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Controllable fabrication of bio-bar codes for dendritically amplified sensing of human T-lymphotropic viruses

机译:可控制的生物条形码的制备可对人类T淋巴病毒进行树状放大感应

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摘要

Human T-lymphotropic virus type II (HTLV-II) is an important type-C retrovirus, closely related to a variety of human diseases. Here, we demonstrate for the first time the controllable fabrication of bio-bar codes for dendritically amplified sensing of low-abundant HTLV-II DNA by the integration of terminal deoxynucleotidyl transferase (TdT)-catalyzed template-free polymerization extension with bio-bar-code amplification (BCA). HTLV-II DNA hybridizes with magnetic microparticle (MMP)-modified capture probe 1, forming a stable DNA duplex with a protruding 3′-hydroxylated sequence which may function as a primer to initiate the TdT-catalyzed first-step polymerization extension for the generation of a poly-thymidine (T) sequence. The resultant poly-T products may hybridize with poly-adenine (A) capture probe 2, inducing the self-assembly of multiple capture probe 2-/reporter probe-functionalized Au nanoparticles (AuNPs) onto the MMP. Subsequently, the reporter probes may act as the primers to initiate the TdT-catalyzed second-step polymerization extension, producing large numbers of G-rich DNAzymes for the generation of an enhanced chemiluminescence signal. Taking advantage of the efficient polymerization extension reaction catalyzed by TdT, the high amplification efficiency of BCA, and the intrinsically high sensitivity of G-rich DNAzyme-driven chemiluminescence, this method exhibits ultrahigh sensitivity with a limit of detection of as low as 0.50 aM and a large dynamic range of 9 orders of magnitude from 1 aM to 1 nM. Moreover, this method can be applied for the discrimination of a single-base mismatch and the measurement of HTLV-II DNA in both human serum and human T-lymphocytic leukemia cells, holding great potential in biomedical research and clinical diagnosis.
机译:II型人类T淋巴病毒(HTLV-II)是一种重要的C型逆转录病毒,与多种人类疾病密切相关。在这里,我们首次展示了通过末端脱氧核苷酸转移酶(TdT)催化的无模板聚合扩展与生物棒的整合,可控制地制备生物条形码的技术,以用于树状扩增低丰度HTLV-II DNA。代码放大(BCA)。 HTLV-II DNA与磁性微粒(MMP)修饰的捕获探针1杂交,形成具有突出的3'-羟基化序列的稳定DNA双链体,该序列可用作引物以引发TdT催化的第一步聚合反应的延伸多胸苷(T)序列的序列。所得的poly-T产物可以与聚腺嘌呤(A)捕获探针2杂交,从而将多个捕获探针2- /报道探针官能化的Au纳米颗粒(AuNP)自组装到MMP上。随后,报告探针可以充当引物,以引发TdT催化的第二步聚合延伸,从而产生大量富含G的DNA酶,从而产生增强的化学发光信号。利用TdT催化的有效聚合延伸反应,BCA的高扩增效率以及富含G的DNAzyme驱动的化学发光固有的高灵敏度,该方法具有超高灵敏度,检测限低至0.50 aM和从1 aM到1 nM的9个数量级的大动态范围。而且,该方法可用于人血清和人T淋巴细胞白血病细胞中单碱基错配的判别和HTLV-II DNA的测定,在生物医学研究和临床诊断中具有很大的潜力。

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