High‐Efficiency Antibacterial Hemostatic AgNP@Zeolite/Chitin/Bamboo Composite Sponge for Wound Healing without Heat Injury

Author:

Zheng Lu1,Li Xiaoyun1,Xu Changliang2,Xu Yidi3,Zeng Yukai3,Tam Manseng4,Zhang Huan‐Tian3,Wang Xiaoying1ORCID

Affiliation:

1. State Key Laboratory of Pulp & Paper Engineering South China University of Technology 510640 Guangzhou China

2. Jiangsu Collaborative Innovation Center of Traditional Chinese Medicine Prevention and Treatment of Tumor Nanjing University of Chinese Medicine 210023 Jiangsu China

3. Department of Bone and Joint Surgery The First Affiliated Hospital of Jinan University 510632 Guangzhou China

4. IAN WO Medical Center Macao Special Administrative Region Macao 999078 China

Abstract

AbstractChitin is a popular hemostatic material, but there are still many deficiencies in its ability to effectively stop bleeding, prevent infection, and fit wounds. Herein, AgNP@zeolite/chitin/bamboo (AgZ‐CB) composite sponges with shape recovery are prepared to minimize blood loss, kill bacteria, and promote wound healing. Notably, the bamboo powder is used for the first time to remarkably enhance the softness of the composite sponge (volumetric expansion ratio >5). The fabricated AgZ‐CB sponge exhibits an excellent killing effect (≈100% bactericidal rate) against both Escherichia coli and Staphylococcus aureus and activates internal and external coagulation pathways to accelerate hemostasis without causing thermal damage (≈5 °C temperature difference). Moreover, the AgZ‐CB sponge shows less blood loss (26 mg) and a shorter time to hemostasis (42 s) than the commercial polyvinyl formal sponge (84 mg and 76 s) in the full‐thickness liver injury model. The in vivo wound healing and biodegradation experiment indicate that AgZ‐CB with excellent biocompatibility can close wounds efficiently. Overall, the AgZ‐CB sponge has great potential in combating a series of obstacles in wound healing.

Funder

Natural Science Foundation of Guangdong Province

Fundamental Research Funds for the Central Universities

National Natural Science Foundation of China

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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