Photodynamic therapy—current limitations and novel approaches
Photodynamic therapy (PDT) mostly relies on the generation of singlet oxygen, via the
excitation of a photosensitizer, so that target tumor cells can be destroyed. PDT can be …
excitation of a photosensitizer, so that target tumor cells can be destroyed. PDT can be …
Controlling the lifetime of cucurbit [8] uril based self-abolishing nanozymes
Nature has evolved a unique mechanism of self-regulatory feedback loops that help in
maintaining an internal cellular environment conducive to growth, healing and metabolism …
maintaining an internal cellular environment conducive to growth, healing and metabolism …
A therapeutic keypad lock decoded in drug resistant cancer cells
A molecular keypad lock that displays photodynamic activity when exposed to glutathione
(GSH), esterase and light in the given order, is fabricated and its efficacy in drug resistant …
(GSH), esterase and light in the given order, is fabricated and its efficacy in drug resistant …
Enzyme activatable photodynamic therapy agents targeting melanoma
Cell-selective activity regulation of therapeutics is necessary for efficient personalized
treatments with minimal off-target effects. Here, the first example of a structurally simple …
treatments with minimal off-target effects. Here, the first example of a structurally simple …
Self-reporting heavy atom-free photodynamic therapy agents
Two novel, self-reporting distyryl BODIPY-based photodynamic therapy agents
functionalized with singlet oxygen responsive imidazole and tertiary amine moieties are …
functionalized with singlet oxygen responsive imidazole and tertiary amine moieties are …
Caging of Bodipy Photosensitizers through Hydrazone Bond Formation and their Activation Dynamics
Three unique hydrazone‐based small‐molecule‐activatable photosensitizers were
designed and synthesized. Two of them work efficiently in a low‐pH environment …
designed and synthesized. Two of them work efficiently in a low‐pH environment …
A mitochondria-targeted fluorescent dye naphthalimide-thioether-cyanine for NIR-activated photodynamic treatment of cancer cells
R Shen, J Bai, Y Qian - Journal of Materials Chemistry B, 2021 - pubs.rsc.org
In this work, an NIR-activated fluorescent dye naphthalimide-thioether-cyanine (NPSCY)
was developed for the photodynamic treatment of cancer cells. In this dye, naphthalimide …
was developed for the photodynamic treatment of cancer cells. In this dye, naphthalimide …
Downregulation of gene expression in hypoxic cancer cells by an activatable G-quadruplex stabiliser
In the research, the modulation of gene expression with a novel G-quadruplex stabiliser was
analysed. Activation by the removal of bulky hypoxia-responsive substituent enhances G …
analysed. Activation by the removal of bulky hypoxia-responsive substituent enhances G …
Substitution effects in distyryl BODIPYs for near infrared organic photovoltaics
In this research, four new conjugated Bodipy (boron dipyrromethene) structures absorbing in
the near IR region have been synthesized and their photophysical, electrochemical …
the near IR region have been synthesized and their photophysical, electrochemical …
Reprograming cancer cells by a BODIPY G-quadruplex stabiliser
A Baser, B Basar, HB Dogan, G Sener… - Chemical …, 2023 - pubs.rsc.org
A cationic BODIPY-based G-quadruplex-selective stabiliser is developed and shown to
decrease cancer cell migration-invasion up to 90%. The expression of critical genes (HIF1α …
decrease cancer cell migration-invasion up to 90%. The expression of critical genes (HIF1α …