An D J, Song D S, Park J Y, Park B K
National Veterinary Research and Quarantine Service, Anyang, Kyunggi-Do, Korea.
Vet Res Commun. 2009 Feb;33(2):139-47. doi: 10.1007/s11259-008-9080-8. Epub 2008 Jul 24.
A miniarray system was developed for the simultaneous detection of porcine circovirus type 1 (PCV1) and type 2 (PCV2) in pigs. The system consists of a polymerase chain reaction (PCR) step to amplify target viral DNA, followed by detection of the amplified DNA using a membrane-anchored probe array and an avidin-alkaline phosphatase (Av-AP) indicator system. The lower limit of detection of PCV using the miniarray was 10(1.9) tissue culture infectious dose 50 (TCID(50))/ml and 10(2.08)TCID(50)/ml for PCV1 and PCV2, respectively, and 100 viral copies/microl for both PCV1 and PCV2. We validated the miniarray system using 141 lymph node specimens from pigs with suspected postweaning multisystemic wasting syndrome or porcine dermatitis and nephropathy syndrome. Of the 141 samples evaluated, 55 were identified as positive for PCV by the miniarray. Relative to in situ hybridization, the sensitivity and specificity of the miniarray was 100% and 98.9%, respectively. In contrast to other microarray systems, the miniarray does not require a DNA chip reader, since the results can be determined by visual inspection of colorized spots on a nylon membrane. This system represents an effective alternative method for the differential detection of PCV1 and PCV2 in pigs, as well as the maintenance of PCV-free cell lines and pre-screening of commercial vaccines for possible contamination.
开发了一种微阵列系统,用于同时检测猪体内的1型猪圆环病毒(PCV1)和2型猪圆环病毒(PCV2)。该系统包括一个聚合酶链反应(PCR)步骤,用于扩增目标病毒DNA,随后使用膜锚定探针阵列和抗生物素蛋白-碱性磷酸酶(Av-AP)指示系统检测扩增后的DNA。使用该微阵列检测PCV的下限,PCV1为10(1.9)组织培养感染剂量50(TCID(50))/毫升,PCV2为10(2.08)TCID(50)/毫升,PCV1和PCV2均为100个病毒拷贝/微升。我们使用来自疑似断奶后多系统消耗综合征或猪皮炎肾病综合征猪的141份淋巴结标本对该微阵列系统进行了验证。在评估的141个样本中,有55个通过微阵列鉴定为PCV阳性。相对于原位杂交,该微阵列的敏感性和特异性分别为100%和98.9%。与其他微阵列系统不同,该微阵列不需要DNA芯片读取器,因为结果可以通过目视检查尼龙膜上的显色斑点来确定。该系统是一种有效的替代方法,可用于猪体内PCV1和PCV2的鉴别检测,以及无PCV细胞系的维持和商业疫苗可能污染的预筛选。