R & F Products, Inc., 2725 Curtiss Street, Downers Grove, IL 60188, USA; Department of Biological Sciences, Illinois Institute of Technology, 10 W 35(th) Street, Chicago, IL 60616, USA.
Department of Biological Sciences, Illinois Institute of Technology, 10 W 35(th) Street, Chicago, IL 60616, USA.
J Food Prot. 2023 Mar;86(3):100057. doi: 10.1016/j.jfp.2023.100057. Epub 2023 Feb 2.
Arcobacters are emerging pathogens that have been underestimated due to a lack of a standardized isolation method. The aim of this research was to evaluate the ability to isolate Arcobacter butzleri, Arcobacter cryaerophilus, and Arcobacter skirrowii using two Arcobacter-specific culture detection systems: (i) the Houf broth and modified charcoal cefoperazone deoxycholate agar supplemented with cefoperazone, amphotericin B, and teicoplanin (HB/mCCDA+CAT), and (ii) the Nguyen-Restaino-Juárez Arcobacter enrichment broth and chromogenic agar (NRJ-B/M). Both detection systems were evaluated for productivity ratio, sensitivity, and specificity. As a result, the productivity ratio for both plating agars were >90%, which indicates that the selective agents used in the two plating agars did not inhibit Arcobacter growth. Moreover, sensitivity evaluations using artificially inoculated retail ground poultry (n = 780) determined that both detection systems were able to isolate A. butlzeri with >95% sensitivity at the 0.1 and 1.0-2.0 CFU/g detection level. The sensitivity in A. cryaerophilus isolation was higher for NRJ-B/M (78.0% at 0.1 CFU/g; 95.1% at 1.0-2.0 CFU/g) when compared with HB/mCCDA+CAT (34.1% at 0.1 CFU/g; 51.2% at 1.0-2.0 CFU/g). Both detection systems resulted in <50% sensitivity when isolating A. skirrowii at 0.1 and 1.0-2.0 CFU/g; however, the sensitivity for NRJ-B/M was significantly higher than HB/mCCDA+CAT. At the detection level of 5.0 CFU/g, both detection systems were able to isolate A. skirrowii with 100% sensitivity. Specificity comparisons using uninoculated ground poultry samples (n = 40) indicated the growth of background microbiota were significantly inhibited or could be easily differentiated on NRJ-B/M (90.0%, specificity) when compared with HB/mCCDA+CAT (30.0%, specificity). Overall, these results show that the NRJ-B/M detection system is a more sensitive and specific detection system when isolating Arcobacter spp. from ground chicken.
弧菌属是一种新兴的病原体,由于缺乏标准化的分离方法,其被低估了。本研究旨在评估两种弧菌属特异性培养检测系统分离嗜水气单胞菌、嗜冷弧菌和 skirrowii 弧菌的能力:(i)Houf 肉汤和改良炭头孢哌酮脱氧胆酸盐琼脂,补充头孢哌酮、两性霉素 B 和替考拉宁(HB/mCCDA+CAT),和(ii)Nguyen-Restaino-Juárez 弧菌富集肉汤和显色琼脂(NRJ-B/M)。这两种检测系统都评估了生产比率、灵敏度和特异性。结果,两种平板琼脂的生产比率均>90%,表明两种平板琼脂中使用的选择性试剂并未抑制弧菌的生长。此外,使用人工接种零售鸡肉(n=780)进行的敏感性评估表明,两种检测系统均能够以>95%的灵敏度分离 A. butlzeri,在 0.1 和 1.0-2.0 CFU/g 的检测水平下。与 HB/mCCDA+CAT(0.1 CFU/g 时为 34.1%;1.0-2.0 CFU/g 时为 51.2%)相比,NRJ-B/M 对 A. cryaerophilus 的分离具有更高的敏感性(0.1 CFU/g 时为 78.0%;1.0-2.0 CFU/g 时为 95.1%)。两种检测系统在分离 0.1 和 1.0-2.0 CFU/g 时的 A. skirrowii 灵敏度均<50%;然而,NRJ-B/M 的灵敏度明显高于 HB/mCCDA+CAT。在 5.0 CFU/g 的检测水平下,两种检测系统均能以 100%的灵敏度分离 A. skirrowii。使用未接种鸡肉样本(n=40)进行的特异性比较表明,与 HB/mCCDA+CAT(特异性 30.0%)相比,NRJ-B/M 显著抑制了背景微生物群的生长或可以很容易地将其区分开来(特异性 90.0%)。总体而言,这些结果表明,NRJ-B/M 检测系统在分离鸡肉中的弧菌属时是一种更敏感和特异的检测系统。