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基于单模平面光波导并使用共固定化植物转化酶和葡萄糖氧化酶制备蔗糖生物传感器。

Fabrication of sucrose biosensor based on single mode planar optical waveguide using co-immobilized plant invertase and GOD.

作者信息

Bagal Dipali S, Vijayan Anu, Aiyer R C, Karekar R N, Karve M S

机构信息

Biochemistry Division, Department of Chemistry, University of Pune, Pune, Maharashtra, India.

出版信息

Biosens Bioelectron. 2007 Jun 15;22(12):3072-9. doi: 10.1016/j.bios.2007.01.008. Epub 2007 Jan 20.

Abstract

In present studies, the new optical sensing platform based on optical planar waveguide (OPWG) for sucrose estimation was reported. An evanescent-wave biosensor was designed by using novel agarose-guar gum (AG) biopolymer composite sol-gel with entrapped enzymes (acid invertase (INV) and glucose oxidase (GOD)). Partially purified watermelon invertase isolated from Citrullus vulgaris fruit (specific activity 832 units mg(-1)) in combination with GOD was physically entrapped in AG sol-gel and cladded on the surface of optical planar waveguide. Na(+)-K(+) ion-exchanged glass optical waveguides were prepared and employed for the fabrication of sucrose biosensor. By addressing the enzyme modified waveguide structure with, the optogeometric properties of adsorbed enzyme layer (12 microm) at the sensor solid-liquid interface were studied. The OPWG sensor with short response time (110 s) was characterized using the 0.2M acetate buffer, pH 5.5. The fabricated sucrose sensor showed concentration dependent linear response in the range 1 x 10(-10) to 1 x 10(-6)M of sucrose. Lower limit of detection of this novel AG-INV-GOD cladded OPWG sensor was found to be 2.5 x 10(-11)M sucrose, which indicates that the developed biosensor has higher sensitivity towards sucrose as compared to earlier reported sensors using various transducer systems. Biochips when stored at room temperature, showed high stability for 81 days with 80% retention of original sensitivity. These sucrose sensing biochips showed good operational efficiency for 10 cycles. The proper confinement of acid invertase and glucose oxidase in hydrogel composite was confirmed by scanning electron microscopy (SEM) images. The constructed OPWG sensor is versatile, easy to fabricate and can be used for sucrose measurements with very high sensitivity.

摘要

在目前的研究中,报道了一种基于光学平面波导(OPWG)的用于蔗糖估算的新型光学传感平台。通过使用新型琼脂糖-瓜尔胶(AG)生物聚合物复合溶胶-凝胶与包埋的酶(酸性转化酶(INV)和葡萄糖氧化酶(GOD))设计了一种倏逝波生物传感器。从西瓜(Citrullus vulgaris)果实中分离得到的部分纯化的西瓜转化酶(比活性为832单位mg(-1))与GOD一起被物理包埋在AG溶胶-凝胶中,并包覆在光学平面波导的表面。制备了Na(+)-K(+)离子交换玻璃光波导并用于制造蔗糖生物传感器。通过处理酶修饰的波导结构,研究了传感器固液界面处吸附酶层(12微米)的光学几何性质。使用pH 5.5的0.2M醋酸盐缓冲液对响应时间短(110秒)的OPWG传感器进行了表征。所制备的蔗糖传感器在1×10(-10)至1×10(-6)M的蔗糖浓度范围内呈现浓度依赖性线性响应。发现这种新型AG-INV-GOD包覆的OPWG传感器的检测下限为2.5×10(-11)M蔗糖,这表明与早期报道的使用各种换能器系统的传感器相比,所开发的生物传感器对蔗糖具有更高的灵敏度。生物芯片在室温下储存时,在81天内显示出高稳定性,原始灵敏度保留80%。这些蔗糖传感生物芯片在10个循环中显示出良好的操作效率。通过扫描电子显微镜(SEM)图像证实了酸性转化酶和葡萄糖氧化酶在水凝胶复合物中的适当包封。所构建的OPWG传感器用途广泛,易于制造,可用于具有非常高灵敏度的蔗糖测量。

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