Nanomaterial-based photoluminescence (PL) diagnostic devices offer fast and highly sensitive detection of pesticides, DNA, and toxic agents. Here we report a label-free PL genosensor for sensitive detection of Vibrio cholerae that is based on a DNA hybridization strategy utilizing nanostructured magnesium oxide (nMgO; size >30ânm) particles. The morphology and size of the synthesized nMgO were determined by transmission electron microscopic (TEM) studies. The probe DNA (pDNA) was conjugated with nMgO and characterized by X-ray photoelectron and Fourier transform infrared spectroscopic techniques. The target complementary genomic DNA (cDNA) isolated from clinical samples of V. cholerae was subjected to DNA hybridization studies using the pDNA-nMgO complex and detection of the cDNA was accomplished by measuring changes in PL intensity. The PL peak intensity measured at 700ânm (red emission) increases with the increase in cDNA concentration. A linear range of response in the developed PL genosensor was observed from 100 to 500âng/μL with a sensitivity of 1.306âemi/ng, detection limit of 3.133âng/μL and a regression coefficient (R(2)) of 0.987. These results show that this ultrasensitive PL genosensor has the potential for applications in the clinical diagnosis of cholera.
A Label-Free Photoluminescence Genosensor Using Nanostructured Magnesium Oxide for Cholera Detection.
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作者:Patel Manoj Kumar, Ali Md Azahar, Krishnan Sadagopan, Agrawal Ved Varun, Al Kheraif AbdulAziz A, Fouad H, Ansari Z A, Ansari S G, Malhotra Bansi D
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2015 | 起止号: | 2015 Nov 27; 5:17384 |
| doi: | 10.1038/srep17384 | ||
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