| 1. |
Colyer C. L., Tang T., Chiem N., and Harrison D. J. (1997) Clinical potential of microchip capillary electrophoresis systems.
Electrophoresis
18, 1733–1741.
|
| |
| 2. |
Effenhauser C. S., Bruin G. J. M., and Paulus A. (1997) Integrated chip-based capillary electrophoresis. Electrophoresis
18, 2203–2213.
|
| |
| 3. |
Kopp M. U., Crabtree H. J., and Manz A. (1997) Developments in technology and applications of microsystems. Curr. Opinion Chem. Biol.
1, 410–419.
|
| |
| 4. |
Webster J. R. and Mastrangelo C. H. (1997) Large-volume integrated capillary electrophoresis stage fabricated using micromachining
of plastics on silicon substrates. Transducers’ 97, pp. 503–506.
|
| |
| 5. |
Wooley A. T. and Mathies R. A. (1994) Ultra-high-speed DNA fragment separations using microfabricated capillary array electrophoresis
chips. Proc. Natl. Acad. Sci. USA
91, 11,348–11,352.
|
| |
| 6. |
McCormick R. M., Nelson R. J., Alonso-Amigo M. G., Benvegnu D. J., and Hooper H. H. (1997) Microchannel electrophoretic separations
of DNA in injection-molded plastic substrates. Anal. Chem.
69, 2626–2630.
|
| |
| 7. |
Jacobson S. C., Hergenroder R, Moore A. W., and Ramsey J. M. (1994) Precolumn reactions with electrophoretic analysis integrated
on a microchip. Anal. Chem.
66, 4127–4132.
|
| |
| 8. |
Koutny L. B., Schmalzing D., Taylor T. A., and Fuchs M. (1996) Microchip electrophoretic immunoassay for serum cortisol. Anal. Chem.
68, 18–22.
|
| |
| 9. |
Cheng J., Waters L. C., Fortina P., Hvichia G. E., Jacobson S. C., Ramsey J. M., Kricka L. J., and Wilding P. (1998) Degenerate
oligonucleotide primed-polymerase chain reaction and capillary electrophoretic analysis of human DNA on microchip-based devices.
Anal. Biochem.
257, 101–105.
|
| |
| 10. |
Jacobson S. C., Moore A. W., and Ramesey J. M. (1995) Fused quartz substrates for microchip electrophoresis. Anal. Chem.
67, 2059–2063.
|
| |
| 11. |
Fan Z. H. and Harrison D. J. (1994) Micromachining of capillary electrophoresis injectors and separators on glass chips and
evaluation of flow at capillary electrophoresis. Anal. Chem.
66, 177–184.
|
| |
| 12. |
Simpson P. C., Wooley A. T., and Mathies R. A. (1998) Microfabrication technology for the production of capillary array electrophoresis
chips. Biomed. Microdevices
1, 7–26.
|
| |
| 13. |
Nishimoto T., Nakanishi H., Abe H., Arai A., Nakamura R., Yotsunoto A., and Shoji S. Microfabricated chips for capillary electrophoresis
on quartz glass substrates using a bonding with Hydrofluoric acid, in Micro Total Analysis Systems’ 98, (Harrison D. J. and van den Berg A., eds.), Kluwer Academic Publishers, pp. 311–314.
|
| |
| 14. |
Effenhauser C. S., Bruin G. J. M., Paulus A., and Ehrat M. (1997) Integrated capillary electrophoresis on flexible silicone
microdevices: analysis of DNA restriction fragments and detection of single DNA molecules on microchips. Anal. Chem.
69, 3451–3457.
|
| |
| 15. |
Martynova L., Locascio L. E., Gaitan M., Kramer G. W., Christensen R. G., and MacCrehan W. A. (1997) Fabrication of plastic
microfluid channels by imprinting methods. Anal. Chem.
69, 4783–4789.
|
| |
| 16. |
Roberts M. A., Rossier J. S., Bercier P., and Girault H. (1997) UV laser machined polymer substrates for the development of
microdiagnostic systems. Anal. Chem.
69, 2035–2042.
|
| |
| 17. |
Ford S. M., Davies J., Kar B., Qi S. D., McWhoeter S., Soper S. A., and Malek C. K. (1999) Micromachining in plastics using
X-ray lithography for the fabrication of micro-electrophoresis devices. J. Biomech. Eng.
121, 13–21.
|
| |
| 18. |
Harrison D. J., Fluri K., Seiler K., Fan Z., Effenhauser C. S., and Manz A. (1993) Micromachining a miniaturized capillary
electrophoresis-based chemical analysis system on a chip. Science
261, 895–896.
|
| |
| 19. |
Fister J. C. III, Jacobson S. C., Davis L. M., and Ramsey J. M. (1998) Counting single chromophore molecules for ultrasensitive
analysis and separations on microchip devices. Anal. Chem.
70, 431–437.
|
| |
| 20. |
Jacobson S. C., Culbertson C. T., Daler J. E., and Ramsey J. M. (1998) Microchip structures for submillisecond electrophoresis.
Anal. Chem.
70, 3476–3480.
|
| |
| 21. |
Effenhauser C. S., Paulus A., Manz A., and Widmer H. M. (1994) High-speed separation of antisense ofligonucleotides on a micromachined
capillary electrophoresis device. Anal. Chem.
66, 2949–2953.
|
| |
| 22. |
Terabe S., Otsuka K., Ichikawa K., Tsuchiya A., and Ando T. (1984) Electrokinetic separations with micellar solutions and
open-tubular capillary. Anal. Chem.
56, 111–113.
|
| |
| 23. |
Moore A. W., Jacobson S. C., and Ramesey J. M. (1995) Microchip separations of neutral species via micellar electrokinetic
capillary chromatography. Anal. Chem.
67, 4184–4189.
|
| |
| 24. |
Rodriguez I., Lee H. K., and Li S. F. (1999) Microchannel electrophoretic separation of biogenic amines by micellar electrokinetic
chromatography. Electrophoresis
20, 118–126.
|
| |
| 25. |
von Heeren F., Verpoorte E., Manz A., and Thormann W (1996) Micellar electrokinetic chromatography separations and analyses
of biological samples on a cyclic planar microstructure. Anal. Chem.
68, 2044–2053.
|
| |
| 26. |
Walker P. A. m, Morris M. D., Burns M. A., and Johnson B. N. (1998) Isotachophoretic separation on a microchip. Normal Raman
spectroscopy detection. Anal. Chem.
70, 3766–3769.
|
| |
| 27. |
Hofmann O., Che D., Cruickshank K. A., and Muller U. R. (1999) Adaptation of capillary isoelectric focusing to microchannels
on a glass chip. Anal. Chem.
71, 678–686.
|
| |
| 28. |
Jacobson S. C., Hergenroder R., Koutny L. B. and Ramsey J. M. (1994) Open-channel electrochromatography on a microchip. Anal. Chem.
66, 2369–2373.
|
| |
| 29. |
Kutter J. P., Jacobson S. C., and Ramsey J. M. (1998) Solvent-programmed microchip open-channel electrochromatography. Anal. Chem.
70, 3291–3297.
|
| |
| 30. |
Raymond D. E., Manz A., and Widmer H. M. (1994) Continuous sample pretreatment using a free-flow electrophoresis device integrated
onto a silicon chip. Anal. Chem.
66, 2858–2865.
|
| |
| 31. |
Raymond D. E., Manz A., and Widmer H. M. (1996) Continuous separation of high molecular weight compounds using a microliter
volume free-flow electrophoresis microstructure. Anal. Chem.
68, 2515–2522.
|
| |
| 32. |
Huang Y., Wang X.-B., Becker F. F., and Gascoyne P. R. C. (1997) Introducing dielectrophoresis as anew force field for field-flow
fractionation. Biophys. J.
73, 1118–1129.
|
| |
| 33. |
Ertas D. (1998) Lateral separation of macromolecules and polyelectrolytes in microlithographic arrays. Phys. Rev. Lett.
80, 1548–1551.
|
| |
| 34. |
Duke T. A. J., and Austin R. H. (1998) Microfabricated sieve for the continuous sorting of macromolecules. Phys. Rev. Lett.
80, 1552–1555.
|
| |
| 35. |
Duke T. A. J., Austin R. H., Cox E. C., and Chan S. S. (1996) Pulsed-field electrophoresis in microlithographic arrays. Electrophoresis
17, 1073–1079.
|
| |
| 36. |
Woolley A. T., and Mathies R. A. (1994) Ultra-high-speed DNA fragment separations using microfabricated capillary array electrophoresis
chips. Proc. Natl. Acad. Sci. USA
91, 11,348–11,352.
|
| |
| 37. |
Schmalzing D., Koutny L., Adourian A., Belgrader P., Matsudaira P., and Ehrlich D. (1997) DNA typing in thirty seconds with
a microfabricated device. Proc. Natl. Acad. Sci. USA
94, 10,273–10,278.
|
| |
| 38. |
Schmalzing D., Koutny L., Adourian A., Chisholm D., Matsudaira P., and Ehrlich D. (2001) Genotyping by microdevice electrophoresis,
in Capillary Electrophoresis of Nucleic Acids, Vol. 2 (Mitchelson K. R., and Cheng J., eds.), Humana Press Totowa, NJ, pp. 163–173.
|
| |
| 39. |
Woolley A. T., Sensabaugh G. F., and Mathies R. A. (1997) High-speed DNA genotyping using microfabricated capillary array
electrophoresis chips. Anal. Chem.
69, 2181–2186.
|
| |
| 40. |
Ogura M., Agata Y., Watanabe K., McCormick R. M., Hamaguchi Y, Aso Y., and Mitsuhashi M. (1998) RNA chip: quality assessment
of RNA by microchannel linear gel electrophoresis in injection-molded plastic chips. Clin. Chem.
44, 2249–2255.
|
| |
| 41. |
Woolley A. T., and Mathies R. A. (1995) Ultra-high-speed DNA sequencing by using capillary electrophoresis chips. Anal. Chem.
67, 3676–3680.
|
| |
| 42. |
Liu S., Shi Y., Ja W. W., and Mathies R. A. (1999) Optimization of high-speed DNA sequencing on microfabricated capillary
electrophoresis channels. Anal. Chem.
71, 566–673.
|
| |
| 43. |
Cheng J., Fortina P., Sorrey S., Kricka L. J., and Wilding P. (1996) Microchip-based devices for molecular diagnosis of genetic
diseases. Molecular Diagnosis
1, 183–200.
|
| |
| 44. |
Wilding P., Kricka L. J., Cheng J., Hvichia G. E., Shoffner M. A., and Fortina P. (1998) Integrated cell isolation and PCR
analysis using silicon microfilter-chambers. Anal. Biochem.
257, 95–100.
|
| |
| 45. |
Cheng J., Sheldon E. L., Wu L., Heller M. J., and O’Connell J. P. (1998) Isolation of cultured cervical carcinoma cells mixed
with peripheral blood cells on a bioelectronic chip. Anal. Chem.
70, 2321–2326.
|
| |
| 46. |
Cheng J., Sheldon E. L., Wu L., Uribe A., Gerrue L. O., Heller M. J., and OĆonnell J. P. (1998) Preparation and hybridization
analysis of DNA/RNA from E. coli on microfabricated bioelectronic chips. Nature Biotechnol.
16, 541–546.
|
| |
| 47. |
Li P. C. H., and Harrison D. J. (1997) Transport, manipulation, and reaction of biological cells on-chip using electrokinetic
effects. Anal. Chem.
69, 1564–1568.
|
| |
| 48. |
Jacobson S. C., and Ramsey J. M. (1996) Integrated microdevice for DNA restriction fragment analysis. Anal. Chem.
68, 720–723.
|
| |
| 49. |
Cheng J., Waters L. C., Fortina P., Hvichia G. E., Jacobson S. C., Ramsey J. M., Kricka L. J., and Wilding P. (1998) Degenerate
oligonucleotide primed-polymerase chain reaction and capillary electrophoretic analysis of human DNA on microchip-based devices.
Anal. Biochem.
257, 101–105.
|
| |
| 50. |
Fortina P., Cheng J., Kricka L. J., Waters L. J., Jacobson S. C., Wilding P., and Ramsey J. M. (2001) DOP-PCR amplification
of whole genomic DNA and microchip-based capillary electrophoresis, in Capillary Electrophoresis of Nucleic Acids, Vol. 2 (Mitchelson K. R. and Cheng J., eds.), Humana Press Totowa, NJ, pp. 211–219.
|
| |
| 51. |
Woolley A. T., Hadley D., Landre P., deMello A. J., Mathies R. A., and Northrup A. (1996) Functional Integration of PCR amplification
and capillary electrophoresis in a microfabricated DNA analysis device. Anal. Chem.
68, 4081–4086.
|
| |
| 52. |
Waters L. C., Jacobson S. C., Kroutchinina N., Khandurina J., Foote R. S., and Ramsey J. M. (1998) Microchip device for cell
lysis, multiplex PCR amplification, and electrophoretic sizing. Anal. Chem.
70, 158–162.
|
| |
| 53. |
Waters L. C., Jacobson S. C., Kroutchinina N., Khandurina J., Foote R. S., and Ramsey J. M. (1998) Multiplex sample PCR amplification
and electrophoretic analysis on a microchip. Anal. Chem.
70, 5172–5176.
|
| |
| 54. |
Burns M. A., Johnson B. N., Brahmasandra S. N., Handique K., Webster J. R., Krishnan M., Sammarco T. S., Man P. M., Jones
D., Heldsinger D., Mastrangelo C. H., and Burke D. T. (1998) An integrated nanoliter DNA analysis device. Science
282, 484–487.
|
| |