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Principles of Fluorescence Spectroscopy

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832 FLUORESCENCE CORRELATION SPECTROSCOPY<br />

a time that corresponds to the transit time between the two<br />

volumes.<br />

24.16. ADDITIONAL REFERENCES ON FCS<br />

FCS is in a stage <strong>of</strong> rapid development. Additional references<br />

on various aspects <strong>of</strong> FCS are listed after the main<br />

reference section.<br />

REFERENCES<br />

1. Magde D, Elson E, Webb WW. 1972, Thermodynamic fluctuations in<br />

a reacting system—measurement by fluorescence correlation spectroscopy.<br />

Phys Rev Lett 29(11):705–708.<br />

2. Elson E, Magde D. 1974. <strong>Fluorescence</strong> correlation spectroscopy:<br />

conceptual basis and theory. Biopolymers 13:1–27.<br />

3. Magde D, Elson E, Webb WW. 1974. <strong>Fluorescence</strong> correlation spectroscopy.<br />

Biopolymers 13:29–61.<br />

4. Aragon SR, Pecora R. 1975. <strong>Fluorescence</strong> correlation spectroscopy<br />

and brownian rotational diffusion. Biopolymers 14:119–138.<br />

5. Rigler R. Elson ES, eds. 2001. fluorescence correlation spectroscopy:<br />

theory and applications. Springer, New York.<br />

6. Webb WW. 2001. <strong>Fluorescence</strong> correlation spectroscopy: genesis,<br />

evolution, maturation and prognosis. In <strong>Fluorescence</strong> correlation<br />

spectroscopy: theory and applications, pp. 305–330. Ed R Rigler, ES<br />

Elson. Springer, New York.<br />

7. Eigen M, Rigler R. 1994. Sorting single molecules: application to<br />

diagnostics and evolutionary biotechnology. Proc Natl Acad Sci USA<br />

91:5740–5747.<br />

8. Haustein E, Schwille P. 2003. Ultrasensitive investigations <strong>of</strong> biological<br />

systems by fluorescence correlation spectroscopy. Methods 29:<br />

153–166.<br />

9. Visser AJWG, Hink MA. 1999. New perspectives <strong>of</strong> fluorescence<br />

correlation spectroscopy. J Fluoresc 9(1):81–87.<br />

10. Thompson NL, Lieto AM, Allen NW. 2002. Recent advances in fluorescence<br />

correlation spectroscopy. Struct Biol 12:634–641.<br />

11. Hess ST, Huang S, Heikal AA, Webb WW. 2002. Biological and<br />

chemical applications <strong>of</strong> fluorescence correlation spectroscopy: a<br />

review. Biochemistry 41(3):647–708.<br />

12. Brock R, Jovin TM. 2001. <strong>Fluorescence</strong> correlation microscopy<br />

(FCM): fluorescence correlation spectroscopy (FCS) in cell biology.<br />

In <strong>Fluorescence</strong> correlation spectroscopy: theory and applications,<br />

pp. 133–161. Ed R Rigler, ES Elson. Springer, New York.<br />

13. Rigler R. 1995. <strong>Fluorescence</strong> correlations, single molecule detection<br />

and large number screening: applications in biotechology. J Biotechnol<br />

41:177–186.<br />

14. Földes-Papp Z, Demel U, Domej W, Tilz GP. 2002. A new dimension<br />

for the development <strong>of</strong> fluorescence-based assays in solution: from<br />

physical principles <strong>of</strong> FCS detection to biological applications. Exp<br />

Biol Med 227(5):291–300.<br />

15. Sterer S, Henco K. 1997. <strong>Fluorescence</strong> correlation spectroscopy<br />

(FCS)—a highly sensitive method to analyze drug/target interactions.<br />

J Recept Signal Transduction Res 17(1–3):511–520.<br />

16. Kim SA, Schwille P. 2003. Intracellular applications <strong>of</strong> fluorescence<br />

correlation spectroscopy: prospects for neuroscience. Curr Opin<br />

Neurobiol 13:583–590.<br />

17. Widengren J, Mets Ü. 2002. Conceptual basis <strong>of</strong> fluorescence correlation<br />

spectroscopy and related techniques as tools in bioscience. In<br />

Single molecule detection in solution, pp. 69–120. Ed CH Zander, J<br />

Enderlein, RA Keller. Wiley-VCH, Darmstadt, Germany.<br />

18. Thompson NL. 1991. <strong>Fluorescence</strong> correlation spectroscopy. In<br />

Topics in fluorescence spectroscopy, Vol. 1: Techniques, pp.<br />

337–378. Ed JR Lakowicz. Plenum Press, New York.<br />

19. Rigler R, Mets Ü, Widengren J, Kask P. 1993. <strong>Fluorescence</strong> correlation<br />

spectroscopy with high count rate and low background: analysis<br />

<strong>of</strong> translational diffusion. Eur Biophys J 22:169–175.<br />

20. Rigler R, Widengren J, Mets Ü. 1993. Interactions and kinetics <strong>of</strong><br />

single molecules as observed by fluorescence correlation spectroscopy.<br />

In <strong>Fluorescence</strong> spectroscopy, pp. 14–24. Ed O Wolfbeis.<br />

Springer-Verlag, New York.<br />

21. Müller JD, Chen Y, Gratton E. 2003. <strong>Fluorescence</strong> correlation spectroscopy.<br />

Methods Enzymol 361:69–92.<br />

22. Maiti S, Haupts U, Webb WW. 1997. <strong>Fluorescence</strong> correlation spectroscopy:<br />

diagnostics for sparse molecules. Proc Natl Acad Sci USA<br />

94:11753–11757.<br />

23. Pack CG, Nishimura G, Tamura M, Aoki K, Taguchi H, Yoshida M,<br />

Kinjo M. 1999. Analysis <strong>of</strong> interaction between chaperonin GroEL<br />

and its substrate using fluorescence correlation spectroscopy. Cytometry<br />

36:247–253.<br />

24. Meyer-Almes FJ. 2001. Nanoparticle immunoassays: a new method<br />

for use in molecular diagnostics and high throughput pharmaceutical<br />

screening based on fluorescence correlation spectroscopy. In<br />

<strong>Fluorescence</strong> correlation spectroscopy: theory and applications, pp.<br />

379–395. Ed R Rigler, ES Elson. Springer, New York.<br />

25. Wohland T, Friedrich K, Hovius R, Vogel H. 1999. Study <strong>of</strong> ligandreceptor<br />

interactions by fluorescence correlation spectroscopy with<br />

different fluorophores: evidence that the homopentameric 5-hydroxytryptamine<br />

type 3 As receptor binds only one ligand. Biochemistry<br />

38:8671–8681.<br />

26. Van Craenenbroeck E, Engelborghs Y. 1999. Quantitative characterization<br />

<strong>of</strong> the binding <strong>of</strong> fluorescently labeled colchicine to tubulin in<br />

vitro using fluorescence correlation spectroscopy. Biochemistry 38:<br />

5082–5088.<br />

27. Larson DR, Ma YM, Vogt VM, Webb WW. 2003. Direct measurement<br />

<strong>of</strong> gag–gag interaction during retrovirus assembly with FRET<br />

and fluorescence correlation spectroscopy. J Cell Biol 162(7):1233–<br />

1244.<br />

28. Pitschke M, Prior R, Haupt M, Riesner D. 1999. Detection <strong>of</strong> single<br />

amyloid $-protein aggregates in the cerebrospinal fluid <strong>of</strong><br />

Alzheimer's patients by fluorescence correlation spectroscopy.<br />

Nature Med 4(7):832–834.<br />

29. Schwille P, Bieschke J, Oehlenschlager F. 1997. Kinetic investigations<br />

by fluorescence correlation spectroscopy: the analytical and<br />

diagnostic potential <strong>of</strong> diffusion studies. Biophys Chem 66:211–228.<br />

30. Schwille P, Oehlenschlager F, Walter NG. 1996. Quantitative<br />

hybridization kinetics <strong>of</strong> DNA probes to RNA in solution followed<br />

by diffusional fluorescence correlation analysis. Biochemistry 35:<br />

10182–10193.

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