Multi-drug resistance and the refractory character of bacterial biofilms are among the most difficult challenges in infection treatment. Current antimicrobial strategies typically are much more effective for prevention of biofilm formation than for eradication of established biofilms; these strategies also leave dead bacteria and endotoxin in the infection site, which impairs healing. We report a novel hydrogel that eradicates biofilm bacteria by non-leaching-based debridement followed by ex-situ contact-killing (DESCK) away from the infection site. The debridement effect is likely due to the high water swellability and microporosity of the crosslinked network which is made from polyethylene glycol dimethacrylate tethered with a dangling po...
Bacterial biofilms are involved in most device-associated infections and remain a challenge for mode...
A new strategy integrating antimicrobial and nonfouling/biocompatible properties is presented. A mil...
Abstract A 100% water-soluble surfactant polymer dressing (SPD) that is bio-compatible and non-ionic...
Multi-drug resistance and the refractory character of bacterial biofilms are among the most difficul...
Bacterial infection on wounds delay wound healing, and may even deteriorate the wound condition. Dia...
Surgical site infections cause significant postoperative morbidity and increased healthcare costs. B...
Wound dressings play a crucial role in facilitating optimal wound healing and protecting against mic...
Surgical site infections cause significant postoperative morbidity and increased healthcare costs. B...
Wound care is a substantial portion of the global market and treatment of chronic wounds cost the U....
Loss of the skin barrier facilitates the colonization of underlying tissues with various bacteria, w...
Not AvailableTwo component injectable hydrogels that cross-link in situ have been used as noninvasiv...
The current study demonstrates the benefits of poly(carboxybetaine methacrylate) hydrogels in chroni...
The wound healing process is usually susceptible to different bacterial infections due to the comple...
Bacterial biofilms represent a major concern at a worldwide level due to the high demand for implant...
© 2019 American Chemical Society. Biofilms are prevalent in chronic wounds and once formed are very ...
Bacterial biofilms are involved in most device-associated infections and remain a challenge for mode...
A new strategy integrating antimicrobial and nonfouling/biocompatible properties is presented. A mil...
Abstract A 100% water-soluble surfactant polymer dressing (SPD) that is bio-compatible and non-ionic...
Multi-drug resistance and the refractory character of bacterial biofilms are among the most difficul...
Bacterial infection on wounds delay wound healing, and may even deteriorate the wound condition. Dia...
Surgical site infections cause significant postoperative morbidity and increased healthcare costs. B...
Wound dressings play a crucial role in facilitating optimal wound healing and protecting against mic...
Surgical site infections cause significant postoperative morbidity and increased healthcare costs. B...
Wound care is a substantial portion of the global market and treatment of chronic wounds cost the U....
Loss of the skin barrier facilitates the colonization of underlying tissues with various bacteria, w...
Not AvailableTwo component injectable hydrogels that cross-link in situ have been used as noninvasiv...
The current study demonstrates the benefits of poly(carboxybetaine methacrylate) hydrogels in chroni...
The wound healing process is usually susceptible to different bacterial infections due to the comple...
Bacterial biofilms represent a major concern at a worldwide level due to the high demand for implant...
© 2019 American Chemical Society. Biofilms are prevalent in chronic wounds and once formed are very ...
Bacterial biofilms are involved in most device-associated infections and remain a challenge for mode...
A new strategy integrating antimicrobial and nonfouling/biocompatible properties is presented. A mil...
Abstract A 100% water-soluble surfactant polymer dressing (SPD) that is bio-compatible and non-ionic...