Zhu Dan Dan, Tan Yu Rong, Zheng Le Wen, Lao Jia Zheng, Liu Ji Yang, Yu Jing, Chen Peng
School of Chemistry, Chemical Engineering and Biotechnology, Nanyang Technological University, Singapore 637457, Singapore.
School of Materials Science and Engineering, Nanyang Technological University, Singapore 639798, Singapore.
ACS Appl Mater Interfaces. 2023 Mar 13. doi: 10.1021/acsami.3c00573.
Maintaining the concentrations of various ions in body fluids is critical to all living organisms. In this contribution, we designed a flexible microneedle patch coupled electrode array (MNP-EA) for the in situ multiplexed detection of ion species (Na, K, Ca, and H) in tissue interstitial fluid (ISF). The microneedles (MNs) are mechanically robust for skin or cuticle penetration (0.21 N/needle) and highly swellable to quickly extract sufficient ISF onto the ion-selective electrochemical electrodes (∼6.87 μL/needle in 5 min). The potentiometric sensor can simultaneously detect these ion species with nearly Nernstian response in the ranges wider enough for diagnosis purposes (Na: 0.75-200 mM, K: 1-128 mM, Ca: 0.25-4.25 mM, pH: 5.5-8.5). The in vivo experiments on mice, humans, and plants demonstrate the feasibility of MNP-EA for timely and convenient diagnosis of ion imbalances with minimal invasiveness. This transdermal sensing platform shall be instrumental to home-based diagnosis and health monitoring of chronic diseases and is also promising for smart agriculture and the study of plant biology.
维持体液中各种离子的浓度对所有生物都至关重要。在本论文中,我们设计了一种柔性微针贴片耦合电极阵列(MNP-EA),用于原位多重检测组织间液(ISF)中的离子种类(Na、K、Ca和H)。微针(MNs)在穿透皮肤或角质层时具有很强的机械强度(每根针0.21 N),并且具有高度的溶胀性,能够快速将足够的组织间液提取到离子选择性电化学电极上(5分钟内每根针约6.87 μL)。电位传感器能够在足够宽的范围内以接近能斯特响应的方式同时检测这些离子种类,以用于诊断目的(Na:0.75 - 200 mM,K:1 - 128 mM,Ca:0.25 - 4.25 mM,pH:5.5 - 8.5)。在小鼠、人类和植物上进行的体内实验证明了MNP-EA在以最小侵入性及时方便地诊断离子失衡方面的可行性。这种经皮传感平台将有助于慢性病的家庭诊断和健康监测,在精准农业和植物生物学研究方面也具有广阔前景。