He L, Chen H, Xian G W, Wu Y S
Institute of Antibody and Engineering, School of Laboratory and Biotechnology, Southern Medical University, Guangzhou 510515, China.
Daan Gene Co., Ltd. of Sun Yat-sen University, Guangzhou 510665, China.
Zhonghua Yu Fang Yi Xue Za Zhi. 2020 Oct 6;54(10):1133-1140. doi: 10.3760/cma.j.cn112150-20200626-00928.
To investigate the performance of ZNA(ZIP Nucleic Acid) probes and its application in the quantitative detection of (CT)nucleic acid. Use CT positive plasmids to compare the PCR amplification curves of ZNA probes coupled with different ZIP numbers. Compare ZNA probes with other three sets of probes [namely, 29mer ordinary Taqman probes (long-DNA probe), 20mer ordinary Taqman probes (short-DNA probe) and MGB probes] for stability in PCR amplification curves and repeated freezing and thawing, and the difference in the detection rate of low-concentration plasmids. Use CT positive clinical samples to compare the difference in amplification curves between ZNA probes, long-DNA probe, short-DNA probe and MGB probes, and the detection rate of low-concentration samples. (1) The Ct value and fluorescence value of the probes coupled with 5ZIP units are both better than those coupled with a smaller number of ZIPs. And the difference is biggest when compared with only coupled with 1 ZIP unit: Ct value increased by 1.34 (sensitivity increased by 2.37 times), and fluorescence value increased by 30%. (2) The amplification efficiency of the ZNA probe coupled with 5 ZIPs is 2.14-2.64 times that of the preferred ordinary Taqman probe and MGB probe, and the fluorescence value is 17%-90% higher. (3) The probe freeze-thaw stability results show that the ZNA probe has the best stability, and the lowest concentration of Ct value has the smallest deviation (CV% = 1.4), which is better than the other three sets of probes (CV%=1.7-3.7). (4) Using 35 CT positive clinical samples to compare the PCR amplification performance, compared with other three sets of probes, the amplification sensitivity of ZNA probes was increased by 1.60, 0.99 and 1.06 times respectively. And the results of the consistency analysis of the Ct value show that compared with short-DNA probe and MGB probes, ZNA probes have better detection performance for clinical samples. (5) Use low concentration plasmid template (200, 100, 50 and 10 copies/mL respectively) to compare the amplification sensitivity of the four sets of probes, the detection rate of ZNA probe is the best. Especially, at the lowest concentration 10 copies/mL, the detection rate of the other sets of probes is only 15%-20%, but the ZNA probe is still 30%. (6) In 20 clinical samples with different low concentrations (200, 150, 100, and 50 copies/mL), the detection rate of ZNA probes was the highest, which were 100%, 95%, 90%, and 70%, respectively. Through testing of the amplification efficiency, fluorescence value, freeze-thaw stability, the amplification performance of clinical samples and the detection sensitivity of low-concentration samples, ZNA probes coupled with 5 ZIPs show better performance than ordinary Taqman probes and MGB probes. As a new probe technology with flexible design and easy synthesis, ZNA probe can further improve detection sensitivity of low concentration samples in the field of gene expression.
研究ZNA(锌指核酸)探针的性能及其在(CT)核酸定量检测中的应用。使用CT阳性质粒比较不同ZIP数目的ZNA探针的PCR扩增曲线。将ZNA探针与其他三组探针[即29聚体普通Taqman探针(长DNA探针)、20聚体普通Taqman探针(短DNA探针)和MGB探针]在PCR扩增曲线和反复冻融中的稳定性以及低浓度质粒的检测率差异进行比较。使用CT阳性临床样本比较ZNA探针、长DNA探针、短DNA探针和MGB探针之间的扩增曲线差异以及低浓度样本的检测率。(1) 与5个ZIP单元偶联的探针的Ct值和荧光值均优于与较少ZIP数偶联的探针。与仅与1个ZIP单元偶联相比差异最大:Ct值增加了1.34(灵敏度提高了2.37倍),荧光值增加了30%。(2) 与5个ZIP偶联的ZNA探针的扩增效率是优选的普通Taqman探针和MGB探针的2.14 - 2.64倍,荧光值高17% - 90%。(3) 探针冻融稳定性结果表明,ZNA探针稳定性最佳,最低浓度的Ct值偏差最小(CV% = 1.4),优于其他三组探针(CV% = 1.7 - 3.7)。(4) 使用35份CT阳性临床样本比较PCR扩增性能,与其他三组探针相比,ZNA探针的扩增灵敏度分别提高了1.60、0.99和1.06倍。Ct值一致性分析结果表明,与短DNA探针和MGB探针相比,ZNA探针对临床样本具有更好的检测性能。(5) 使用低浓度质粒模板(分别为200、100、50和10拷贝/mL)比较四组探针的扩增灵敏度,ZNA探针的检测率最佳。特别是在最低浓度10拷贝/mL时,其他组探针的检测率仅为15% - 20%,而ZNA探针仍为30%。(6) 在20份不同低浓度(200、150、100和50拷贝/mL)的临床样本中,ZNA探针的检测率最高,分别为100%、95%、90%和70%。 通过对扩增效率、荧光值、冻融稳定性、临床样本扩增性能和低浓度样本检测灵敏度的测试,与普通Taqman探针和MGB探针相比,与5个ZIP偶联的ZNA探针表现出更好的性能。作为一种设计灵活、合成简便的新型探针技术,ZNA探针可进一步提高基因表达领域低浓度样本的检测灵敏度。