6):1439-1448
Journal title: British Journal of Anaesthesia
Department: Anaesthesia
Abstract: Pharmaceuticals account for 19-32% of healthcare greenhouse gas (GHG) emissions. Paracetamol is a common perioperative analgesic agent. We estimated GHG emissions associated with i.v. and oral formulations of paracetamol used in the perioperative period. Life-cycle assessment of GHG emissions (expressed as carbon dioxide equivalents CO2e) of i.v. and oral paracetamol preparations was performed. Perioperative paracetamol prescribing practices and costs for 26 hospitals in USA, UK, and Australia were retrospectively audited. For those surgical patients for whom oral formulations were indicated, CO2e and costs of actual prescribing practices for i.v. or oral doses were compared with optimal oral prescribing. The carbon footprint for a 1 g dose was 38 g CO2e (oral tablet), 151 g CO2e (oral liquid), and 310-628 g CO2e (i.v. dependent on type of packaging and administration supplies). Of the eligible USA patients, 37% received paracetamol (67% was i.v.). Of the eligible UK patients, 85% received paracetamol (80% was i.v.). Of the eligible Australian patients, 66% received paracetamol (70% was i.v.). If the emissions mitigation opportunity from substituting oral tablets for i.v. paracetamol is extrapolated to USA, UK, and Australia elective surgical encounters in 2019, ∼5.7 kt CO2e could have been avoided and would save 98.3% of financial costs. Intravenous paracetamol has 12-fold greater life-cycle carbon emissions than the oral tablet form. Glass vials have higher greenhouse gas emissions than plastic vials. Intravenous administration should be reserved for cases in which oral formulations are not feasible.
URI: https://hdl.handle.net/1/2803
DOI: 10.1016/j.bja.2023.11.053
Pubmed: https://pubmed.ncbi.nlm.nih.gov/38296752
Publicaton type: Journal Article
Keywords: Anaesthetics
Anesthetics
Study or Trial: Multicentre Studies
Appears in Collections:Health Service Research

Show full item record

Page view(s)

8
checked on Dec 11, 2024

Google ScholarTM

Check

Altmetric


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.