Multimeric protected fluorescent reagents and their methods of synthesis are provided. The reagents are useful in various fluorescence-based analytical methods, including the analysis of highly multiplexed optical reactions in large numbers at high densities, such as single molecule real time nucleic acid sequencing reactions. The reagents contain fluorescent dye elements, that allow the compounds to be detected with high sensitivity at desirable wavelengths, binding elements, that allow the compounds to be recognized specifically by target biomolecules, and protective shield elements, that decrease undesirable contacts between the fluorescent dye elements and the bound target biomolecules and that therefore decrease photodamage of the bound target biomolecules by the fluorescent dye elements. The reagents also contain coupling elements connect monomeric compounds into multimeric forms, thereby increasing brightness.
Anti-nitric oxide production activity of isothiocyanates correlates with their polar surface area rather than their lipophilicity
log Pvalues and the polar surface area (PSA) values were calculated. Substitution of the methylsulfinyl group (CH3S(O)–R) in 6-MITC with a formyl (CHO–R), a methylsulfanyl (CH2S–R) or a methyl (CH3–R) group reduced the activities of the parent isothiocyanate. Substitution with a formylgroup resulted in lower lipophilicity (log Pvalue) whereas substitution with a methylsulfanyl or methyl group resulted