Bhakta Samir A, Borba Rubiane, Taba Mario, Garcia Carlos D, Carrilho Emanuel
University of Texas at San Antonio, Department of Chemistry, San Antonio, TX, USA.
Instituto de Quimica de São Carlos, Universidade de São Paulo, São Carlos, SP, Brazil; Instituto Nacional de Ciência e Tecnologia de Bioanalítica, Campinas, SP, Brazil.
Anal Chim Acta. 2014 Jan 27;809:117-22. doi: 10.1016/j.aca.2013.11.044. Epub 2013 Nov 28.
Point-of-care platforms can provide fast responses, decrease the overall cost of the treatment, allow for in-home determinations with or without a trained specialist, and improve the success of the treatment. This is especially true for microfluidic paper-based analytical devices (μPAD), which can enable the development of highly efficient and versatile analytical tools with applications in a variety of biomedical fields. The objective of this work was the development of μPADs to identify and quantify levels of nitrite in saliva, which has been proposed as a potential marker of periodontitis. The devices were fabricated by wax printing and allowed the detection of nitrite by a colorimetric reaction based on a modified version of the Griess reaction. The presented modifications, along with the implementation of a paper-based platform, address many of the common drawbacks (color development, stability, etc.) associated with the Griess reaction and are supported by results related to the design, characterization, and application of the proposed devices. Under the optimized conditions, the proposed devices enable the determination of nitrite in the 10-1000 μmol L(-1) range with a limit of detection of 10 μmol L(-1) and a sensitivity of 47.5 AU log (μmol L(-1)). In order to demonstrate the potential impact of this technology in the healthcare industry, the devices were applied to the analysis of a series of real samples, covering the relevant clinical range.
即时护理平台能够提供快速响应,降低治疗的总体成本,无需专业人员培训即可在家中进行诊断,并提高治疗成功率。对于基于微流控纸的分析设备(μPAD)而言尤其如此,它能够开发出高效且通用的分析工具,并应用于各种生物医学领域。这项工作的目标是开发μPADs,用于识别和定量唾液中亚硝酸盐的含量,亚硝酸盐已被认为是牙周炎的潜在标志物。这些设备通过蜡印法制造,并基于改良的格里斯反应通过比色反应检测亚硝酸盐。所提出的改进措施以及基于纸的平台的应用,解决了与格里斯反应相关的许多常见缺点(显色、稳定性等),并得到了与所提出设备的设计、表征和应用相关的结果的支持。在优化条件下,所提出的设备能够测定浓度范围为10 - 1000 μmol L(-1)的亚硝酸盐,检测限为10 μmol L(-1),灵敏度为47.5 AU log (μmol L(-1))。为了证明这项技术在医疗行业的潜在影响,这些设备被应用于一系列实际样品的分析,涵盖了相关的临床范围。