Cheung Kwan Yee, Mak Wing Cheung, Trau Dieter
Division of Bioengineering, National University of Singapore, Singapore.
Anal Chim Acta. 2008 Jan 28;607(2):204-10. doi: 10.1016/j.aca.2007.11.046. Epub 2007 Dec 3.
A reusable optical bioassay platform using permeability-controlled hydrogel pads for selective saccharide detection has been developed. An optical glucose detection assay based on fluorescence resonance energy transfer (FRET) between dye-labeled dextran and Concanavalin A (ConA) was incorporated into hydrogel pads by entrapment. The hydrogel pads are constructed from hemispherical hydrogel attached onto hydrophobic surfaces of a microtiter plate. The resulted hemispherical hydrogel pads entrapping the sensing biological materials were further surface coated with polyelectrolyte multilayers through a Layer-by-Layer (LbL) self-assembly process to create a permeability-controlled membrane with nanometer thickness. The selective permeable LbL film deposited on the hydrogel surface allows small molecular weight analytes to diffuse into the hydrogel pads while the large molecular weight sensing biological molecules are immobilized. An encapsulation efficiency of 75% for the ConA/Dextran complex within the coated hydrogel pads was achieved and no significant leakage of the complex was observed. Glucose calibration curve with linear range from 0 to 10mM glucose was obtained. Selective permeability of the hydrogel pads has been demonstrated by measurement of saccharides with various molecular weights. The LbL hydrogel pads could selectively detect monosaccharides (glucose, MW=180) and disaccharides (sucrose, MW=342) while polysaccharides (dextran, MW approximately 70kDa) cannot diffuse through the LbL layer and are excluded. LbL hydrogel pads allow regeneration of the FRET system with good signal reproducibility of more than 90% to construct a reusable and reagentless optical bioassay platform.
一种使用渗透性可控水凝胶垫进行选择性糖类检测的可重复使用光学生物测定平台已被开发出来。基于染料标记葡聚糖与伴刀豆球蛋白A(ConA)之间荧光共振能量转移(FRET)的光学葡萄糖检测测定法通过包埋被整合到水凝胶垫中。水凝胶垫由附着在微量滴定板疏水表面的半球形水凝胶构建而成。将捕获传感生物材料的所得半球形水凝胶垫通过逐层(LbL)自组装过程进一步用聚电解质多层膜进行表面包覆,以创建具有纳米厚度的渗透性可控膜。沉积在水凝胶表面的选择性渗透LbL膜允许小分子重量分析物扩散到水凝胶垫中,而大分子重量传感生物分子则被固定。在包覆的水凝胶垫中ConA/葡聚糖复合物的包封效率达到75%,且未观察到复合物有明显泄漏。获得了葡萄糖校准曲线,线性范围为0至10mM葡萄糖。通过测量不同分子量的糖类证明了水凝胶垫的选择性渗透性。LbL水凝胶垫可以选择性地检测单糖(葡萄糖,分子量 = 180)和二糖(蔗糖,分子量 = 342),而多糖(葡聚糖,分子量约为70kDa)不能扩散通过LbL层而被排除。LbL水凝胶垫允许FRET系统再生,信号重现性良好,超过90%,从而构建了一个可重复使用且无需试剂的光学生物测定平台。