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Berberine-Coated Biomimetic Composite Microspheres for Simultaneously Hemostatic and Antibacterial Performance.

Xiaojian Zhang | Kaili Dai | Chenyu Liu | Haofeng Hu | Fulin Luo | Qifan Qi | Lei Wang | Fei Ye | Jia Jin | Jie Tang | Fan Yang
Polymers | 2021

Biomimetic microspheres containing alginate/carboxymethylcellulose/gelatin and coated with 0%, 1%, 3%, and 6% berberine (BACG, BACG-1B, BACG-3B, BACG-6B) were prepared by the oil-in-water emulsion method combined with spray drying. Through a series of physicochemical parameters and determination of hemostatic properties in vitro and in vivo, the results indicated that BACG and BACG-Bs were effective in inducing platelet adhesion/aggregation and promoting the hemostatic potential due to their biomimetic structure and rough surface. In addition, BACG-6B with high berberine proportion presented better hemostatic performance compared with the commercial hemostatic agent compound microporous polysaccharide hemostatic powder (CMPHP). BACG-6B also showed strong antibacterial activity in the in vitro test. The hemolysis test and cytotoxicity evaluation further revealed that the novel composite biomaterials have good hemocompatibility and biocompatibility. Thus, BACG-6B provides a new strategy for developing a due-functional (hemostat/antibacterial) biomedical material, which may have broad and promising applications in the future.

Pubmed ID: 33499361

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Associated grants

  • Agency: National Natural Science Foundation of China,
    Id: 81803339
  • Agency: Natural Science Foundation of Zhejiang Province,
    Id: LY18H300008

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SD (tool)

RRID:RGD_70508

Rattus norvegicus with name SD from RGD.

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