Goolden Callum, Shorten Robert J
UKHSA, Manchester, England, UK.
Department of Microbiology, Lancashire Teaching Hospitals NHS Foundation Trust, Lancashire, UK.
Access Microbiol. 2025 Sep 3;7(9). doi: 10.1099/acmi.0.000977.v3. eCollection 2025.
Optimization of diagnostic testing is essential for the sustainable delivery of laboratory services. To date, little consideration has been given to the potential benefits of diagnostic stewardship to laboratories looking to reduce their environmental footprint. Implementing a pre-analytical diagnostic stewardship intervention for the testing of superficial wound swabs would result in a measurable reduction in the environmental footprint of the microbiology laboratory. To assess the consequential impact of a diagnostic stewardship intervention on test volume, carbon footprint and quantity of non-recyclable plastic waste generated. Superficial wound swabs received in the absence of clinical details suggestive of active skin and soft tissue infection were rejected by the laboratory. The carbon footprint of testing was estimated using Publicly Available Specification 2050:2011 methodology in a cradle-to-grave, attributional life-cycle assessment within a defined system boundary. The mass of laboratory plastic waste was calculated through the accurate weighing of associated laboratory consumables. The intervention resulted in a reduction of 35.77 kg COe and 9.06 kg of unrecyclable plastic waste over an 8-day period without measurable patient harm. This study demonstrates, in relation to specific testing pathways, that the optimization of microbiology laboratory diagnostic testing can result in a reduction in greenhouse gas emissions and non-recyclable plastic waste generation without negatively impacting patient care.
优化诊断检测对于实验室服务的可持续提供至关重要。迄今为止,对于诊断管理对希望减少其环境足迹的实验室的潜在益处,人们考虑甚少。对浅表伤口拭子检测实施分析前诊断管理干预措施,将使微生物实验室的环境足迹得到可衡量的减少。评估诊断管理干预措施对检测量、碳足迹和产生的不可回收塑料废物量的相应影响。对于没有提示有活动性皮肤和软组织感染临床细节的情况下收到的浅表伤口拭子,实验室予以拒收。检测的碳足迹采用《公开可用规范2050:2011》方法,在定义的系统边界内进行从摇篮到坟墓的归因生命周期评估来估算。实验室塑料废物的质量通过对相关实验室耗材的精确称重来计算。该干预措施在8天内减少了35.77千克二氧化碳当量和9.06千克不可回收塑料废物,且未对患者造成可衡量的伤害。这项研究表明,就特定检测途径而言,微生物实验室诊断检测的优化可减少温室气体排放和不可回收塑料废物的产生,而不会对患者护理产生负面影响。