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Phthalocyanines and Tetrapyrazinoporphyrazines with Two Cationic Donuts: High Photodynamic Activity as a Result of Rigid Spatial Arrangement of Peripheral Substituents

  • Basma Ghazal
  • , Miloslav Machacek
  • , Mona Abbas Shalaby
  • , Veronika Novakova
  • , Petr Zimcik
  • , Saad Makhseed

Research output: Contribution to journalArticlepeer-review

58 Scopus citations

Abstract

High photodynamic activity was observed for hexadeca-cationic zinc, magnesium, and metal-free phthalocyanines (Pcs) and tetrapyrazinoporphyrazines with EC50 values as low as 5 nM (MCF-7 cells) for the best compound; this activity was several times better than that of clinically established photosensitizers verteporfin, temoporfin, S3AlOHPc, or protoporphyrin IX. This lead compound was characterized by low dark toxicity (TC50 = 369 μM), high efficiency against other cell lines (HCT 116 and HeLa), and possible activation by light above 680 nm. The excellent photodynamic activity resulted from the rigid spatial arrangement of the quaternized triazole moieties above and below the Pc core, as confirmed by X-ray crystallography. The triazole moieties thus formed two "cationic donuts" that protected the hydrophobic core against aggregation in water. The lysosomes were found to be the site of subcellular localization and were consequently the primary targets of photodynamic injury, resulting in predominantly necrotic cell death.

Original languageEnglish
Pages (from-to)6060-6076
Number of pages17
JournalJournal of Medicinal Chemistry
Volume60
Issue number14
DOIs
StatePublished - 27 Jul 2017

Funding Agency

  • Kuwait Foundation for the Advancement of Sciences

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