Synthesis, Characterization and Biological Evaluation of Novel Triazolyl - Acridine Derivatives as Cytotoxic Agents

Author:

Singh Mandeep1,Prasad D. N2,Agnihotri Supriya3

Affiliation:

1. Research Scholar, IKG Punjab Technical University, Kapurthala, Jalandhar, Punjab, India.

2. Shivalik College of Pharmacy, Nangal, Punjab, India.

3. Chandigarh College of Pharmacy, Landran, Punjab, India.

Abstract

Acridine and Triazols both are biologically active heterocyclic rings with cytotoxic potential. Triazolyl- acridine adduct attract the attention in the field of medicinal chemistry. Here we synthesized a series of triazolyl- acridine compounds by the appropriate procedures. Structure of all synthesized compounds was confirmed by the various spectroscopic methods e.g. FT-IR, proton NMR and Mass spectrograms. All synthesized triazolyl-acirdines compounds were assayed in-vitro for cytotoxic activity against MCF-7 (human breast adenocarcinoma cell line) and HT-29 (human colon adenocarcinoma cell line) cells by MTT- assay. All target compounds shows increasing activity in dose dependent manner. However MPSP-9 was sensitive against MCF-7 but compound MPSP-1 was most sensitive with minimum inhibitory concentration (IC50 value) against MCF-7 and HT-29 both cell lines.

Publisher

A and V Publications

Subject

Pharmacology (medical),Pharmacology, Toxicology and Pharmaceutics (miscellaneous)

Reference19 articles.

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2. Kumar R, Kaur M and Kumari M. Acridine: A Versatile Heterocyclic Nucleus. Acta Poloniae Pharmaceutica- Drug Research. 2012; 69: 3-9.

3. Srivastava A and Nizamuddin. Synthesis and Fungicidal Activity of Some Acridine Derivatives. Indian Journal of Heterocyclic Chemistry 2004; 13: 261-264.

4. Lerman LS. The Structure of the DNA-acridine complex. Proc. Natl. Acad. Sci. USA 1963; 49: 94–102.

5. Kreuzer KN. Bacteriophage T4: A Model System for Understanding the Mechanism of Type II Topoisomerase Inhibitors. BBA-Gene Struct. Expr. 1998; 1400: 339–347.

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