Ng Keng Wooi, Lau Wing Man, Williams Adrian C
School of Pharmacy and Biomolecular Sciences, University of Brighton, Huxley Building, Lewes Road, Brighton, BN2 4GJ, UK,
Drug Deliv Transl Res. 2015 Aug;5(4):387-96. doi: 10.1007/s13346-015-0231-5.
Immunodiagnostic microneedles provide a novel way to extract protein biomarkers from the skin in a minimally invasive manner for analysis in vitro. The technology could overcome challenges in biomarker analysis specifically in solid tissue, which currently often involves invasive biopsies. This study describes the development of a multiplex immunodiagnostic device incorporating mechanisms to detect multiple antigens simultaneously, as well as internal assay controls for result validation. A novel detection method is also proposed. It enables signal detection specifically at microneedle tips and therefore may aid the construction of depth profiles of skin biomarkers. The detection method can be coupled with computerised densitometry for signal quantitation. The antigen specificity, sensitivity and functional stability of the device were assessed against a number of model biomarkers. Detection and analysis of endogenous antigens (interleukins 1α and 6) from the skin using the device was demonstrated. The results were verified using conventional enzyme-linked immunosorbent assays. The detection limit of the microneedle device, at ≤10 pg/mL, was at least comparable to conventional plate-based solid-phase enzyme immunoassays.
免疫诊断微针提供了一种以微创方式从皮肤中提取蛋白质生物标志物用于体外分析的新方法。该技术可以克服生物标志物分析尤其是实体组织分析中的挑战,目前实体组织分析通常需要进行侵入性活检。本研究描述了一种多重免疫诊断装置的开发,该装置包含同时检测多种抗原的机制以及用于结果验证的内部检测对照。还提出了一种新颖的检测方法。它能够在微针尖端特异性地检测信号,因此可能有助于构建皮肤生物标志物的深度分布图。该检测方法可以与计算机化光密度测定法结合用于信号定量。针对多种模型生物标志物评估了该装置的抗原特异性、灵敏度和功能稳定性。使用该装置对皮肤中的内源性抗原(白细胞介素1α和6)进行了检测和分析。结果使用传统的酶联免疫吸附测定法进行了验证。微针装置的检测限≤10 pg/mL,至少与传统的基于平板的固相酶免疫测定法相当。