Department of Chemistry, Oakland University, 2200 Squirrel Road, Rochester, MI 48309, USA.
Biosens Bioelectron. 2010 Nov 15;26(3):996-1001. doi: 10.1016/j.bios.2010.08.025. Epub 2010 Aug 19.
Multivalent interaction between boronic acids immobilized on quartz crystal microbalance (QCM) sensor surface and the carbohydrates modified Au-nanoparticle (AuNP) has been demonstrated for the development of a sensitive carbohydrate biosensor. Briefly, a boronic acid-containing polymer (boropolymer) as multivalent carbohydrate receptor was oriented immobilized on the cysteamine coated electrode through isourea bond formation. Carbohydrates were conjugated to AuNPs to generate a multivalent carbohydrates moiety to amplify the response signal. Thus, the binding of the carbohydrate conjugated AuNPs to the boropolymer surface are multivalent which could simultaneously increase the binding affinity and specificity. We systematically studied the binding between five carbohydrates conjugated AuNPs and the boropolymer. Our studies show that the associate constant (K(a)) was in the order of fucose<glucose<mannose<galactose<maltose. A linear response in the range from 23 μM to 3.83 mM was observed for mannose conjugated AuNPs and the boropolymer recognition elements, with the lower detection limit of 1.5 μM for the carbohydrate analytes. Furthermore, the multivalent binding between carbohydrates and boronic acids are reversible and allow the regeneration of boropolymer surface by using 1M acetic acid so as to sequentially capture and release the carbohydrate analytes.
硼酸固定在石英晶体微天平(QCM)传感器表面与经糖修饰的金纳米粒子(AuNP)之间的多价相互作用已被证实,可用于开发灵敏的糖生物传感器。简要而言,含硼酸的聚合物(硼聚合物)作为多价糖受体通过异脲键形成定向固定在半胱胺涂覆的电极上。将糖偶联到 AuNPs 上以产生多价糖部分来放大响应信号。因此,糖偶联的 AuNPs 与硼聚合物表面的结合是多价的,这可以同时提高结合亲和力和特异性。我们系统地研究了五种糖偶联的 AuNPs 与硼聚合物之间的结合。我们的研究表明,结合常数(K(a))的顺序为岩藻糖<葡萄糖<甘露糖<半乳糖<麦芽糖。对于与 AuNPs 偶联的甘露糖,在 23 μM 至 3.83 mM 的范围内观察到线性响应,碳水化合物分析物的检测下限为 1.5 μM。此外,糖和硼酸之间的多价结合是可逆的,并且可以使用 1M 乙酸再生硼聚合物表面,从而顺序捕获和释放碳水化合物分析物。