Disruptive & Sustainable Technologies for Agricultural Precision, Singapore-MIT Alliance for Research and Technology Centre, Singapore, 138602, Singapore.
Temasek Life Sciences Laboratory Limited, Singapore, 117604, Singapore.
Nat Commun. 2024 Oct 28;15(1):9300. doi: 10.1038/s41467-024-53532-7.
Covalent organic frameworks designed as chromatic sensors offer opportunities to probe biological interfaces, particularly when combined with biocompatible matrices. Particularly compelling is the prospect of chemical tomography - or the 3D spatial mapping of chemical detail within the complex environment of living systems. Herein, we demonstrate a chromic Covalent Organic Framework (COF) integrated within silk fibroin (SF) microneedles that probe plant vasculature, sense the alkalization of vascular fluid as a biomarker for drought stress, and provide a 3D in-vivo mapping of chemical gradients using smartphone technology. A series of Schiff base COFs with tunable pKa ranging from 5.6 to 7.6 enable conical, optically transparent SF microneedles with COF coatings of 120 to 950 nm to probe vascular fluid and the surrounding tissues of tobacco and tomato plants. The conical design allows for 3D mapping of the chemical environment (such as pH) at standoff distances from the plant, enabling in-vivo chemical tomography. Chromatic COF sensors of this type will enable multidimensional chemical mapping of previously inaccessible and complex environments.
设计用于显色传感器的共价有机框架为探测生物界面提供了机会,特别是当与生物相容性基质结合使用时。特别引人注目的是化学层析成像的前景,即对活系统复杂环境中化学细节的 3D 空间映射。在此,我们展示了一种整合在丝素蛋白(SF)微针内的显色共价有机框架(COF),它可以探测植物脉管系统,感测脉管液的碱化作为干旱胁迫的生物标志物,并使用智能手机技术对化学梯度进行 3D 体内映射。一系列具有可调 pKa 值(范围为 5.6 至 7.6)的席夫碱 COF 可制成锥形、光学透明的 SF 微针,其 COF 涂层厚度为 120 至 950nm,可探测血管液和烟草及番茄植物的周围组织。锥形设计允许在与植物保持一定距离的情况下对化学环境(如 pH 值)进行 3D 映射,从而实现体内化学层析成像。这种显色 COF 传感器将能够对以前无法进入的复杂环境进行多维化学映射。