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1.
Molecules ; 26(14)2021 Jul 10.
Article in English | MEDLINE | ID: mdl-34299469

ABSTRACT

The photodynamic properties of a series of non-halogenated, dibrominated and diiodinated BODIPYs with a phthalimido or amino end modification on the phenoxypentyl and phenoxyoctyl linker in the meso position were investigated. Halogen substitution substantially increased the singlet oxygen production based on the heavy atom effect. This increase was accompanied by a higher photodynamic activity against skin melanoma cancer cells SK-MEL-28, with the best compound reaching an EC50 = 0.052 ± 0.01 µM upon light activation. The dark toxicity (toxicity without light activation) of all studied dyes was not detected up to the solubility limit in cell culture medium (10 µM). All studied BODIPY derivatives were predominantly found in adiposomes (lipid droplets) with further lower signals colocalized in either endolysosomal vesicles or the endoplasmic reticulum. A detailed investigation of cell death indicated that the compounds act primarily through the induction of apoptosis. In conclusion, halogenation in the 2,6 position of BODIPY dyes is crucial for the efficient photodynamic activity of these photosensitizers.

2.
J Med Chem ; 63(14): 7616-7632, 2020 07 23.
Article in English | MEDLINE | ID: mdl-32618190

ABSTRACT

The literature reports on cationic and anionic phthalocyanines (Pcs) for photodynamic therapy suggest systematically significant differences in activity. In this work, ten different zinc(II) Pcs with carboxylate functions or quaternary nitrogens (hydrophilic anionic, hydrophilic cationic, amphiphilic anionic, and amphiphilic cationic) were investigated, with the aim of revealing reasons for such differences. In vitro assays on HeLa, MCF-7, and HCT-116 cells confirmed higher photoactivity for cationic Pcs (EC50 ∼ 3-50 nM) than for anionic Pcs (EC50 ∼ 0.3-10 µM), the latter being additionally significantly more active in serum-free medium. The environmental pH, binding to serum proteins, interaction with biomembranes, differences in subcellular localization, and relocalization after irradiation were found to be the main factors contributing to the generally lower photoactivity of anionic Pcs than that of the cationic derivatives. This result is not limited only to the presented derivatives and should be considered in the design of novel photosensitizers.


Subject(s)
Antineoplastic Agents/pharmacology , Indoles/pharmacology , Photosensitizing Agents/pharmacology , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/metabolism , Antineoplastic Agents/radiation effects , Cell Line, Tumor , Drug Screening Assays, Antitumor , Humans , Indoles/chemical synthesis , Indoles/metabolism , Indoles/radiation effects , Light , Liposomes/chemistry , Liposomes/metabolism , Molecular Structure , Phosphatidylcholines/chemistry , Phosphatidylcholines/metabolism , Photochemotherapy , Photosensitizing Agents/chemical synthesis , Photosensitizing Agents/metabolism , Photosensitizing Agents/radiation effects , Serum Albumin, Bovine/metabolism , Singlet Oxygen/metabolism , Zinc/chemistry
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