Call Evan, Bill Brian, McLean Chad, Call Nathan, Bernkopf Allyn, Oberg Craig
Weber State University, Ogden, UT, USA.
Hosp Pharm. 2017 Sep;52(8):551-558. doi: 10.1177/0018578717722870. Epub 2017 Aug 20.
Hazardous drug contamination (HD) in healthcare environments continues, placing healthcare staff at risk of significantly chronic health problems, despite the use of personal protective equipment (PPE) and closed system transfer device systems (CSTDs). This study's aim was to determine how HD might spread through touch after handling contaminated vials in simulated pharmacy and nursing environments. UV fluorescent powder Glo Germ (Glo Germ Co., Moab, UT), composed of melamine resin, was used to simulate HD. Following manufacturer's exact usage specifications, five commercially available CSTDs were tested in the simulated pharmaceutical preparation environment under controlled conditions. UV fluorescence was used to detect the test medium powder that simulated HD following each trial. Photographs, using a Nikon D40X (10.2 mp) camera, were taken at selected stages of testing to document the presence of HD. Transfer of the HD testing medium (Glo Germ) to IV sets, pharmacy PPE, and nursing PPE was observed in 4 of 5 CSTDs tested. The only CSTDs that showed no observable contamination was the Allison Medical Safety Enclosed Vial Adapter (SEVA) system (Littleton, CO). Results show residue from HD vials spread as vial was handled in a pharmacy environment in 4 of 5 CSTDs, contaminating pharmacy PPE, ancillary products, and nursing PPE. No HD residue was detected on PPE, ancillary products, or nursing PPE in the pharmacy after using the SEVA system, providing an effective means to contain HD for drug transfer from vial to delivery system.
尽管使用了个人防护装备(PPE)和密闭系统转移装置系统(CSTD),医疗环境中的危险药物污染(HD)仍在持续,使医护人员面临严重慢性健康问题的风险。本研究的目的是确定在模拟药房和护理环境中处理受污染的药瓶后,HD如何通过接触传播。由三聚氰胺树脂组成的紫外线荧光粉Glo Germ(Glo Germ公司,犹他州摩押)用于模拟HD。按照制造商的确切使用规格,在受控条件下,对五种市售的CSTD在模拟药物制剂环境中进行了测试。每次试验后,使用紫外线荧光检测模拟HD的测试介质粉末。在测试的选定阶段,使用尼康D40X(1020万像素)相机拍照,以记录HD的存在情况。在测试的5种CSTD中,有4种观察到HD测试介质(Glo Germ)转移到了静脉输液装置、药房PPE和护理PPE上。唯一未观察到明显污染的CSTD是艾利森医疗安全密闭药瓶适配器(SEVA)系统(科罗拉多州利特尔顿)。结果显示,在5种CSTD中有4种在药房环境中处理药瓶时,HD药瓶的残留物会扩散,污染药房PPE、辅助产品和护理PPE。使用SEVA系统后,在药房的PPE、辅助产品或护理PPE上未检测到HD残留物,这为将HD从药瓶转移到输送系统时控制HD提供了一种有效方法。