Owing to its flexibility and high treatment efficiency, phototherapy is rapidly emerging for treating bacteria-induced diseases, but how to improve the sensitivity of bacteria to reactive oxygen species (ROS) and heat simultaneously to kill bacteria under mild conditions is still a challenge. Herein, we designed a NIR light catalyst (Bi2S3–S-nitrosothiol–acetylcholine (BSNA)) by transforming •O2– into peroxynitrite in situ, which can enhance the bacterial sensibility to ROS and heat and kill bacteria under a mild temperature. The transformed peroxynitrite in situ possessed a stronger ability to penetrate cell membranes and antioxidant capacity. The BSNA nanoparticles (NPs) inhibited the bacterial glucose metabolic process through down-regul...
Over the past few years, several types of radiosensitizers have been developed to address the challe...
Chronic infections caused by Pseudomonas aeruginosa pose severe threats to human health. Traditional...
Nanoradiosensitizer-augmented cancer radiotherapy (RT) has been widely investigated, whereas the des...
International audienceCopper/bismuth sulfide heterojunctions boost the catalytic and photoresponsive...
Clinical treatment of pathogenic infection has emerged as a growing challenge in global public healt...
We have developed a biocompatible antibacterial system based on polyethylene glycol functionalized m...
The emergence of antibiotic-resistant bacterial strains has made conventional antibiotic therapies l...
Development of new antibacterial therapeutic materials is becoming increasingly urgent due to the hu...
Colonization of surfaces by microorganisms is an urging problem. In combination with the increasing ...
Innovations in nanotechnology have had an immense impact on medicine, such as in drug delivery, tiss...
Hospital-acquired infections (HAIs) have become a global concern, especially with the spread of anti...
Drug-resistant bacterial infections pose a serious threat to human public health. Biofilm formation ...
Pathogenic microorganisms are gradually becoming resistant to antibiotics, thereby novel antimicrobi...
This paper describes a nanoparticle enhanced X-ray irradiation based strategy that can be used to ki...
Antibiotic resistance refers to when microorganisms survive and grow in the presence of specific ant...
Over the past few years, several types of radiosensitizers have been developed to address the challe...
Chronic infections caused by Pseudomonas aeruginosa pose severe threats to human health. Traditional...
Nanoradiosensitizer-augmented cancer radiotherapy (RT) has been widely investigated, whereas the des...
International audienceCopper/bismuth sulfide heterojunctions boost the catalytic and photoresponsive...
Clinical treatment of pathogenic infection has emerged as a growing challenge in global public healt...
We have developed a biocompatible antibacterial system based on polyethylene glycol functionalized m...
The emergence of antibiotic-resistant bacterial strains has made conventional antibiotic therapies l...
Development of new antibacterial therapeutic materials is becoming increasingly urgent due to the hu...
Colonization of surfaces by microorganisms is an urging problem. In combination with the increasing ...
Innovations in nanotechnology have had an immense impact on medicine, such as in drug delivery, tiss...
Hospital-acquired infections (HAIs) have become a global concern, especially with the spread of anti...
Drug-resistant bacterial infections pose a serious threat to human public health. Biofilm formation ...
Pathogenic microorganisms are gradually becoming resistant to antibiotics, thereby novel antimicrobi...
This paper describes a nanoparticle enhanced X-ray irradiation based strategy that can be used to ki...
Antibiotic resistance refers to when microorganisms survive and grow in the presence of specific ant...
Over the past few years, several types of radiosensitizers have been developed to address the challe...
Chronic infections caused by Pseudomonas aeruginosa pose severe threats to human health. Traditional...
Nanoradiosensitizer-augmented cancer radiotherapy (RT) has been widely investigated, whereas the des...