AI Article Synopsis

  • The study explores the optical and biological properties of various cycloplatinated complexes featuring bioactive ligands, highlighting their emission characteristics and interactions with light.
  • These complexes exhibit both intraligand charge transfer and metal-perturbed emissions, which can produce warm-white light in certain conditions.
  • The complexes showed selective accumulation in the Golgi apparatus and exhibited anticancer activity against specific cell lines, with one complex displaying promising photodynamic properties for potential therapeutic use.

Article Abstract

The optical and biological properties of 2-(4-dimethylaminophenyl)benzothiazole cycloplatinated complexes featuring bioactive ligands ([{Pt(Me N-pbt)(C F )}L] [L=Me N-pbtH 1, p-dpbH (4-(diphenylphosphino)benzoic acid) 2, o-dpbH (2-(diphenylphosphino)benzoic acid) 3), [Pt(Me N-pbt)(o-dpb)] 4, [{Pt(Me N-pbt)(C F )} (μ-PR P)] [PR P=O(CH CH OC(O)C H PPh ) 5, PR P=O{(CH CH O) C(O)C H PPh } 6] are presented. Complexes 1-6 display ILCT and metal-perturbed ILCT dual emissions. The ratio between both bands is excitation dependent, accomplishing warm-white emissions for 2, 5 and 6. The phosphorescent emission is lost in aerated solutions owing to photoinduced electron transfer to O and the formation of O , as confirmed in complexes 2 and 4. They also exhibit photoinduced phosphorescence enhancement in non-degassed DMSO due to local oxidation of DMSO by sensitized O , which causes a local degassing. Me N-pbtH and the complexes specifically accumulate in the Golgi apparatus, although only 2, 3 and 6 were active against A549 and HeLa cancer cell lines, 6 being highly selective in respect to nontumoral cells. The potential photodynamic property of these complexes was demonstrated with complex 4.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9293083PMC
http://dx.doi.org/10.1002/chem.202102737DOI Listing

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