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一种用于现场应用的便携式生物发光工程细胞基生物传感器。

A portable bioluminescence engineered cell-based biosensor for on-site applications.

机构信息

Department of Pharmaceutical Sciences, University of Bologna, Via Belmeloro 6, 40126 Bologna, Italy.

出版信息

Biosens Bioelectron. 2011 Apr 15;26(8):3647-53. doi: 10.1016/j.bios.2011.02.022. Epub 2011 Feb 18.

Abstract

We have developed a portable biosensing device based on genetically engineered bioluminescent (BL) cells. Cells were immobilized on a 4 × 3 multiwell cartridge using a new biocompatible matrix that preserved their vitality. Using a fiber optic taper, the cartridge was placed in direct contact with a cooled CCD sensor to image and quantify the BL signals. Yeast and bacterial cells were engineered to express recognition elements, whose interaction with the analyte led to luciferase expression, via reporter gene technology. Three different biosensors were developed. The first detects androgenic compounds using yeast cells carrying a green-emitting P. pyralis luciferase regulated by the human androgen receptor and a red mutant of the same species as internal vitality control. The second biosensor detects two classes of compounds (androgens and estrogens) using yeast strains engineered to express green-or red-emitting mutant firefly luciferases in response to androgens or estrogens, respectively. The third biosensor detects lactose analogue isopropyl β-d-1-thiogalactopyranoside using two E. coli strains. One strain exploits the lac operon as recognition element for the expression of P. pyralis luciferase. The other strain serves as a vitality control expressing Gaussia princeps luciferase, which requires a different luciferin substrate. The immobilized cells were stable for up to 1 month. The analytes could be detected at nanomolar levels with good precision and accuracy when the specific signal was corrected using the internal vitality control. This portable device can be used for on-site multiplexed bioassays for different compound classes.

摘要

我们开发了一种基于基因工程生物发光 (BL) 细胞的便携式生物传感设备。细胞使用一种新的生物相容性基质固定在 4×3 微孔板上,以保持其活力。使用光纤锥,将微孔板直接放置在冷却的 CCD 传感器上,以对 BL 信号进行成像和定量。通过报告基因技术,酵母和细菌细胞被工程化以表达识别元件,其与分析物的相互作用导致荧光素酶表达。开发了三种不同的生物传感器。第一种生物传感器使用携带受人类雄激素受体调控的绿色发光 P. pyralis 荧光素酶的酵母细胞和作为内部活力控制的同一物种的红色突变体来检测雄激素化合物。第二种生物传感器使用经过工程改造以分别响应雄激素或雌激素而表达绿色或红色突变萤火虫荧光素酶的酵母菌株来检测两类化合物(雄激素和雌激素)。第三种生物传感器使用两种大肠杆菌菌株检测乳糖类似物异丙基 β-d-1-硫代半乳糖吡喃糖苷。一种菌株利用 lac 操纵子作为识别元件,表达 P. pyralis 荧光素酶。另一种菌株用作活力控制,表达需要不同荧光素底物的 Gaussia princeps 荧光素酶。固定化细胞在长达 1 个月的时间内保持稳定。当使用内部活力控制校正特定信号时,该便携式设备可以以纳摩尔级的精度和准确度检测分析物。该便携式设备可用于现场多化合物类别的多重生物测定。

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