Objective:To evaluate microscopy,OptiMAL<sup>?</sup> and multiplex PCR for the identification of Plasmodium falciparum(P.falciparum) and Plasmodium vivax(P.vivax) from the field isolates of Bikaner,Raj...Objective:To evaluate microscopy,OptiMAL<sup>?</sup> and multiplex PCR for the identification of Plasmodium falciparum(P.falciparum) and Plasmodium vivax(P.vivax) from the field isolates of Bikaner,Rajasthan(Northwest India).Methods:In this study,a multiplex PCR(P.falciparum and P.vivax) was further developed with the incorporation of Plasmodium malariae(P.malariae) specific primer and also a positive control.The performance of microscopy,plasmodium lactate dehydrogenase(pLDH) based malaria rapid diagnostic test OptiMAL<sup>?</sup> and 18S rRNA gene based multiplex PCR for the diagnosis of P.falciparum and P.vivax was compared.Results:The three species multiplex PCR if.falciparum,P.vivax and P.malariae) with an inbuilt positive control was developed and evaluated.In comparison with multiplex PCR,which showed the sensitivity and specificity of 99.36%(95%CI,98.11%-100.00%) and 100.00%(95%CI,100.00%-100.00%),the sensitivity and specificity of microscopy was 90.44%(95%CI,88.849-95.04%) and 99.22%(95% CI,97.71%-100.00%),and OptiMAL<sup>?</sup> was 93.58%(95%CI,89.75%-97.42%) and 97.69%(95%CI, 95.10%-100.00%).The efficiencies were 99.65%,95.10%and 95.45%for multiplex PCK.microscopy and OptiMAL<sup>?</sup>.respectively.Conclusions:Our results raise concerns over the overall sensitivities of microscopy and OptiMAL<sup>?</sup>,when compared to the multiplex PCR and thus stress the need for new molecular interventions in the accurate detection of the malarial parasites.This further highlights the fact that further developments are needed to improve the performance of rapid diagnostic tests at field level.展开更多
The pathogenicity of aeromonads produces due to exotoxins such as cytolytic enterotoxin, hemolysin or aerolysin, lipases and proteases. Rapid detection of A. hydrophila cytolytic enterotoxin (AHCYTONE) gene and their ...The pathogenicity of aeromonads produces due to exotoxins such as cytolytic enterotoxin, hemolysin or aerolysin, lipases and proteases. Rapid detection of A. hydrophila cytolytic enterotoxin (AHCYTONE) gene and their characterization has proven importance so that proper and rapid preventive and control measures could be taken up to reduce mortality and loss in fish culture. The main objective of the present study is to genetic identification of AHCYTONE positive Aeromonas hydrophila. Strains were isolated from fishes from different fish market in West Bengal and water samples from different river and ponds. Initially strains were identified by their phenotypic and biochemical characterization. Due to contradiction of those results, molecular characterization was done by polymerase chain reaction, which is proved a suitable and rapid diagnostic tool for identification and characterization of A. hydrophila. We have also evaluated the potential risk to human health that this finding can represent by determining the presence of the cytolytic enterotoxin gene in such isolates.展开更多
2006年5月以来,我国部分猪场暴发了一种以高热、高发病率和高死亡率为特征的传染性疾病,经病原分离及分子流行病学分析证明是由一种带有nsp2部分缺失的、对猪呈高致病性的猪繁殖与呼吸综合征病毒(Porcine reproductive and respiratory ...2006年5月以来,我国部分猪场暴发了一种以高热、高发病率和高死亡率为特征的传染性疾病,经病原分离及分子流行病学分析证明是由一种带有nsp2部分缺失的、对猪呈高致病性的猪繁殖与呼吸综合征病毒(Porcine reproductive and respiratory syndrome virus,PRRSV)引起的。本实验参考GenBank发表的以及本实验室分离鉴定的PRRSV的nsp2基因序列,在nsp2缺失区的两端的保守区设计并合成了一对引物,建立了一种PRRSV的RT-PCR检测方法。该方法扩增高致病性PRRSV基因组时可获得230bp的片段,扩增经典型PRRSV时则获得320bp的片段,根据RT-PCR产物大小可将二者区分开来。通过大量临床病料的检测,并配合PCR产物测序验证,结果表明该方法简便、快速、特异,可以鉴别高致病性PRRSV,为进一步的PRRS流行病学研究提供了重要的技术手段。展开更多
文摘Objective:To evaluate microscopy,OptiMAL<sup>?</sup> and multiplex PCR for the identification of Plasmodium falciparum(P.falciparum) and Plasmodium vivax(P.vivax) from the field isolates of Bikaner,Rajasthan(Northwest India).Methods:In this study,a multiplex PCR(P.falciparum and P.vivax) was further developed with the incorporation of Plasmodium malariae(P.malariae) specific primer and also a positive control.The performance of microscopy,plasmodium lactate dehydrogenase(pLDH) based malaria rapid diagnostic test OptiMAL<sup>?</sup> and 18S rRNA gene based multiplex PCR for the diagnosis of P.falciparum and P.vivax was compared.Results:The three species multiplex PCR if.falciparum,P.vivax and P.malariae) with an inbuilt positive control was developed and evaluated.In comparison with multiplex PCR,which showed the sensitivity and specificity of 99.36%(95%CI,98.11%-100.00%) and 100.00%(95%CI,100.00%-100.00%),the sensitivity and specificity of microscopy was 90.44%(95%CI,88.849-95.04%) and 99.22%(95% CI,97.71%-100.00%),and OptiMAL<sup>?</sup> was 93.58%(95%CI,89.75%-97.42%) and 97.69%(95%CI, 95.10%-100.00%).The efficiencies were 99.65%,95.10%and 95.45%for multiplex PCK.microscopy and OptiMAL<sup>?</sup>.respectively.Conclusions:Our results raise concerns over the overall sensitivities of microscopy and OptiMAL<sup>?</sup>,when compared to the multiplex PCR and thus stress the need for new molecular interventions in the accurate detection of the malarial parasites.This further highlights the fact that further developments are needed to improve the performance of rapid diagnostic tests at field level.
文摘The pathogenicity of aeromonads produces due to exotoxins such as cytolytic enterotoxin, hemolysin or aerolysin, lipases and proteases. Rapid detection of A. hydrophila cytolytic enterotoxin (AHCYTONE) gene and their characterization has proven importance so that proper and rapid preventive and control measures could be taken up to reduce mortality and loss in fish culture. The main objective of the present study is to genetic identification of AHCYTONE positive Aeromonas hydrophila. Strains were isolated from fishes from different fish market in West Bengal and water samples from different river and ponds. Initially strains were identified by their phenotypic and biochemical characterization. Due to contradiction of those results, molecular characterization was done by polymerase chain reaction, which is proved a suitable and rapid diagnostic tool for identification and characterization of A. hydrophila. We have also evaluated the potential risk to human health that this finding can represent by determining the presence of the cytolytic enterotoxin gene in such isolates.