Heleer Cha, Yu Feng, Runa Cha, Qian Wang, Wenlan Yan, Lang Lv, Guangzhi Zhang, Rigan Shu, Hui Jiang, Jiabo Ding
Brucellosis remains an important zoonosis, but evidence on the diagnostic accuracy of serological assays in Bactrian camels is limited. We conducted a cross-sectional study involving 1091 Bactrian camels from 24 herds in Alxa Right Banner, Inner Mongolia, China. Serum samples were tested using the Rose Bengal test (RBT), indirect ELISA (i-ELISA), fluorescence polarization assay (FPA), and complement fixation test (CFT). A Bayesian latent class model accounting for conditional dependence among the antibody-based assays was used to estimate individual-animal sensitivity (Se) and specificity (Sp), the true prevalence of antibodies to Brucella spp. within each herd, and individual-animal predictive performance under serial and parallel interpretation rules. FPA showed the highest sensitivity (median 0.946; 95% posterior credible interval [PCI]: 0.919-0.966), followed by CFT (0.857; 0.818-0.891), RBT (0.843; 0.803-0.878), and i-ELISA (0.781; 0.737-0.820). Specificity was highest for CFT (0.995; 0.987-0.999), followed by RBT (0.987; 0.976-0.995), i-ELISA (0.959; 0.942-0.973), and FPA (0.927; 0.903-0.949). The sample-size-weighted true prevalence of antibodies to Brucella spp. among the sampled camels was 36.4% (95% PCI: 33.9-38.8%). Parallel interpretation of RBT and FPA achieved a sensitivity of 0.989 (95% PCI: 0.981-0.994). The principal assay rankings were stable under alternative prior assumptions, single-herd omissions, and alternative conditional-dependence specifications. No single assay achieved both high sensitivity and high specificity. At the individual-animal level, parallel interpretation of RBT and FPA may be considered when minimizing false-negative classifications is the priority, whereas CFT may be preferred when higher specificity is required.