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Detalhes Referência

Tipo
Artigos em Revista

Tipo de Documento
Artigo Completo

Título
Heteroleptic enantiopure Pd(ii)-complexes derived from halogen-substituted Schiff bases and 2-picolylamine: synthesis, experimental and computational characterization and investigation of the influence of chirality and halogen atoms on the anticancer activity

Participantes na publicação
Hadi Amiri Rudbari (Author)
Nazanin Kordestani (Author)
Isabel Correia (Author)
INSTITUTO SUPERIOR TÉCNICO
Andreia Valente (Author)
FACULDADE DE CIÊNCIAS DA UNIVERSIDADE DE LISBOA
CQE
Leonor Côrte-Real (Author)
FACULDADE DE CIÊNCIAS DA UNIVERSIDADE DE LISBOA
CQE
Mohammad Khairul Islam (Author)
Nicola Micale (Author)
Jason D. Braun (Author)
David E. Herbert (Author)
Nikolay Tumanov (Author)
Johan Wouters (Author)
Mohammed Enamullah (Author)

Resumo
Seven enantiomeric pairs of palladium complexes, [Pd(pic)(R or S)-N-1-(phenyl)ethyl-2,4-X1,X2-salicylaldiminate)]NO3, [Pd(pic)(R or S)]NO3 (X1 = X2 = Cl, Br, I, H; X1/X2 = Br/Cl), were synthesized by the reaction of enantiopure halogen-substituted Schiff bases (R or S)-N-1-(phenyl)ethyl-2,4-X1,X2-salicylaldimine with [Pd(pic)Cl2] (pic = 2-picolylamine). The composition and structure of the complexes were confirmed by means of FT-IR, 1H NMR and 13C NMR spectroscopy, elemental analysis and X-ray crystallography. The electronic structure of the reported complexes was investigated using UV–vis absorption and electronic circular dichroism (ECD) spectroscopy, complemented by DFT/TDDFT modelling. To investigate the effect of chirality and different halogen substituents on the anticancer activity of the complexes, the cytotoxic activity of all fourteen complexes was tested in the human breast cancer cell lines MDA-MB-231 and MCF-7 at 24 h using the colorimetric MTT assay. Also, the cell death mechanism was assessed using the annexin V/propidium iodide (AV/PI) cytometry-based assay.

Data de Publicação
2021

Suporte
New Journal of Chemistry

Identificadores da Publicação
ISSN - 1144-0546

Editora
Royal Society of Chemistry (RSC)

Volume
45
Fascículo
20

Número de Páginas
18
Página Inicial
9163
Página Final
9180

Identificadores do Documento
DOI - https://doi.org/10.1039/d1nj01491a
URL - http://dx.doi.org/10.1039/d1nj01491a

Identificadores de Qualidade
SCIMAGO Q1 (2021) - 0.693 - Materials Chemistry


Exportar referência

APA
Hadi Amiri Rudbari, Nazanin Kordestani, Isabel Correia, Andreia Valente, Leonor Côrte-Real, Mohammad Khairul Islam, Nicola Micale, Jason D. Braun, David E. Herbert, Nikolay Tumanov, Johan Wouters, Mohammed Enamullah, (2021). Heteroleptic enantiopure Pd(ii)-complexes derived from halogen-substituted Schiff bases and 2-picolylamine: synthesis, experimental and computational characterization and investigation of the influence of chirality and halogen atoms on the anticancer activity. New Journal of Chemistry, 45, 9163-9180. ISSN 1144-0546. eISSN . http://dx.doi.org/10.1039/d1nj01491a

IEEE
Hadi Amiri Rudbari, Nazanin Kordestani, Isabel Correia, Andreia Valente, Leonor Côrte-Real, Mohammad Khairul Islam, Nicola Micale, Jason D. Braun, David E. Herbert, Nikolay Tumanov, Johan Wouters, Mohammed Enamullah, "Heteroleptic enantiopure Pd(ii)-complexes derived from halogen-substituted Schiff bases and 2-picolylamine: synthesis, experimental and computational characterization and investigation of the influence of chirality and halogen atoms on the anticancer activity" in New Journal of Chemistry, vol. 45, pp. 9163-9180, 2021. 10.1039/d1nj01491a

BIBTEX
@article{52019, author = {Hadi Amiri Rudbari and Nazanin Kordestani and Isabel Correia and Andreia Valente and Leonor Côrte-Real and Mohammad Khairul Islam and Nicola Micale and Jason D. Braun and David E. Herbert and Nikolay Tumanov and Johan Wouters and Mohammed Enamullah}, title = {Heteroleptic enantiopure Pd(ii)-complexes derived from halogen-substituted Schiff bases and 2-picolylamine: synthesis, experimental and computational characterization and investigation of the influence of chirality and halogen atoms on the anticancer activity}, journal = {New Journal of Chemistry}, year = 2021, pages = {9163-9180}, volume = 45 }