| Literature DB >> 29040831 |
Guofeng Li1, Kecheng Quan1, CongCong Xu1, Bo Deng2, Xing Wang3.
Abstract
Composites are attractive for its potential synergistic effects that can result in high-performance, but the synergy depends on subtle design. In this study, a hemostatic composite, a thrombin/cross-linked graphene sponge (TCGS), was developed through a facile gradient composite strategy. The porous structure of the CGS assures that the thrombin is stably embedded in the TCGS, avoiding a burst release but maintaining its bioactivity. In the synergy between proper thrombin stimulation and the fast absorption of the sponge, TCGS exhibits outstanding hemostatic performance, ultrafast bleeding cessation, within 100s, which is superior to both CGS and equal amounts of native thrombin. Lower or excessive thrombin dosages prolong the bleeding time. The study revealed that the balance between plasma absorption and thrombin stimulation at the interface is critical for improving hemostatic efficacy. TCGS is also highlighted for its biosafety and stability, even after 6 months of storage in environment. This potentially ultra-long shelf life is conducive to its practical applications. Therefore, TCGS not only provides a new strategy for developing a hemostatic composite but also provides a new method and understanding for the design of hemostatic materials.Entities:
Keywords: Composite; Graphene; Hemostasis; Synergy effect; Thrombin
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Year: 2017 PMID: 29040831 DOI: 10.1016/j.colsurfb.2017.10.021
Source DB: PubMed Journal: Colloids Surf B Biointerfaces ISSN: 0927-7765 Impact factor: 5.268