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Rapid identification of bacteria and candida using pna-fish from blood and peritoneal fluid cultures: a retrospective clinical study

机译:使用来自血液和腹膜液培养物中的pna鱼快速鉴定细菌和念珠菌:一项回顾性临床研究

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Background Peptide nucleic acid fluorescent in situ hybridization (PNA-FISH) is a rapid and established method for identification of Candida sp., Gram positive, and Gram negative bacteria from positive blood cultures. This study reports clinical experience in the evaluation of 103 positive blood cultures and 17 positive peritoneal fluid cultures from 120 patients using PNA-FISH. Our study provides evidence as to potential pharmaceutical cost savings based on rapid pathogen identification, in addition to the novel application of PNA-FISH to peritoneal fluid specimens. Methods Identification accuracy and elapsed time to identification of Gram positives, Gram negatives, and Candida sp., isolated from blood and peritoneal fluid cultures were assessed using PNA-FISH (AdvanDx), as compared to standard culture methods. Patient charts were reviewed to extrapolate potential pharmaceutical cost savings due to adjustment of antimicrobial or antifungal therapy, based on identification by PNA-FISH. Results In blood cultures, time to identification by standard culture methods for bacteria and Candida sp., averaged 83.6 hours (95% CI 56.7 to 110.5). Identification by PNA-FISH averaged 11.2 hours (95% CI 4.8 to 17.6). Overall PNA-FISH identification accuracy was 98.8% (83/84, 95% CI 93.5% to 99.9%) as compared to culture. In peritoneal fluid, identification of bacteria by culture averaged 87.4 hours (95% CI ?92.4 to 267.1). Identification by PNA-FISH averaged 16.4 hours (95% CI ?57.3 to 90.0). Overall PNA-FISH identification accuracy was 100% (13/13, 95% CI 75.3% to 100%). For Candida sp., pharmaceutical cost savings based on PNA-FISH identification could be $377.74/day. For coagulase-negative staphylococcus (CoNS), discontinuation of vancomycin could result in savings of $20.00/day. Conclusions In this retrospective study, excellent accuracy of PNA-FISH in blood and peritoneal fluids with reduced time to identification was observed, as compared to conventional culture-based techniques. Species-level identification based on PNA-FISH could contribute to notable cost savings due to adjustments in empiric antimicrobial or antifungal therapy as appropriate to the pathogen identified.
机译:背景技术肽核酸荧光原位杂交(PNA-FISH)是一种快速而成熟的方法,用于从阳性血液培养物中鉴定念珠菌,革兰氏阳性和革兰氏阴性细菌。这项研究报告了使用PNA-FISH评估120例患者的103份阳性血液培养物和17份阳性腹膜液培养物的临床经验。除了将PNA-FISH应用于腹膜液样本的新型应用之外,我们的研究还提供了基于快速病原体识别可节省药物成本的证据。方法与标准培养方法相比,使用PNA-FISH(AdvanDx)对从血液和腹膜液培养物中分离出的革兰氏阳性,革兰氏阴性和假丝酵母菌的鉴定准确性和经过时间进行了评估。根据PNA-FISH的识别,对患者图表进行了回顾,以推断出由于调整抗微生物或抗真菌治疗而可能节省的药物成本。结果在血液培养中,通过标准培养方法鉴定细菌和念珠菌的平均时间为83.6小时(95%CI 56.7至110.5)。通过PNA-FISH进行鉴定的平均时间为11.2小时(95%CI为4.8至17.6)。与培养相比,PNA-FISH的总体识别准确性为98.8%(83 / 84,95%CI为93.5%至99.9%)。在腹膜液中,通过培养鉴定细菌的平均时间为87.4小时(95%CI≥92.4至267.1)。通过PNA-FISH鉴定的平均时间为16.4小时(95%CI≥57.3至90.0)。 PNA-FISH的总体识别准确度为100%(13 / 13,95%CI 75.3%至100%)。对于假丝酵母菌,基于PNA-FISH鉴定的药品成本节省每天可达到377.74美元。对于凝固酶阴性葡萄球菌(CoNS),停用万古霉素可每天节省$ 20.00。结论在这项回顾性研究中,与传统的基于培养的技术相比,在血液和腹膜液中观察到了PNA-FISH的卓越准确性,并且缩短了识别时间。基于PNA-FISH的物种水平鉴定可通过根据所鉴定病原体进行经验性抗微生物或抗真菌治疗的调整来显着节省成本。

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