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Heterocyclic Anticancer Compounds: Recent Advances and the Paradigm Shift towards the Use of Nanomedicine’s Tool Box

Molecules · 2015 · Vol. 20(9) · pp. 16852–16891
Pedro MartinsJoaquim Tiago Cardoso Leles de JesusSofia Nascimento dos SantosLuís R. RaposoCatarina Roma‐RodriguesPedro V. BaptistaAlexandra R. Fernandes

Abstract

The majority of heterocycle compounds and typically common heterocycle fragments present in most pharmaceuticals currently marketed, alongside with their intrinsic versatility and unique physicochemical properties, have poised them as true cornerstones of medicinal chemistry. Apart from the already marketed drugs, there are many other being investigated for their promising activity against several malignancies. In particular, anticancer research has been capitalizing on the intrinsic versatility and dynamic core scaffold of these compounds. Nevertheless, as for any other promising anticancer drugs, heterocyclic compounds do not come without shortcomings. In this review, we provide for a concise overview of heterocyclic active compounds and families and their main applications in medicine. We shall focus on those suitable for cancer therapy while simultaneously addressing main biochemical modes of action, biological targets, structure-activity relationships as well as intrinsic limitation issues in the use of these compounds. Finally, considering the advent of nanotechnology for effective selective targeting of drugs, we shall discuss fundamental aspects and considerations on nanovectorization of such compounds that may improve pharmacokinetic/pharmacodynamic properties of heterocycles.

Click Chemistry and ApplicationsNanoparticle-Based Drug DeliverySynthesis of Tetrazole DerivativesNanomedicineNanotechnologyChemistryComputational biologyCombinatorial chemistryBiochemical engineeringComputer scienceBiologyMaterials scienceEngineering

MeSH terms

NanomedicineAnimalsAntineoplastic AgentsHeterocyclic CompoundsHumansNeoplasms

Funding

  • Ministerio de Economía y Competitividad
  • Fundação para a Ciência e a Tecnologia
Citations
678
FWCI
16.73
field-weighted impact
References
142
Percentile
100%
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