BEACON: AIE-based point-of-care test for cross-species Brucella antibody detection

检出限 化学 重复性 抗体 布鲁氏菌病 荧光 布鲁氏菌 病毒学 金标准(测试) 试剂 色谱法 牛布鲁氏菌病 血清学 胶体金 牛血清白蛋白 微球 分析灵敏度 灵敏度(控制系统) 布鲁氏菌 一级和二级抗体 临床诊断 共轭体系 流产布鲁氏菌 核酸酶 布鲁氏菌科 分子生物学
作者
H. Ren,Ma Li,Liting Gao,Jie Yang,Yinli Bao,Jia Lu,Wei Yang,Linli Xue,Wei Hou,Chun‐Yao Huang,Bin Wang,Haidong Wang
出处
期刊:Talanta [Elsevier BV]
卷期号:310: 130160-130160
标识
DOI:10.1016/j.talanta.2026.130160
摘要

Brucellosis infects diverse livestock including cattle and sheep. Early detection of antibodies across species is critical. However, current methods lack sufficient sensitivity for low-titer early infection, and there is no cross-species point-of-care test that works without reagent modification. To address these challenges, we developed BEACON, a Brucella Early detection Aggregation induced emission based immuno-Chromatographic ON-site test. In its design, ultrabright red emitting aggregation induced emission fluorescent microspheres (AIEFMs) replace colloidal gold as signal reporters to achieve high-sensitivity detection. AIEFMs conjugated with protein A (PA) form a single universal detection probe, which recognizes Brucella antibodies in sera of multiple species without requiring species-specific secondary antibodies, thereby enabling cross-species compatibility. A portable serum separator and fluorescence reader allow quantitative results within 15 min, facilitating on-site detection. Under optimized conditions, BEACON achieved a limit of detection (LOD) of 1.563 IU/mL for ovine serum and 0.023 IU/mL for bovine serum, representing a 16-fold and 126-fold improvement in sensitivity over commercial ELISA kits, respectively. To the best of our knowledge, this is the most sensitive method for Brucella antibody detection reported to date. The assay showed excellent specificity, good repeatability (CV <15%), and 98.9% diagnostic agreement with ELISA in 89 clinical samples. In summary, BEACON integrates multi-species compatibility and high sensitivity into a point-of-care platform, enabling large-scale surveillance and on-farm screening in resource-limited settings.
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