Uncontrolled bleeding from traumatic wounds is a major factor in deaths resulting from military conflict, accidents, disasters and crime. Self-assembling peptide nanofibers have shown superior hemostatic activity, and herein, we elucidate their mechanism by visualizing the formation of nanofiber-based clots that aggregate blood components with a similar morphology to fibrin-based clots. Furthermore, to enhance its direct application to a wound, we developed layer-by-layer assembled thin film coatings onto common materials used for wound dressings—gauze and gelatin sponges. We find these nanofibers elute upon hydration under physiological conditions and generate nanofiber-based clots with blood. After exposure to a range of harsh temperature...
The timely and effective control and repair of wound bleeding is a key research issue all over the w...
The standard treatment for severe traumatic injury is frequently compression and application of gauz...
The aim of this work is to develop a novel nanofiber wound dressing with multiple functional propert...
Uncontrolled bleeding from traumatic wounds is a major factor in deaths resulting from military conf...
ABSTRACT: Collagen is a major component of the extracellular matrix and plays a wide variety of impo...
Hemostatic materials are of great importance in medicine. However, their successful implementation i...
Cutaneous wound repair regenerates skin integrity, but a chronic failure to heal results in compromi...
Ionic self-assembly of the peptide RADARADARADARADA (RADA16-1) may form a well-defined nanofiber and...
Internal hemorrhaging is a leading cause of death after traumatic injury on the battlefield. Althoug...
Hemostasis is a major problem in surgical procedures and after major trauma. There are few effective...
Collagen is a vital part of wound healing and has been incorporated into a variety of modern wound d...
Serious injuries occur every day and while medical technology has improved greatly in recent years, ...
Noncompressible torso hemorrhage is a leading cause of mortality in civilian and battlefield trauma....
The abnormal levels of pH and oxygen (O2) in the wound microenvironment impeded wound healing, and t...
High-performance cellulose–halloysite hemostatic nanocomposite fibers (CHNFs) are fabricated using a...
The timely and effective control and repair of wound bleeding is a key research issue all over the w...
The standard treatment for severe traumatic injury is frequently compression and application of gauz...
The aim of this work is to develop a novel nanofiber wound dressing with multiple functional propert...
Uncontrolled bleeding from traumatic wounds is a major factor in deaths resulting from military conf...
ABSTRACT: Collagen is a major component of the extracellular matrix and plays a wide variety of impo...
Hemostatic materials are of great importance in medicine. However, their successful implementation i...
Cutaneous wound repair regenerates skin integrity, but a chronic failure to heal results in compromi...
Ionic self-assembly of the peptide RADARADARADARADA (RADA16-1) may form a well-defined nanofiber and...
Internal hemorrhaging is a leading cause of death after traumatic injury on the battlefield. Althoug...
Hemostasis is a major problem in surgical procedures and after major trauma. There are few effective...
Collagen is a vital part of wound healing and has been incorporated into a variety of modern wound d...
Serious injuries occur every day and while medical technology has improved greatly in recent years, ...
Noncompressible torso hemorrhage is a leading cause of mortality in civilian and battlefield trauma....
The abnormal levels of pH and oxygen (O2) in the wound microenvironment impeded wound healing, and t...
High-performance cellulose–halloysite hemostatic nanocomposite fibers (CHNFs) are fabricated using a...
The timely and effective control and repair of wound bleeding is a key research issue all over the w...
The standard treatment for severe traumatic injury is frequently compression and application of gauz...
The aim of this work is to develop a novel nanofiber wound dressing with multiple functional propert...