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Synthesis of Benzohydroxamic Acid 3 The synthesis of compound 3 was achieved by reacting methyl benzoate 1 and hydroxylamine 2. Synthesis of Hydroxamates Using N, N1, NII–trimethoxy-N, NI, NII-trimethyl Phosphorus Triamides 5 Nui et al 31 reported the conversion of aromatic and aliphatic carboxylic acids, including sterically hindered substrates directly to hydroxamates using N, NI, NII-trimethoxy-N, NI, NII–trimethyl phosphorus triamide 5.

On condensation of aromatic or aliphatic carboxylic acid 4 0.01M and compound 5 0.005M in toluene at 60 for 0.5 to 1 h, the hydroxamate 6 was obtained in excellent yield. Ester Synthesis of Hydroxamate Riva et al 32 reported the transformation of methyl or ethyl carboxylic esters into the corresponding hydroxamic acid.

Keywords: Keyword Histone deacetylase inhibitors, Matrix metalloproteinase inhibitors, HIV, Hydroxamaates, Ribonucleoside diphosphate reductase Cite this paper: David I. The reasonable way of producing hydroxamic acid derivative is the reaction of hydroxylamine with acid chlorides or esters.

13 Hydroxamic acids are capable of inhibiting a variety of enzymes, including ureases, 14, 15 peroxidises 16, and matrix metalloproteinases.

To achieve this, the ester 0.5 M in methanol and hydroxyl amine 10 eq was reacted in the presence of sodium methoxide 1 eq.

Following an optimization studies, they found that at 70 and 30 min, highest yield of the hydroxamate was obtained with high purity. Microware Activated Hydroxamic Acid Synthesis Massaro et al 33 has shown that the reaction of esters with hydroxylamine in the presence of a base under microwave activation provides hydroxamic acids in good yield and high purity.

Hyper acetylation causes a decreased binding of the histones to DNA and leads to chromatin expansion, allowing transcription to take place. White et al 38 reported the synthesis of hydroxamates using Deoxo-fluor; Katritzky et al 39 reported the synthesis of N-alkyl, O-alkyl and O, N-dialkyl hydroxamic acids via acyl benzotriazole intermediates; Gissot et al 40 reported high yielding one step synthesis of hydoxamates from various un-activated esters including enolizable esters and chrial α-amino acid esters and peptides ; Woo et al 41 reported the conversion of sterically hindered carboxylic acids to N-methoxy-N-methyl amides using 1.1eq of methanesulphonyl chloride; Martinelli et al 42 reported the palladium catalysed amino carbonylation of anyl bromides into the corresponding Weinreb amides; Nemoto et al 43 also reported a one pot synthesis of α-siloxy weinreb amides from aldelydes using N, O-dimethly amine and a masked acyl cyamide reagent bearing a tert-butyl dimethyl silyl group. Synthesis of Anticancer Hydroxamates Most hydroxamates used in cancer chemotherapy acts as histone deacetylase HDAC inhibitors. Histone deacetylase are a group of enzymes that removes acetyl groups from the lysine residues on a histone. The reaction of carboxylic acid 1eq and 2-chloro-4,6-dimethoxy-1,3,5-triazine 1.2 eq in the presence of N-methyl morpholine 3 eq., THF at room temperature for 1-3 h gave the 4,6-dimethoxy-1,3,5-triazine intermediate 20, compound 20 upon treatment with substituted hydroxylamine 1 eq at room temperature for 8 h gave the target product 21. There are many more general synthetic routes that have been reported and cannot be described for lack of space but are mentioned in this review.

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