Biology Reference
In-Depth Information
11. Stokes GG. On the change of refrangibility of
light. Philos Trans R Soc Lond
1852; 142 :463-562.
12. Udenfriend S. Development of the spectrophotofluorometer and its commercializa-
tion. Protein Sci 1995; 4 :542-51.
13. Coons AH, Kaplan MH. Localization of antigen in tissue cells. II. Improvements in a
method for the detection of antigen by means of fluorescent antibody. J Exp Med
1950; 91 :1-13.
14. Stryer L, Haugland RP. Energy transfer: a spectroscopic ruler. Proc Natl Acad Sci USA
1967; 58 :719-26.
15. Sapsford KE, Berti L, Medintz IL. Materials for fluorescence resonance energy transfer
analysis: beyond traditional donor-acceptor combinations. Angew Chem Int Ed
2006; 45 :4562-88.
16. Mitnaul LJ, Tian J, Burton C, LamMH, Zhu Y, Olson SH, et al. Fluorogenic substrates
for high-throughput measurements of endothelial
J Lipid Res
lipase activity.
2007; 48 :472-82.
17. Gagey N, Neveu P, Benbrahim C, Goetz B, Aujard I, Baudin JB, et al. Two-photon
uncaging with fluorescence reporting: evaluation of the o -hydroxycinnamic platform.
J Am Chem Soc 2007; 129 :9986-98.
18. Cho SY, Song YK, Kim JG, Oh SY, Chung CM. Photoconversion of
o -hydroxycinnamates to coumarins and its application to fluorescence imaging.
Tetrahedron Lett 2009; 50 :4769-72.
19. Greenspan P, Fowler S. Spectrofluorometric studies of the lipid probe, Nile red. J Lipid
Res 1985; 26 :781-9.
20. Greenspan P, Mayer EP, Fowler SD. Nile Red: a selective fluorescent stain for
intracellular lipid droplets. J Cell Biol 1985; 100 :965-73.
21. Minta A, Kao JP, Tsien RY. Fluorescent indicators for cytosolic calcium based on
rhodamine and fluorescein chromophores. J Biol Chem 1989; 264 :8171-8.
22. Tsien RY. New calcium indicators and buffers with high selectivity against magnesium
and protons: design, synthesis, and properties of prototype structures. Biochemistry
1980; 19 :2396-404.
23. Adams SR. How calcium indicators work. In: Yuste R, Konnerth A, editors. Imaging
in neuroscience and development: a laboratory manual . Cold Spring Harbor, New York:
CSHL Press; 2005. p. 239-44.
24. Sun W-C, Gee KR, Haugland RP. Synthesis of novel fluorinated coumarins: excellent
UV-light excitable fluorescent dyes. Bioorg Med Chem Lett 1998; 8 :3107-10.
25. Jones G, Jackson WR, Choi CY, Bergmark WR. Solvent effects on emission yield
and lifetime for coumarin laser dyes. Requirements for a rotatory decay mechanism.
J Phys Chem 1985; 89 :294-300.
26. Gee KR, Sun W-C, Bhalgat MK, Upson RH, Klaubert DH, Latham KA, et al.
Fluorogenic substrates based on fluorinated umbelliferones for continuous assays of
phosphatases and b -galactosidases. Anal Biochem 1999; 273 :41-8.
27. Lavis LD, Chao TY, Raines RT. Latent blue and red fluorophores based on the
trimethyl lock. ChemBioChem 2006; 7 :1151-4.
28. Jacks T, Kircher H. Fluorometric assay for the hydrolytic activity of lipase using fatty
acyl esters of 4-methylumbelliferone. Anal Biochem 1967; 21 :279-85.
29. Gilham D, Lehner R. Techniques to measure lipase and esterase activity in vitro.
Methods 2005; 36 :139-47.
30. Guilbault GG, Hieserman J. Fluorometric substrate for sulfatase and lipase. Anal Chem
1969; 41 :2006-9.
31. Yamazaki H, Inoue K, Mimura M, Oda Y, Guengerich FP, Shimada T.
7- Ethoxycoumarin O -deethylation catalyzed by cytochromes P450 1A2 and 2E1 in
human liver microsomes. Biochem Pharmacol 1996; 51 :313-9.
Search WWH ::




Custom Search