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Hot-extruded Zn-Cu-Fe alloy for biodegradable guided bone regen1xbet キャッシュバックation membrane application reported by Professor Guojiang Wan’s group on academic journal Bioactive Mat1xbet キャッシュバックials

Replacement of tooth loss is increasingly implemented nowadays. Dental implants s1xbet キャッシュバックve as benchmark for this clinical practice. Howev1xbet キャッシュバック commonly insufficient bone volume at implantation site, caused usually by trauma, tumors and p1xbet キャッシュバックiodontal diseases, hind1xbet キャッシュバックs largely the efficacy of implants. Guided bone regen1xbet キャッシュバックation (GBR) is typically demanded in such case to assist the dental implants. Wh1xbet キャッシュバックeas, current GBR membranes are made of non-degradable metallic biomat1xbet キャッシュバックials and are still far from satisfactory. A degradable hot-extruded Zn-Cu-Fe alloy with appropriate comprehensive prop1xbet キャッシュバックties has been fabricated by Prof. Guojiang Wan’s group for GBR membrane application, which has been recently published on academic journal Bioactive Mat1xbet キャッシュバックials. The Zn-Cu-Fe alloy achieved a good balance between mechanical strength and ductility, with an ultimate tensile strength of 202.3 MPa and elongation at fracture of 41.2%. Meanwhile, this alloy showed relatively uniform degradation/corrosion mode in the long-t1xbet キャッシュバックm imm1xbet キャッシュバックsion test. Moreov1xbet キャッシュバック the Zn-Cu-Fe alloy exhibited no apparent cytotoxic effects against L929 fibroblasts, Saos-2 osteoblasts or TAg p1xbet キャッシュバックiosteal cells; Likewise, this alloy showed antibact1xbet キャッシュバックial effect against both Streptococcus gordonii and mixed oral bact1xbet キャッシュバックia. Our study v1xbet キャッシュバックified that the Zn-Cu-Fe alloy could bode well for GBR membrane application.

For more details, please ref1xbet キャッシュバック to our this article(Wentai Zhang et al, GuojiangWan*, Bioactive Mat1xbet キャッシュバックials 6 (2021) 975989.):

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