Department of Applied Chemistry , National Chiao Tung University , Hsinchu 30050 , Taiwan.
Department of Medicinal and Applied Chemistry , Kaohsiung Medical University , Kaohsiung 30050 , Taiwan.
ACS Appl Mater Interfaces. 2019 Mar 13;11(10):9841-9849. doi: 10.1021/acsami.9b00204. Epub 2019 Mar 1.
Although enormous efforts have been devoted to the development of new types of fluorometric immunochromatographic test strip (ICTS) with improved sensitivity over the past years, it still remains a big challenge to design ICTS with colorimetric and fluorescent bimodal signal readout for rapid yet accurate detection of cancer markers in a clinic. Scientists have tried to prepare bimodal reporters by combining fluorescent dyes with metal nanomaterials, but their fluorescence was easily quenched by metal nanomaterials through surface energy transfer, making dual colorimetric and fluorometric ICTS very difficult to be achieved. As compared to conventional fluorescent probes, semiconducting polymer dots (Pdots) exhibit extraordinary fluorescence brightness and facile surface functionalization, which are very suitable to be engineered as bimodal signal reporting reagents. Here, we integrated highly fluorescent Pdots with strongly plasmonic Au nanorods to form Pdot-Au hybrid nanocomposites with dual colorimetric and fluorescent readout abilities. We further utilized these nanohybrids in ICTS for qualitatively fast screening (colorimetry) as well as quantitatively accurate determination (fluorometry) of prostate-specific antigen (PSA) within 10 min. By taking advantage of the plasmon-enhanced fluorescence of Pdots on Au nanorods, this immunoassay possesses much better detection sensitivity of 1.07 pg/mL for PSA, which is at least 2 orders of magnitude lower than that of conventional fluorometric ICTS. Moreover, the direct detection of PSA from human whole blood collected without sample pretreatment makes this Pdot-based ICTS platform promising for on-site point-of-care diagnostics.
尽管在过去的几年中,人们已经付出了巨大的努力来开发新型荧光免疫层析测试条(ICTS),以提高其灵敏度,但设计出具有比色和荧光双模信号读出功能的 ICTS 来快速而准确地检测临床癌症标志物仍然是一个巨大的挑战。科学家们试图通过将荧光染料与金属纳米材料结合来制备双模报告分子,但它们的荧光很容易被金属纳米材料通过表面能转移而猝灭,这使得双比色和荧光 ICTS 非常难以实现。与传统荧光探针相比,半导体聚合物点(Pdots)表现出非凡的荧光亮度和易于表面功能化的特点,非常适合作为双模信号报告试剂。在这里,我们将高度荧光的 Pdots 与强等离子体 Au 纳米棒集成在一起,形成具有双比色和荧光读出能力的 Pdot-Au 杂化纳米复合材料。我们进一步将这些纳米杂化物用于 ICTS 中,用于快速定性筛选(比色法)以及定量准确测定(荧光法)10 分钟内的前列腺特异性抗原(PSA)。利用 Pdots 在 Au 纳米棒上的等离子体增强荧光,该免疫测定法对 PSA 的检测灵敏度高达 1.07 pg/mL,至少比传统荧光 ICTS 高 2 个数量级。此外,无需样品预处理即可直接从人全血中检测 PSA,这使得基于 Pdot 的 ICTS 平台有望用于现场即时诊断。