07.06.2013 Views

Advances in biosensors: principle, architecture and applications

Advances in biosensors: principle, architecture and applications

Advances in biosensors: principle, architecture and applications

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

1<br />

2<br />

3<br />

4<br />

5<br />

6<br />

7<br />

8<br />

9<br />

10<br />

11<br />

12<br />

13<br />

14<br />

15<br />

16<br />

17<br />

18<br />

19<br />

20<br />

21<br />

22<br />

23<br />

24<br />

25<br />

26<br />

27<br />

28<br />

29<br />

30<br />

31<br />

32<br />

33<br />

34<br />

35<br />

36<br />

37<br />

38<br />

39<br />

40<br />

41<br />

42<br />

43<br />

Li D. Chemilum<strong>in</strong>escence. In Li D (ed): Encyclopedia of Microfluidics <strong>and</strong> Nanofluidics.<br />

Spr<strong>in</strong>ger, New York 2008, pp. 260.<br />

L<strong>in</strong> L, Liu Q, Wang L, Liu A, Weng S, Lei Y, Chen W, L<strong>in</strong> X, Chen Y. Enzyme-amplified<br />

electrochemical biosensor for detection of PML-RARα fusion gene based on hairp<strong>in</strong><br />

LNA probe. Biosens. Bioelectrons. 28: 277–83, 2011.<br />

Liu A, Wang K, Weng S, Lei Y, L<strong>in</strong> L, Chen W, L<strong>in</strong> X, Chen. (2012). Development of<br />

electrochemical DNA <strong>biosensors</strong>. Trends. Anal. Chem. 37: 101–111, 2012.<br />

Liu CC. Electrochemical Based Biosensors. Biosensors. 2: 269–272, 2012.<br />

Liu M, L<strong>in</strong> Z, L<strong>in</strong> J. A review on <strong>applications</strong> of chemilum<strong>in</strong>escence detection <strong>in</strong> food<br />

analysis. Anal Chim Acta. 670: 1–10, 2010<br />

Liu Q, Hu N, Zhang F, Wang H, Ye W, Wang P. Neurosecretory cell-based biosensor:<br />

monitor<strong>in</strong>g secretion of adrenal chromaff<strong>in</strong> cells by local extracellular acidification us<strong>in</strong>g<br />

light-addressable potentiometric sensor. Biosens Bioelectron. 35: 421–424, 2012.<br />

Luong JHT, Male KB, Glennon JD. Biosensor technology: Technology push versus market<br />

pull. Biotechnol. Adv. 26: 492–500, 2008.<br />

Makarychev-Mikhailov, S., Shvarev, A., & Bakker, E.: New trends <strong>in</strong> ion-selective<br />

electrodes. In Zhang X, Ju H, Wang J (ed): Electrochemical Sensors, Biosensors <strong>and</strong><br />

Their Biomedical Applications. Elsevier, San Diego 2008, pp. 71-109.<br />

Mannelli I, Courtois V, Lecaruyer P, Roger G, Millot MC, Goossens M, Canva M. Surface<br />

plasmon resonance imag<strong>in</strong>g (SPRI) system <strong>and</strong> real-time monitor<strong>in</strong>g of DNA biochip for<br />

human genetic mutation diagnosis of DNA amplified samples. Sens Actuators B Chem.<br />

119: 583–591, 2006.<br />

Maskow T, Wolf K, Kunze W, Enders S, Harms H. Rapid analysis of bacterial<br />

contam<strong>in</strong>ation of tap water us<strong>in</strong>g isothermal calorimetry. Thermochim Acta. 543: 273–<br />

280, 2012.<br />

Mathews ST, Plaisance EP, Kim T. Imag<strong>in</strong>g Systems for Westerns: Chemilum<strong>in</strong>escence vs.<br />

Infrared Detection. In Kurien BT, Scofield RH (ed): Methods <strong>in</strong> Molecular Biology,<br />

Prote<strong>in</strong> Blott<strong>in</strong>g <strong>and</strong> Detection. Humana Press, Totowa 2009, pp. 499-513<br />

McGu<strong>in</strong>ness RP, Verdonk E. Electrical impedance technology applied to cell-based assays.<br />

In Cooper MA (ed): Label Free Biosensors: Techniques <strong>and</strong> Applications. Cambridge<br />

University Press, New York 2009, pp. 251-278<br />

Md Muslim NZ, Ahmad M, Heng LY, Saad B. Optical biosensor test strip for the screen<strong>in</strong>g<br />

<strong>and</strong> direct determ<strong>in</strong>ation of l-glutamate <strong>in</strong> food samples. Sens Actuators B Chem. 161:<br />

493–497, 2012.<br />

Melamed S, Elad T, Belk<strong>in</strong> S. Microbial sensor cell arrays. Curr Op<strong>in</strong> Biotechnol. 23: 2–8,<br />

2012.<br />

Merwe PAVD. Surface plasmon resonance. In Hard<strong>in</strong>g S, Chowdhry PZ (ed): Prote<strong>in</strong>-<br />

Lig<strong>and</strong> <strong>in</strong>teractions: hydrodynamics <strong>and</strong> calorimetry. Oxford University Press, Bath<br />

2001, pp. 137-170.<br />

Mitchell J, Wu Y. Surface Plasmon Resonance Biosensors for Highly Sensitive Detection<br />

of Small Biomolecules. In Serra PA (ed): Biosensors. InTech, Rijeka 2010, pp. 151-168.<br />

Moghissi K, Str<strong>in</strong>ger MR, Dixon K. Fluorescence photodiagnosis <strong>in</strong> cl<strong>in</strong>ical practice.<br />

Photodiagn Photodyn. 5: 235–237, 2008.<br />

29

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!