Biomedical Engineering Reference
In-Depth Information
20. Chan, S.; Horner, S. R.; Miller, B. L.; Fauchet, P. M. (2001). Identification of Gram Negative
Bacteria using Nanoscale Silicon Microcavities. J. Am. Chem. Soc. 123: 11797-11798.
21. Young, L. S.; Martin, W. J.; Meyer, R. D.; Weinstein, R. J.; Anderson, E. T. (1977). Gram-negative
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signaling. Curr. Opin. Immunol. 6: 125-130.
23. Hubbard, R. D.; Horner, S. R.; Miller, B. L. (2001). Highly Substituted ter -Cyclopentanes as
Receptors for Lipid A. J. Am. Chem. Soc. 123: 5810-5811.
24. Kenny, B.; DeVinney, R.; Stein, M.; Reinscheid, D. J.; Fry, E. A.; Finlay, B. B. (1997).
Enteropathogenic E. coli (EPEC) transfers its receptor for intimate adherence into mammalian
cells. Cell 91: 511.
25. Tinsley-Brown, A. M.; Canham, L. T.; Hollings, M.; Anderson, M. H.; Reeves, C. L.; Cox, T. I.;
Nicklin, S.; Squirrell, D. J.; Perkins, E.; Hutchinson, A.; Sailor, M. J.; Wun, A. (2000). Tuning the
pore size and surface chemistry of porous silicon for immunoassays. Phys. Stat. Sol. A 182:
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26. DeLouise, L. A.; Miller, B. L. (2004). Optimization of mesoporous silicon microcavities for pro-
teomic sensing. Mat. Res. Soc. Symp. Proc. 782: A5.3.1-A5.3.7.
27. Chan, S.; Fauchet, P. M.; Li, Y.; Rothberg, L. J.; Miller, B. L. (2000). Porous Silicon Microcavities
for Biosensing Applications. Phys. Stat. Sol. A. 182: 541-546.
28. Allardyce, C. S.; Mcdonagh, P. D; Lu-Yun, L.; Wolf, C. R.; Roberts, G. C. K. (1999). The role of
tyrosine-9 and the C-terminal helix in the catalytic mechanism of Alpha-class glutathione S-
transferases. Biochem. J. 343: 525-531.
29. Vargo, M. A.; Nguyen, L.; Colman, R. F. (2004). Subunit interface residues of glutathione S-
transferase A1-1 that are important in the monomer-dimer equilibrium. Biochemistry 43:
3327-3335.
30. DeLouise, L. A.; Miller, B. L. (2004). Quantitative Assessment of Enzyme Immobilization
Capacity in Porous Silicon. Anal. Chem. 76: 6915-6920.
31. DeLouise, L. A.; Miller, B. L. (2005). Enzyme Immobilization in Porous Silicon: Quantitative
Analysis of the Kinetic Parameters for Glutathione-S-Transferases. Anal. Chem. 77: 1950-1956.
32. Bousse, L.; Mostarshed, S.; vander Schoot, B.; de Rooij, N. F.; Gimmel, P.; Göpel, W. (1991).
Zeta potential measurements of Ta 2 O 5 and SiO 2 thin-films. J. Colloid Interface Sci. 147: 22-32.
33. DeLouise, L. A.; Kou, P. M.; Miller, B. L. (2005). Cross-Correlation of Optical Microcavity
Biosensor Response with Immobilized Enzyme Activity. Insights into Biosensor Sensitivity.
Anal. Chem. 77: 3222-3220.
34.
Canham, L. T.; Stewart, M. P.; Buriak, J. M.; Reeves, C. L.; Anderson, M.; Squire, E. K.; Allcock,
P.; Snow, P. A. (2000). Derivatized porous silicon mirrors: Implantable optical components
with slow resorbability. Phys. Stat. Sol. A 182: 521-525.
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P.; Snow, P. A. (2000). Derivatized porous silicon mirrors: Implantable optical components
with slow resorbability. Phys. Stat. Sol. A 182: 521-525.
38.
Janshoff, A.; Dancil, K.-P. S.; Steinem, C.; Greiner, D. P.; Lin, V. S.-Y.; Gurtner, C.; Motesharei,
K.; Sailor, M. J.; Ghadiri, M. R. (1998). Macroporous p-Type Silicon Fabry-Perot Layers.
Fabrication, Characterization, and Applications in Biosensing. J. Am. Chem. Soc. 120:
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Steinem, C.; Janshoff, A.; Lin, V. S.-Y.; Völker, N. H.; Ghadiri, M. R. (2004). DNA hybridization-
enhanced porous silicon corrosion: mechanistic investigations and prospect for optical inter-
ferometric biosensing. Tetrahedron 60: 11259-11267.
40.
DeLouise, L. A.; Fauchet, P. M.; Miller, B. L.; Pentland, A. P. (2005). Hydrogel Supported
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Ouyang, H.; Christophersen, M.; Viard, R.; Miller, B. L.; Fauchet, P. M. (2005). Macroporous
Silicon Microcavities for Macromolecule Detection. Adv. Func. Mat. 15: 1851-1859.
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