To face the challenges of optimizing the properties of the photosensitizers currently used in the photodynamic inactivation of various microorganisms, we propose the bromination of thionine and the use of polymeric nanoparticles for the entrapment of halogenated derivative. Within this framework, the dibrominated derivative of thionine was synthesized and characterized. This new compound showed a high chemical and photochemical stability. In addition, bromination decreased the ionization constant and increased the aggregation of this photosensitizer in an aqueous medium. For this reason, the new compound showed a lower quantum yield of singlet oxygen production. However, the dibrominated thionine showed greater cell damage after photodynami...
With the growing crisis of the availability of effective antimicrobial treatments, the use of photot...
Compared to traditional anticancer and antimicrobial therapies, photodynamic therapy (PDT) and photo...
The development of photoactivated antimicrobial surfaces that kill pathogens through the production ...
At present, polyacrylamide nanoparticles are attractive to drug delivery. However, some physicochemi...
There are promising data on the use of poly(acrylamide) nanoparticles (PAA-NPs) in the development o...
Herein, we report on the synthesis of photosensitizing nanoparticles in which the generation of diff...
A series of nanoparticles (NPs) with a hydrodynamic radius from 20 to 100 nm in PBS was developed ov...
Two new brominated BODIPYs (1 and 2) bearing amino acid-based chains (l-valine for 1, and dimethyl-l...
We present a new light cleavable polymer containing o-nitrobenzene thioacetal groups in the main cha...
In treating many diseases, including cancer and bacterial infections, drug resistance has emerged as...
Aggregation phenomena of Neutral Red and a new derivative monobrominated Neutral Red were examined i...
The continuously rising cases of antibiotic resistance and pathogenic bacterial mutations pose a ser...
Water-soluble star-like poly(vinyl alcohol)/C(60) and poly{[poly(ethylene glycol) acrylate]-co-(viny...
Pathogenic microorganisms are gradually becoming resistant to antibiotics, thereby novel antimicrobi...
A new water-soluble photocatalyst for singlet oxygen generation is presented. Its absorption extends...
With the growing crisis of the availability of effective antimicrobial treatments, the use of photot...
Compared to traditional anticancer and antimicrobial therapies, photodynamic therapy (PDT) and photo...
The development of photoactivated antimicrobial surfaces that kill pathogens through the production ...
At present, polyacrylamide nanoparticles are attractive to drug delivery. However, some physicochemi...
There are promising data on the use of poly(acrylamide) nanoparticles (PAA-NPs) in the development o...
Herein, we report on the synthesis of photosensitizing nanoparticles in which the generation of diff...
A series of nanoparticles (NPs) with a hydrodynamic radius from 20 to 100 nm in PBS was developed ov...
Two new brominated BODIPYs (1 and 2) bearing amino acid-based chains (l-valine for 1, and dimethyl-l...
We present a new light cleavable polymer containing o-nitrobenzene thioacetal groups in the main cha...
In treating many diseases, including cancer and bacterial infections, drug resistance has emerged as...
Aggregation phenomena of Neutral Red and a new derivative monobrominated Neutral Red were examined i...
The continuously rising cases of antibiotic resistance and pathogenic bacterial mutations pose a ser...
Water-soluble star-like poly(vinyl alcohol)/C(60) and poly{[poly(ethylene glycol) acrylate]-co-(viny...
Pathogenic microorganisms are gradually becoming resistant to antibiotics, thereby novel antimicrobi...
A new water-soluble photocatalyst for singlet oxygen generation is presented. Its absorption extends...
With the growing crisis of the availability of effective antimicrobial treatments, the use of photot...
Compared to traditional anticancer and antimicrobial therapies, photodynamic therapy (PDT) and photo...
The development of photoactivated antimicrobial surfaces that kill pathogens through the production ...