Literature DB >> 21881677

Integration of cell phone imaging with microchip ELISA to detect ovarian cancer HE4 biomarker in urine at the point-of-care.

Shuqi Wang1, Xiaohu Zhao, Imran Khimji, Ragip Akbas, Weiliang Qiu, Dale Edwards, Daniel W Cramer, Bin Ye, Utkan Demirci.   

Abstract

Ovarian cancer is asymptomatic in the early stages and most patients present with advanced levels of disease. The lack of cost-effective methods that can achieve frequent, simple and non-invasive testing hinders early detection and causes high mortality in ovarian cancer patients. Here, we report a simple and inexpensive microchip ELISA-based detection module that employs a portable detection system, i.e., a cell phone/charge-coupled device (CCD) to quantify an ovarian cancer biomarker, HE4, in urine. Integration of a mobile application with a cell phone enabled immediate processing of microchip ELISA results, which eliminated the need for a bulky, expensive spectrophotometer. The HE4 level detected by a cell phone or a lensless CCD system was significantly elevated in urine samples from cancer patients (n = 19) than healthy controls (n = 20) (p < 0.001). Receiver operating characteristic (ROC) analyses showed that the microchip ELISA coupled with a cell phone running an automated analysis mobile application had a sensitivity of 89.5% at a specificity of 90%. Under the same specificity, the microchip ELISA coupled with a CCD had a sensitivity of 84.2%. In conclusion, integration of microchip ELISA with cell phone/CCD-based colorimetric measurement technology can be used to detect HE4 biomarker at the point-of-care (POC), paving the way to create bedside technologies for diagnostics and treatment monitoring.

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Year:  2011        PMID: 21881677      PMCID: PMC3767574          DOI: 10.1039/c1lc20479c

Source DB:  PubMed          Journal:  Lab Chip        ISSN: 1473-0189            Impact factor:   6.799


  41 in total

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2.  The efficacy of transvaginal sonographic screening in asymptomatic women at risk for ovarian cancer.

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3.  Improved prediction of decreased creatinine clearance by serum cystatin C: use in cancer patients before and during chemotherapy.

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4.  Microfluidic ELISA: on-chip fluorescence imaging.

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Review 6.  Rapid tests for sexually transmitted infections (STIs): the way forward.

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7.  Ovarian cancer biomarkers in urine.

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9.  Proteomic-based discovery and characterization of glycosylated eosinophil-derived neurotoxin and COOH-terminal osteopontin fragments for ovarian cancer in urine.

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10.  A novel multiple marker bioassay utilizing HE4 and CA125 for the prediction of ovarian cancer in patients with a pelvic mass.

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  63 in total

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8.  mHealth Education Applications Along the Cancer Continuum.

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Review 9.  Flexible Substrate-Based Devices for Point-of-Care Diagnostics.

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Review 10.  Point-of-care assays for tuberculosis: role of nanotechnology/microfluidics.

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