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Rapid and real-time detection technologies for emerging viruses of biomedical importance

机译:快速和实时检测技术,对具有生物医学重要性的新兴病毒

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The development of technologies with rapid and sensitive detection capabilities and increased throughput have become crucial for responding to greater number threats posed by emerging and re-emerging viruses in the recent past. The conventional identification methods require time-consuming culturing, and/ or detection of antibodies, which are not very sensitive and specific. The recent advances in molecular biology techniques in the field of genomics and proteomics greatly facilitate the rapid identification with more accuracy. We have developed two real-time assays ie., SYBR green I based real time reverse transcription polymerase chain reaction (RT-PCR) and RT-loop-mediated isothermal amplification (LAMP) assay for rapid detection as well as typing of some of the emerging viruses of biomedical importance viz. dengue, Japanese encephalitis, chikungunya, west Nile, severe acute respiratory syndrome virus (SARS) etc. Both these techniques are capable of detection and differentiation as well as quantifying viral load with higher sensitivity, rapidity, specificity. One of the most important advantages of LAMP is its field applicability, without requirement of any sophisticated equipments. Both these assays have been extensively evaluated and validated with clinical samples of recent epidemics from different parts of India. The establishment of these real time molecular assays will certainly facilitate the rapid detection of viruses with high degree of precision and accuracy in future.
机译:具有快速灵敏的检测能力和增加的吞吐量的技术的发展对于应对最近出现的新出现和重新出现的病毒带来的更多威胁至关重要。传统的鉴定方法需要费时的培养和/或检测抗体,这不是很灵敏和特异的。基因组学和蛋白质组学领域中分子生物学技术的最新进展极大地促进了快速鉴定的准确性。我们已经开发了两种实时测定法,即基于SYBR green I的实时逆转录聚合酶链反应(RT-PCR)和RT环介导的等温扩增(LAMP)测定法,用于快速检测以及对某些具有生物医学重要性的新兴病毒,即。登革热,日本脑炎,基孔肯雅热,西尼罗河,严重急性呼吸道综合症病毒(SARS)等。这两种技术都能够以更高的灵敏度,更快度和更高的特异性进行检测和区分以及定量病毒载量。 LAMP的最重要优势之一是其现场适用性,而无需任何复杂的设备。这两种检测方法均已通过来自印度不同地区的近期流行病的临床样本进行了广泛评估和验证。这些实时分子测定法的建立无疑将促进将来以高精度和高准确度快速检测病毒。

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