Electrospun organic/inorganic hybrid nanofibers for accelerating wound healing: a review

S Yan, Y Qian, M Haghayegh, Y Xia, S Yang… - Journal of Materials …, 2024 - pubs.rsc.org
Electrospun nanofiber membranes hold great promise as scaffolds for tissue reconstruction,
mirroring the natural extracellular matrix (ECM) in their structure. However, their limited …

[HTML][HTML] Chitosan-Based Biomaterials for Hemostatic Applications: A Review of Recent Advances

D Gheorghiță, H Moldovan, A Robu, AI Bița… - International journal of …, 2023 - mdpi.com
Hemorrhage is a detrimental event present in traumatic injury, surgery, and disorders of
bleeding that can become life-threatening if not properly managed. Moreover, uncontrolled …

Fast Expandable Chitosan‐Fibers Cryogel from Ambient Drying for Noncompressible Bleeding Control and In Situ Tissue Regeneration

L Qi, L Mu, X Guo, A Liu, C Chen, Q Ye… - Advanced Functional …, 2023 - Wiley Online Library
Hemorrhage control, especially noncompressible wound hemostasis, is a tremendous
challenge in military injuries and other traumas worldwide. Here, a cryogelation strategy and …

[HTML][HTML] Biomaterials for hemostasis

A Simpson, A Shukla, AC Brown - Annual review of biomedical …, 2022 - annualreviews.org
Uncontrolled bleeding is a major problem in trauma and emergency medicine. While
materials for trauma applications would certainly find utility in traditional surgical settings, the …

Progress and future prospects of hemostatic materials based on nanostructured clay minerals

Y Yang, X Wang, F Yang, B Mu, A Wang - Biomaterials science, 2023 - pubs.rsc.org
The occurrence of uncontrolled hemorrhage is a significant threat to human life and health.
Although hemostatic materials have made remarkable advances in the biomaterials field, it …

An additive-free multifunctional β-glucan-peptide hydrogel participates in the whole process of bacterial-infected wound healing

L Li, Y Wang, Z Huang, Z Xu, R Cao, J Li, B Wu… - Journal of Controlled …, 2023 - Elsevier
Bacterial infections and excessive inflammation can impede the healing of wounds.
Hydrogels have emerged as a promising approach for dressing bacterial-infected injuries …

Short peptide nanofiber biomaterials ameliorate local hemostatic capacity of surgical materials and intraoperative hemostatic applications in clinics

Z Yang, L Chen, J Liu, H Zhuang, W Lin… - Advanced …, 2023 - Wiley Online Library
Short designer self‐assembling peptide (dSAP) biomaterials are a new addition to the
hemostat group. It may provide a diverse and robust toolbox for surgeons to integrate wound …

Highly resilient, biocompatible, and antibacterial carbon nanotube/hydroxybutyl chitosan sponge dressing for rapid and effective hemostasis

W Zhang, L Zhao, C Gao, J Huang, Q Li… - Journal of Materials …, 2021 - pubs.rsc.org
Uncontrolled hemorrhage is the leading cause of trauma death. The development of safe
and efficient hemostatic agents that can rapidly and effectively control bleeding is of great …

Prehospital Hemorrhage Control and Treatment by clinicians: a joint position Statement

C Berry, JM Gallagher, JM Goodloe… - Prehospital …, 2023 - Taylor & Francis
Exsanguination remains the leading cause of preventable death among victims of trauma.
For adult and pediatric trauma patients in the prehospital phase of care, methods to control …

[HTML][HTML] Biomaterials as Haemostatic Agents in Cardiovascular Surgery: Review of Current Situation and Future Trends

H Moldovan, I Antoniac, D Gheorghiță, MS Safta… - Polymers, 2022 - mdpi.com
Intraoperative haemostasis is of paramount importance in the practice of cardiovascular
surgery. Over the past 70 years, topical haemostatic methods have advanced significantly …