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即时检验自动革兰氏染色仪(PoCGS)与手工染色的比较。

Comparison of Automated Point-of-Care Gram Stainer (PoCGS) and Manual Staining.

作者信息

Ohji Goh, Ohnuma Kenichiro, Ebisawa Kei Furui, Kusuki Mari, Ikegaki Shunkichi, Ozaki Hiroaki, Ariizumi Reiichi, Nakajima Masakazu, Taketani Makoto

机构信息

Division of Infectious Disease Therapeutics, Department of Infectious Disease, Kobe University Graduate School of Medicine, 7-5-2, Kusunokicho, Chuoku, Kobe 6500017, Japan.

Department of Clinical Laboratory, Kobe University Hospital, 7-5-2, Kusunokicho, Chuoku, Kobe 6500017, Japan.

出版信息

Diagnostics (Basel). 2025 Apr 29;15(9):1137. doi: 10.3390/diagnostics15091137.

Abstract

Gram staining is an essential diagnostic technique used for the rapid identification of bacterial and fungal infections, playing a pivotal role in clinical decision-making, especially in point-of-care (POC) settings. Manual staining, while effective, is labor-intensive and prone to variability, relying heavily on the skill of laboratory personnel. Current automated Gram-staining systems are primarily designed for high-throughput laboratory environments, limiting their feasibility in decentralized healthcare settings such as emergency departments and rural clinics. This study aims to introduce and evaluate the Point-of-Care Gram Stainer (PoCGS), a compact, automated device engineered for single-slide processing, addressing challenges related to portability, standardization, and efficiency in POC applications. : The PoCGS device was developed to emulate expert manual staining techniques through features such as methanol fixation and programmable reagent application. A comparative evaluation was performed using 40 urine samples, which included both clinical and artificial specimens. These samples were processed using PoCGS, manual staining by skilled experts, and manual staining by unskilled personnel. The outcomes were assessed based on microbial identification concordance, the staining uniformity, presence of artifacts, and agreement with the culture results. Statistical analyses, including agreement rates and quality scoring, were conducted to compare the performance of PoCGS against manual staining methods. : PoCGS achieved a 100% concordance rate with expert manual staining in terms of microbial identification, confirming its diagnostic accuracy. However, staining quality parameters such as the uniformity and presence of artifacts showed statistically significant differences when compared to skilled and unskilled personnel. Despite these limitations, PoCGS demonstrated a comparable performance regarding artifact reduction and agreement with the culture results, indicating its potential utility in POC environments. Challenges such as fixed processing times and limited adaptability to varying specimen characteristics were identified as areas for further improvement. : The study findings suggest that PoCGS is a reliable and valuable tool for microbial identification in POC settings, with a performance comparable to skilled manual staining. Its compact design, automation, and ease of use make it particularly beneficial for resource-limited environments. Although improvements in staining uniformity and background clarity are required, PoCGS has the potential to standardize Gram staining protocols and improve diagnostic turnaround times. Future developments will focus on optimizing staining parameters and expanding its application to other clinical sample types, ensuring robustness and broader usability in diverse healthcare settings.

摘要

革兰氏染色是一种用于快速鉴定细菌和真菌感染的重要诊断技术,在临床决策中发挥着关键作用,尤其是在即时检验(POC)环境中。手工染色虽然有效,但劳动强度大且容易出现差异,严重依赖实验室人员的技能。当前的自动革兰氏染色系统主要设计用于高通量实验室环境,限制了它们在急诊科和农村诊所等分散式医疗环境中的可行性。本研究旨在介绍和评估即时检验革兰氏染色仪(PoCGS),这是一种为单张玻片处理设计的紧凑型自动设备,解决了POC应用中与便携性、标准化和效率相关的挑战。:PoCGS设备通过甲醇固定和可编程试剂应用等功能,开发用于模拟专家手工染色技术。使用40份尿液样本进行了比较评估,这些样本包括临床样本和人工样本。这些样本分别使用PoCGS、由熟练专家进行手工染色以及由非熟练人员进行手工染色进行处理。根据微生物鉴定一致性、染色均匀性、伪像的存在以及与培养结果的一致性来评估结果。进行了包括符合率和质量评分在内的统计分析,以比较PoCGS与手工染色方法的性能。:PoCGS在微生物鉴定方面与专家手工染色的符合率达到100%,证实了其诊断准确性。然而,与熟练和非熟练人员相比,染色质量参数如均匀性和伪像的存在显示出统计学上的显著差异。尽管存在这些局限性,PoCGS在减少伪像和与培养结果的一致性方面表现出可比的性能,表明其在POC环境中的潜在效用。固定处理时间和对不同样本特征的适应性有限等挑战被确定为需要进一步改进的领域。:研究结果表明,PoCGS是POC环境中微生物鉴定的可靠且有价值的工具,其性能与熟练的手工染色相当。其紧凑的设计、自动化以及易用性使其对资源有限的环境特别有益。尽管需要改进染色均匀性和背景清晰度,但PoCGS有潜力使革兰氏染色方案标准化并缩短诊断周转时间。未来的发展将集中在优化染色参数并将其应用扩展到其他临床样本类型,确保在不同医疗环境中的稳健性和更广泛的可用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0df8/12071327/113ec1c4f415/diagnostics-15-01137-g001.jpg

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