Nanoenabled drug delivery systems against tuberculosis (TB) are thought to control pathogen replication by targeting antibiotics to infected tissues and phagocytes. However, whether nanoparticle (NP)-based carriers directly interact with Mycobacterium tuberculosis and how such drug delivery systems induce intracellular bacterial killing by macrophages is not defined. In the present study, we demonstrated that a highly hydrophobic citral-derived isoniazid analogue, termed JVA, significantly increases nanoencapsulation and inhibits M. tuberculosis growth by enhancing intracellular drug bioavailability. Importantly, confocal and atomic force microscopy analyses revealed that JVA-NPs associate with both intracellular M. tuberculosis and cell-fr...
Background Intracellular delivery of antimicrobial agents by nanoparticles, such as mesoporous silic...
Tuberculosis (TB) is a global epidemic that kills over a million people every year, particularly in ...
BackgroundIntracellular delivery of antimicrobial agents by nanoparticles, such as mesoporous silica...
International audienceNanoenabled drug delivery systems against tuberculosis (TB) are thought to con...
Nanoenabled drug delivery systems against tuberculosis (TB) are thought to control pathogen replicat...
Nanoenabled drug delivery systems against tuberculosis (TB) are thought to control pathogen replicat...
Tuberculosis is a major global health problem for which improved therapeutics are needed to shorten ...
Tuberculosis is a major global health problem for which improved therapeutics are needed to shorten ...
Mycobacterium tuberculosis (Mtb) remains a major challenge to global health, made worse by the sprea...
Mycobacterium tuberculosis (Mtb) remains a major challenge to global health, made worse by the sprea...
On page 5066, J. I. Zink, M. A. Horwitz, and co-workers use confocal microscopy to demonstrate the a...
Delivery of antituberculosis drugs by nanoparticles offers potential advantages over free drug, incl...
Multi-drug-resistant tuberculosis (TB) is a major public health problem, concerning about half a mil...
BACKGROUND Tuberculosis therapeutics is facing a crisis because of the emergence of new multi and to...
International audienceMulti-drug-resistant tuberculosis (TB) is a major public health problem, conce...
Background Intracellular delivery of antimicrobial agents by nanoparticles, such as mesoporous silic...
Tuberculosis (TB) is a global epidemic that kills over a million people every year, particularly in ...
BackgroundIntracellular delivery of antimicrobial agents by nanoparticles, such as mesoporous silica...
International audienceNanoenabled drug delivery systems against tuberculosis (TB) are thought to con...
Nanoenabled drug delivery systems against tuberculosis (TB) are thought to control pathogen replicat...
Nanoenabled drug delivery systems against tuberculosis (TB) are thought to control pathogen replicat...
Tuberculosis is a major global health problem for which improved therapeutics are needed to shorten ...
Tuberculosis is a major global health problem for which improved therapeutics are needed to shorten ...
Mycobacterium tuberculosis (Mtb) remains a major challenge to global health, made worse by the sprea...
Mycobacterium tuberculosis (Mtb) remains a major challenge to global health, made worse by the sprea...
On page 5066, J. I. Zink, M. A. Horwitz, and co-workers use confocal microscopy to demonstrate the a...
Delivery of antituberculosis drugs by nanoparticles offers potential advantages over free drug, incl...
Multi-drug-resistant tuberculosis (TB) is a major public health problem, concerning about half a mil...
BACKGROUND Tuberculosis therapeutics is facing a crisis because of the emergence of new multi and to...
International audienceMulti-drug-resistant tuberculosis (TB) is a major public health problem, conce...
Background Intracellular delivery of antimicrobial agents by nanoparticles, such as mesoporous silic...
Tuberculosis (TB) is a global epidemic that kills over a million people every year, particularly in ...
BackgroundIntracellular delivery of antimicrobial agents by nanoparticles, such as mesoporous silica...