O Toole Dylan S, Williams Tim L, Hare Cassia H Z
Department of Veterinary Medicine, University of Cambridge, Cambridge, UK.
Vet Clin Pathol. 2025 Jun;54(2):78-86. doi: 10.1111/vcp.70029. Epub 2025 Jun 6.
Neutrophil cell population data (CPD), including fluorescent light intensity (NE-SFL) and side scatter (NE-SSC), are promising inflammatory markers in human sepsis but remain unexplored in dogs and cats.
Determine the diagnostic utility of NE-SSC and NE-SFL for detecting systemic inflammation in dogs and cats.
Dogs and cats with archived CPD, blood films, and acute phase protein (APP) measurements were included. Increased C-reactive protein (CRP) in dogs and Serum Amyloid A (SAA) in cats were considered indicative of systemic inflammation. CPD was compared with APPs, white cell count (WCC), neutrophil count, band neutrophil count, and toxic change grade. Optimal cut-offs and associated sensitivities and specificities were calculated using ROC curve analysis. Correlations were assessed using Spearman's coefficient.
NE-SFL and NE-SSC were significantly increased in dogs and cats with systemic inflammation. The area under the curve (AUC) of NE-SFL was higher than that of NE-SSC, WCC, and band neutrophil count in both dogs (0.82) and cats (0.77). The optimal NE-SFL cut-off for detecting systemic inflammation was > 41.7 ch in dogs (sensitivity 80%; specificity 66%) and > 37.4 ch in cats (sensitivity 75%; specificity 67%). NE-SFL was positively correlated with APPs, WCC, neutrophil count, and band neutrophil count in both species. NE-SSC was positively correlated with APPs in both species and, in dogs, also with WCC, neutrophil count, and band neutrophil count.
CPD, particularly NE-SFL, is a promising marker of inflammation in dogs and cats and could be especially useful when APP quantification or blood smear examination are unavailable.
中性粒细胞群体数据(CPD),包括荧光强度(NE-SFL)和侧向散射(NE-SSC),是人类脓毒症中有前景的炎症标志物,但在犬猫中尚未得到研究。
确定NE-SSC和NE-SFL在检测犬猫全身炎症中的诊断效用。
纳入有存档CPD、血涂片和急性期蛋白(APP)测量值的犬猫。犬的C反应蛋白(CRP)升高和猫的血清淀粉样蛋白A(SAA)升高被认为提示全身炎症。将CPD与APP、白细胞计数(WCC)、中性粒细胞计数、杆状核中性粒细胞计数和毒性变化分级进行比较。使用ROC曲线分析计算最佳截断值及相关敏感性和特异性。使用Spearman系数评估相关性。
全身炎症的犬猫中,NE-SFL和NE-SSC显著升高。犬(0.82)和猫(0.77)中,NE-SFL的曲线下面积(AUC)高于NE-SSC、WCC和杆状核中性粒细胞计数。检测全身炎症的最佳NE-SFL截断值在犬中>41.7 ch(敏感性80%;特异性66%),在猫中>37.4 ch(敏感性75%;特异性67%)。两种动物中,NE-SFL均与APP、WCC、中性粒细胞计数和杆状核中性粒细胞计数呈正相关。两种动物中,NE-SSC均与APP呈正相关,在犬中还与WCC、中性粒细胞计数和杆状核中性粒细胞计数呈正相关。
CPD,尤其是NE-SFL,是犬猫炎症的有前景的标志物,在无法进行APP定量或血涂片检查时可能特别有用。