Metal enhanced fluorescence-based sensing methods

Chemistry: analytical and immunological testing – Heterocyclic carbon compound – Hetero-n

Reexamination Certificate

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

C436S096000, C436S091000, C422S051000, C422S051000, C422S051000, C422S068100, C422S082080

Reexamination Certificate

active

07939333

ABSTRACT:
The present invention relates to metallic-surface detection systems for determining target substances including free bilirubin in neonatal serum in the presence of a predominantly high background of bilirubin bound Human Serum Albumin (HSA) or sensing and isolating target nucleotide sequences wherein a fluorescence signal is enhanced by close proximity of the target substances near metallic surfaces.

REFERENCES:
patent: 4069016 (1978-01-01), Wu
patent: 5017009 (1991-05-01), Schutt et al.
patent: 5449918 (1995-09-01), Krull et al.
patent: 5866433 (1999-02-01), Schalkhammer et al.
patent: 7253452 (2007-08-01), Steckel et al.
patent: 7348182 (2008-03-01), Martin et al.
patent: 7351590 (2008-04-01), Martin
patent: 7718445 (2010-05-01), Martin
patent: 2003/0228682 (2003-12-01), Lakowicz et al.
patent: 2004/0106166 (2004-06-01), Matsumoto
patent: 2004/0160606 (2004-08-01), Lakowicz et al.
patent: 2006/0147927 (2006-07-01), Geddes et al.
patent: 2007/0269826 (2007-11-01), Geddes
patent: 2008/0096281 (2008-04-01), Geddes et al.
patent: 2009/0022766 (2009-01-01), Geddes
patent: 1536425 (1978-12-01), None
patent: 89/09408 (1989-10-01), None
patent: WO 2004/024191 (2004-03-01), None
patent: WO 2004/059279 (2004-07-01), None
patent: WO 2006/074130 (2006-07-01), None
patent: WO 2006/137945 (2006-12-01), None
Ghosh, Sujit Kumar et al. “Fluorescence quenching of 1-methylaminopyrene near gold nanoparticles: size regime dependence of the small metallic particles.” Chemical Physics Letters (2004) 395 366-372.
Geddes, C. D. And Lakowicz, J. R. (2002). Metal-Enhanced Fluorescence,J. Fluorescence, 12:(2), 121-129.
Lakowicz, J. R. (2001). Radiative Decay Engineering: Biophysical and Biomedical Applications,Anal. BioChem., 298, 1-24.
Lakowicz, J. R., Shen, Y., D'Auria, S., Malicka, J., Fang, J., Gryczynski, Z. and Gryczynski, I. (2002). Radiative Decay Engineering 2. Effects of silver island films on fluorescence intensity Lifetimes and Resonance energy transfer,Anal. Biochem., 301, 261-277.
Lakowicz, J. R., Gryczynski, I, Shen, Y. B., Malicka, J., and Gryczynski, Z, (2001). Intensified fluorescence,Photonics Spectra, 35(10), 96-104.
Gryczynski, I., Malicka, J., Gryczynski, Z., Geddes, C. D. and Lakowicz, J. R. (2002) The CFS engineers the intrinsic radiative decay rate of low quantum yield fluorophores,J. Fluorescence, 12(1), 11-13.
Malika, J., Gryczynski, I., Maliwal, B. P., Fang, J. F. and Lakowicz, J. R. (2003). Fluorescence spectral properties of cyanine dye labeled DNA near metallic silver particles,Biopolymers, 72(2), 96-104.
Malicka, J., Gryczynski, I., Kusba, J., Shen, Y. B., and Lakowicz, J. R. (2002). Effects of metallic silver particles on resonance energy transfer in labeled bovine serum albumin,Biochem. Biophys. Res. Comm., 294(4), 886-892.
Gryczynski, I., Malika, J., Shen, Y. B., Gryczynski, Z., and Lakowicz J. R. (2002). Multiphoton excitation of fluorescence near metallic particles: Enhanced and localized excitation,J. Phys. Chem. B., 106(9), 2191-2195.
Malika, J., Gryczynski, I., Fang, J. Y., Kusba, J. and Lakowicz, J. R. (2002). Photostability of cy3 and cy5-labeled DNA in the presence of metallic silver particles,J. Fluorescence, 12(3-4), 439-447.
Geddes, C. D., Cao, H., Gryczynski, I., Gryczynski, Z., Fang, J. and Lakowicz, J. R. (2003). Metal-enhanced Fluorescence (MEF) Due to silver colloids on a planar surface: Potential applications of Indocyanine green to in vivo imaging,J. Phys Chem. A., 107, 3443-3449.
Geddes, C. D., Parfenov, A., Gryczynski, I., Malicka, J., Roll, D., and Joseph R. Lakowicz, (2003). Fractal silver structures for metal-enhanced fluorescence: Applications for ultra-bright surface assays and lab-on-a-chip based nanotechnologies,J. Fluorescence, 13(2), 123-128.
Geddes, C. D., Parfenov, A., and Lakowicz, J. R., (2003). Photodeposition of silver can result in Metal-enhanced fluorescence,Applied Spectroscopy, 57(5), 526-531.
Geddes, C. D., Gryczynski, I., Malicka, J., Gryczynski, Z., and Lakowicz, J. R. (2003). Metal-Enhanced Fluorescence: Potential applications in HTS,Combinatorial Chemistry and HTS, 6(2), 109-117.
Lakowicz, J. R., Gryczynski, I., Malicka, J., Gryczynski, Z., and Geddes, C. D. (2002). Enhanced and localized multi-photon excited fluorescence near metallic silver islands: Metallic islands can increase probe photostabilityJ. Fluorescence, 12(3/4), 299-302.
Aslan, K., Lakowicz, J. R., and Geddes, C. D., (2005). Rapid Deposition of Triangular Silver Nanoplates on Planar Surfaces: Application to Metal-enhanced Fluorescence,Journal of Physical Chemistry B., 109(13), 6247-6251.
Aslan, K., Lakowicz, J. R., and Geddes, C. D., (2005). Fast and slow deposition of Silver Nanorods on Planar-Surfaces: Application to Metal-enhanced fluorescence.Journal of Physical Chemistry B., 109(8), 3157-3162.
Aslan, K., Lakowicz, J. R., Szmacinski, H., and Geddes, C. D., (2005). Enhanced ratiometric pH sensing using SNAFL-2 on silver island films: Metal-enhanced fluorescence sensing.Jn. Fluorescence, 15(1), 37-40.
Wu, M., Lakowicz, J. R., and Geddes, C. D., (2005). Enhanced lanthanide luminescence using silver nanostructures: Opportunities for a new class of probes with exceptional spectral characteristics.Jn. Fluorescence, 15(1), 53-59, 2005.
Aslan, K., Lakowicz, J. R., Szmacinski, H., and Geddes, C. D., (2004). Metal-enhanced fluorescence solution based sensing Platform.Jn. Fluorescence, 14 (6), 677-679, 2004.
Geddes, C. D., Parfenov, A., Roll, D., Gryczynski, I., Malicka, J., and Lakowicz, J. R., (2004). Roughened silver electrodes for use in Metal-enhanced fluorescence.Spectrochemica Acta A., 60 (8-9), 1977-1983.
Parfenov, A., Gryczynski, I., Malicka, J., Geddes, C. D., and Lakowicz, J. R., (2003). Enhanced fluorescence from fluorophores on fractal silver surfaces.Jn. Phys. Chem. B., 107(34), 8829-8833.
Pugh, V. J., Szmacinski, H., Moore, W. E., Geddes, C. D., and Lakowicz, J. R., (2003).Submicrometer spatial resolution of Metal-enhanced fluorescence.Applied Spectroscopy, 57(12), 1592-1598.
Geddes, C. D., Parfenov, A., Roll, D., Fang, J., and Lakowicz, J. R., (2003). Electrochemical and laser deposition of silver for use in metal-enhanced fluorescence.Langmuir, 19, 6236-6241.
Lakowicz, J. R., Geddes, C. D., Malicka, J., Gryczynski, K., Lukomska, J. Huang, C., Aslan, K., and Gryczynski. I., (2004).Advances in Surface-enhanced Fluorescence.Jn. Fluorescence, 14(4), 425-441.
Aslan, K., et al and Geddes, C. D., (2005) Metal-enhanced fluorescence: An emerging tool in biotechnology.Current opinions in Biotechnology, 16(1), 55-62.
Geddes, C. D., Aslan, K., Gryczynski. I., Malicka, J., and Lakowicz, J. R., Radiative Decay Engineering (RDE).Topics in Fluorescence Spectroscopy vol. 8, Edited by Chris D. Geddes and Joseph R. Lakowicz, Springer, New York, pp. 405-448.
Geddes, C. D., Aslan, K., Gryczynski. I., Malicka, J., and Lakowicz, J. R., (2004) Noble-metal surfaces for Metal-enhanced fluorescence, inReviews in Fluorescence 2004, Ed by Chris D. Geddes and Joseph R. Lakowicz, Kluwer Academic Plenum Publishers, New York, pp. 365-401. ISBN: 0-306-48460-9.
Aslan, K., Bagugu, R., Lakowicz, J. R., and Geddes, C. D., (2005). Metal-Enhanced Fluorescence from Plastic substrates.Jn. Fluorescence, 15(2), 99-104.
Lakowicz, J. R., Malicka, J., Gryczynski. I., Gryczynski. Z., Geddes, C. D., (2003) Radiative Decay Engineering: The role of photonic mode density in biotechnology.Jn. Physics D. Appl. Phys. 38, R240-249.
Hansen, T.W., (1996). Therapeutic approaches to neonatal jaundice: an international survey.Clin Pediatr. 35(6):309-316.
Amin, S.B., Ahlfors,,C., Orlando, M.S., Dalzell, L.E., Merle, K.S., Guillet, R., (2001). Bilirubin-albumin binding variables in premature infants.Pediatrics107(4):664-668.
Cashore, W.J., Oh, W., (1982). Unbound bilirubin and kernicterus in low birth weight infants.Pediatrics69(4):481-485.
Nakamura, H., Takada, S. Shimabuku, R., et al. (1985). Auditory nerve and brainstem responses in newborn infants with hyperbilirubinemia.Pediatrics. 75:703-708.
Funato, M., Tamai, H., Shimada, S., et al. (1994) Vigintiphobia, unbound bilirubin, and auditory brai

LandOfFree

Say what you really think

Search LandOfFree.com for the USA inventors and patents. Rate them and share your experience with other people.

Rating

Metal enhanced fluorescence-based sensing methods does not yet have a rating. At this time, there are no reviews or comments for this patent.

If you have personal experience with Metal enhanced fluorescence-based sensing methods, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Metal enhanced fluorescence-based sensing methods will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFUS-PAI-O-2652891

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.