Synthesizing and evaluating the photodynamic efficacy of asymmetric heteroleptic A 7 B type novel lanthanide bis-phthalocyanine complexes.
Emel ÖnalÖzge TüncelMohamad AlbakourGizem Gümüşgöz ÇelikAyşe Gül GürekSerdar ÖzçelikPublished in: RSC advances (2021)
In this study heteroleptic A 7 B type novel Lu(iii) and Eu(iii) lanthanide phthalocyanines (LnPc(Pox)[Pc'(AB 3 SH)]) with high extinction coefficients have been synthesized as candidate photosensitizers with reaction yields higher than 33%. The singlet oxygen quantum yields of LuPc(Pox)[Pc'(AB 3 SH)] and EuPc(Pox)[Pc'(AB 3 SH)], respectively, were measured 17% and 1.4% by the direct method in THF. The singlet oxygen quantum yield of LuPc(Pox)[Pc'(AB 3 SH)] in THF is the highest among lutetium(iii) bis-phthalocyanine complexes to date. The photodynamic efficacy of the heteroleptic lanthanide phthalocyanines was evaluated by measuring cell viabilities of A549 and BEAS-2B lung cells, selected to representing in vitro models for testing cancer and normal cells against potential drugs. The cell viabilities demonstrated concentration dependent behavior and were varied by the type of phthalocyanines complexes. Irradiation of the cells for 30 minutes with LED array at 660 nm producing flux of 0.036 J cm -2 s -1 increased cell death for LuPcPox-OAc, LuPc(Pox)[Pc'(AB 3 SH)] and ZnPc. The IC 50 concentrations of LuPc(Pox)[Pc'(AB 3 SH)] and ZnPc were determined to be below 10 nM for both cell lines, agreeing very well with the singlet oxygen quantum yield measurements. These findings suggest that LuPc(Pox)[Pc'(AB 3 SH)] and particularly LuPcPox-OAc are promising drug candidates enabling lowered dose and shorter irradiation time for photodynamic therapy.
Keyphrases
- photodynamic therapy
- cell cycle arrest
- induced apoptosis
- energy transfer
- cell death
- molecular dynamics
- fluorescence imaging
- cell therapy
- endoplasmic reticulum stress
- single molecule
- cancer therapy
- radiation therapy
- drug delivery
- mass spectrometry
- cell proliferation
- squamous cell carcinoma
- high throughput
- high resolution
- papillary thyroid
- emergency department
- young adults
- quantum dots
- metal organic framework