Rational Design of Bioactive Materials for Bone Hemostasis and Defect Repair

Author:

Gai Yuqi1,Yin Yue1ORCID,Guan Ling234,Zhang Shengchang1,Chen Jiatian1,Yang Junyuan1,Zhou Huaijuan2ORCID,Li Jinhua1ORCID

Affiliation:

1. School of Medical Technology, Beijing Institute of Technology, Beijing 100081, China.

2. Advanced Research Institute of Multidisciplinary Sciences, Beijing Institute of Technology, Beijing, 100081, China.

3. Department of Medicine, University of British Columbia, Vancouver, BC, Canada.

4. National Center for Neurological Disorders, Beijing Tiantan Hospital, Capital Medical University, Beijing 100070, China.

Abstract

Everyday unnatural events such as trauma, accidents, military conflict, disasters, and even medical malpractice create open wounds and massive blood loss, which can be life-threatening. Fractures and large bone defects are among the most common types of injuries. Traditional treatment methods usually involve rapid hemostasis and wound closure, which are convenient and fast but may result in various complications such as nerve injury, deep infection, vascular injury, and deep hematomas. To address these complications, various studies have been conducted on new materials that can be degraded in the body and reduce inflammation and abscesses in the surgical area. This review presents the latest research progress in biomaterials for bone hemostasis and repair. The mechanisms of bone hemostasis and bone healing are first introduced and then principles for rational design of biomaterials are summarized. After providing representative examples of hemostatic biomaterials for bone repair, future challenges and opportunities in the field are proposed.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Applied Mathematics,General Mathematics

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