Fluorescence decay measurements for determining the relative content of ethidium bromide to DNA in situ in cell nuclei
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Agricultural and Biological Sciences,General Medicine,Anatomy
Link
http://link.springer.com/content/pdf/10.1007/BF00684374.pdf
Reference9 articles.
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2. Eisenhut M, Choné B (1979) Studies of the binding of ethidium bromide to cells before and after enzyme treatment. Histochemistry 62:207–220
3. Genest D, Sabeur G, Wahl P, Aughet JC (1981) Fluorometric anisotropy decay of ethidium bound to chromatin. Biophys Chem 13:77–87
4. Iwata T, Uchida T, Minami S (1985) A nanosecond photon-counting fluorimetric system using a modified multichannel vernier chronotron. Appl Spectrosc 39:101–109
5. LePecq JB, Paoletti C (1967) A fluorescent complex between ethidium bromide and nucleic acid. J Mol Biol 27:87–106
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4. Ethidium Bromide-Induced Changes in Intensity of Ultraweak Photon Emission from Microsporocytes of Larch in Selected Stages of Development;Journal of Plant Physiology;1989-08
5. Accurate determination of DNA content in single cell nuclei stained with Hoechst 33258 fluorochrome at high salt concentration;Histochemistry;1987
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