Bioluminescence and Chemiluminescence. Basic Chemistry and by Marlene A. Deluca

By Marlene A. Deluca

Publication through Deluca, Marlene

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Jortner, J. Chem. Phys. 50, 3284 (1969) . , B. R. Henry, and M. Kasha, in "A Stationary State Approach to Radiationless Transitions. Radiation Bandwidth Effect on Excitation Processes in Polyatomic Molecules," Proc. Nat. Acad. Sci. 63, 31 (1969) . , "Molecular Excited State Relaxation Processes," in J. Chem. Ed. 56, 562 (1979). , and M. A. El-Bayoumi, "Survey of Multiple Excitation in Composite Moleculre" in Physical Mechanisms in Radiation Biology (R. D. Cooper and R. W. S. Atomic Energy Commission, CONF-721001, Oak Ridge, Tennessee (1974).

Rawls, in "Correlation of Orbital Classification of Molecular Electronic Transition with Transition Mechanism: The Aromatic Amines," 2. Photochem. Photobiol. 7, 561 (1968). Lewis, G. , and M. Kasha, in "Phosphoresence and the Triplet State," J. Am. Chem. Soc. 66, 2100 (1944). 5. Ramsay, D. , and J. Hinze, Selected Papers of Robert S. Mulliken, 1127, University of Chicago Press, Chicago (1975). 6. McGlynn, S. , T. Azumi, and M. Kinoshita, Molecular 4. J. (1969). 7. 8. 9. 10. 11. 12. 13. 14. Becker, R.

BINDING OF STIMULANTS The first event that should occur is the binding of the stimulating substance to its binding point or receptor on the external surface of the granulocyte. A variety of different chemicals is known to produce a CL response. The question to pose is : are all these responses receptor mediated? Some of them definitely are mediated by a specific site (receptor). The chemotactic peptide, formyl methioninyl-leucinyl phenylalanine (FMLP) is known to bind to a specific receptor on the surface of the granulocyte.

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