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Indole derivatives biologically active

One of the virtues of the Fischer indole synthesis is that it can frequently be used to prepare indoles having functionalized substituents. This versatility extends beyond the range of very stable substituents such as alkoxy and halogens and includes esters, amides and hydroxy substituents. Table 7.3 gives some examples. These include cases of introduction of 3-acetic acid, 3-acetamide, 3-(2-aminoethyl)- and 3-(2-hydroxyethyl)- side-chains, all of which are of special importance in the preparation of biologically active indole derivatives. Entry 11 is an efficient synthesis of the non-steroidal anti-inflammatory drug indomethacin. A noteworthy feature of the reaction is the... [Pg.61]

The indole ring is incorporated into the stmcture of the amino acid tryptophan [6912-86-3] (6) and occurs in proteins and in a wide variety of plant and animal metaboUtes. Much of the interest in the chemistry of indole is the result of efforts to understand the biological activity of indole derivatives in order to develop pharmaceutical appHcations. [Pg.83]

Green, J. P., and Kang, S. (1970) The correlation of electronic structures of indole derivatives with their biological activities. In Molecular Orbital Studies in Chemical Pharmacology, edited by L. B. Kier, pp. 105-120. Springer-Verlag, New York. [Pg.75]

Oximes and their derivatives are widely used in organic synthesis. A number of reviews are devoted to the chemistry and biological activity of oximes and their derivatives The synthesis, reactions and biological activity of oximes containing a heterocyclic substituent, e.g. furan and thiophene", indole and isatin, pyridine, pyrrole, quinoline and five-membered heterocycles with two heteroatoms have been reviewed. [Pg.234]

An oxime derivative of indirubin (a natural bis-indole alkaloid used in traditional Chinese medicine to treat chronic myelocytic leukemia), indirubin-3 -monoxime (37), was found to be a potent inhibitor of cyclin-dependent kinases (CDKs), and of the proliferation of myeloid leukemia cells via inhibition of a tyrosine kinase . The 3D structure of the complex of 37 with CDK revealed that the oxime function is intact, and that it occupies the ATP-ribose site of the CDK-ATP structure. While the specific role of the oxime group in the biological activity of 37 is not clear, it was proposed that its reactivity may be utilized for further drug design... [Pg.637]

Partly reduced counterparts of the indole nucleus provide the basis for several agents with varied biological activities. A pair of closely related A-phenyl derivatives have both shown antidepressant activity in test systems. The apparent preference for the monomethyl amine suggests that these act by the same mechanism as the classical tricyclic antidepressants, where the secondary amine is the more active species. The first step in the preparation of the common intermediate (27-3) to these compounds consists of acylation of diphenylamine (27-1) with chloroacetyl chloride. [Pg.401]

The biological activity of azoles and their derivatives (indoles, purines, etc.) and their abundance as structural motif in natural products made them a prime target and test ground in the development of catalytic transformations. This chapter is mainly dedicated to the reactions of monocyclic five membered heterocycles and indole. The chemistry of other condensed systems of importance, such as purines, is discussed in Chapter 8. [Pg.97]

Polyfl-benzyl-5-vinylindole) (29), prepared from the monomer via either radical or anionic polymerization, has been used to prepare polymeric analogues of a variety of biologically active indole derivatives (77MI11101). [Pg.274]

Data on the synthesis and chemical properties of the phosphorus-containing derivatives of indoles and pyrroles, published in 1976-1998, are reviewed. The introduction of substituents containing tri- and tetracoordinatedphosphorus atom into the heterocycle and the side chain is discussed. Information on the biological activity is presented. [Pg.1]

BIOLOGICAL ACTIVITY OF PHOSPHORUS-CONTAINING DERIVATIVES OF INDOLE AND PYRROLE... [Pg.33]


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Biologically Active Derivatives

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