Design and Development of Triazole Derivatives as Prospective Anticancer Agents: A Review.

Harshita Sachdeva, Mohammad Saquib, Kumud Tanwar
Author Information
  1. Harshita Sachdeva: Department of Chemistry, University of Rajasthan, Jaipur 302004, Rajasthan, India.
  2. Mohammad Saquib: Department of Chemistry, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal, Karnataka, India.
  3. Kumud Tanwar: Department of Chemistry, Kanoria P.G. Mahila Mahavidyalaya, Jaipur 302004, Rajasthan, India.

Abstract

BACKGROUND: In recent years, there has been a crucial need for the design and development of novel anticancer drugs that can lessen the serious health problems and unwanted side effects associated with currently used anticancer drugs. The triazole nucleus is well-recognized to possess numerous pharmacological activities, including anticancer, as revealed by various investigations on anticancer drugs and the latest research findings.
OBJECTIVE: The aim of this review article is to summarise the anticancer potential of 1, 2, 3-triazole, 1, 2, 4-triazole and heterocycle-fused triazole derivatives against several human cancer cell lines, compiling research articles published between 2010 and 2021.
METHODS: Data were collected from PubMed, Google scholar and Research Gate using keywords "anticancer activity of 1, 2, 3-triazole derivatives", "anticancer activity of 1, 2, 4-triazole derivatives" and "anticancer activity of heterocycle- fused triazole derivatives" and reviewed comprehensively.
RESULTS: This review examines the anticancer potential of 1,2,3-triazole coupledoleanolic acid/dithiocarbamate/ pyrido[ 2,3-d] pyrimidine derivatives, 1,2,3-triazole linked pyrimidine/1,4-naphthoquinone hybrids, and 1,2,4-triazole substituted methanone derivatives, acridine-based 1,2,4-triazole derivatives, 1,2,4-thiadiazol coupled with 1,2,4- triazole and 5-ene-thiazolo[3,2-b][1,2,4]triazole-6(5H)-one derivatives against several human cancer cell lines.
CONCLUSION: This review highlights the key findings in the area of cancer therapy. triazole derivatives possess anticancer activity against various human cancer cell lines, and hence the triazole core may act as a lead molecule for the synthesis of novel anticancer drugs.

Keywords

MeSH Term

Acridines
Antineoplastic Agents
Cell Proliferation
Drug Screening Assays, Antitumor
Humans
Molecular Structure
Neoplasms
Prospective Studies
Pyrimidines
Structure-Activity Relationship
Triazoles

Chemicals

Acridines
Antineoplastic Agents
Pyrimidines
Triazoles

Word Cloud

Created with Highcharts 10.0.021anticancerderivativestriazole3-triazole4-triazoledrugscanceractivityreviewhumancelllines"anticancerderivatives"novelpossessvariousresearchfindingspotentialheterocycle-fusedseveralTriazoleBACKGROUND:recentyearscrucialneeddesigndevelopmentcanlessenserioushealthproblemsunwantedsideeffectsassociatedcurrentlyusednucleuswell-recognizednumerouspharmacologicalactivitiesincludingrevealedinvestigationslatestOBJECTIVE:aimarticlesummarisecompilingarticlespublished20102021METHODS:DatacollectedPubMedGooglescholarResearchGateusingkeywordsheterocycle-fusedreviewedcomprehensivelyRESULTS:examinescoupledoleanolicacid/dithiocarbamate/pyrido[3-d]pyrimidinelinkedpyrimidine/14-naphthoquinonehybridssubstitutedmethanoneacridine-based4-thiadiazolcoupled4-5-ene-thiazolo[32-b][14]triazole-65H-oneCONCLUSION:highlightskeyareatherapyhencecoremayactleadmoleculesynthesisDesignDevelopmentDerivativesProspectiveAnticancerAgents:Reviewagentstriazolesnovel-drugs

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