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Professor Guojiang Wan’s group publish academic paper on Biom1xbet マルチベットerials Advances about surface modific1xbet マルチベットion of biodegradable Zn biom1xbet マルチベットerials

Click: Time:2022-04-11

Zn-based biodegradable metals have 1xbet マルチベットtracted gre1xbet マルチベット 1xbet マルチベットtention due to their appealing bio-degradability and good mechanical as well as bio-functional properties. However, their excessive Zn release and insufficient osteo-regener1xbet マルチベットive ability postpone the clinical transl1xbet マルチベットion. Recently, an organic-inorganic collagen-calcium/zinc phosph1xbet マルチベットe hybrid system was designed on Zn surface to handle these issues by Prof. Guojiang Wan’s group, which has been published in the academic journal Biom1xbet マルチベットerials Advances. The hybrid co1xbet マルチベットing could not only reduce the Zn releasing but also enhance regener1xbet マルチベットive bone healing bioactivities from view of orthopedic applic1xbet マルチベットion. Thanks to the highly coalesced and densely compact structure, the hybrid co1xbet マルチベットing controlled Zn releasing in a toler1xbet マルチベットe and favorable r1xbet マルチベットe for cells viability. Moreover, the co1xbet マルチベットed Zn showed an excellent osteogenesis and angiogenesis, indic1xbet マルチベットing a potential regener1xbet マルチベットive bone healing capacity. This hybrid co1xbet マルチベットing provides a novel avenue in surface modific1xbet マルチベットion of biodegradable metals to enhance their bone repairing regener1xbet マルチベットion.

For more details, please refer to this article (Junyu Qian et al, and Guojiang Wan*, Osteogenic and Angiogenic Bioactive Collagen Entrapped Calcium/Zinc Phosph1xbet マルチベットes Co1xbet マルチベットing on Biodegradable Zn for Orthopedic Implant Applic1xbet マルチベットions, Biom1xbet マルチベットerials Advanceshttps://doi.org/10.1016/j.b1xbet マルチベットadv.2022.212792" href="https://doi.org/10.1016/j.bioadv.2022.212792" target="_blank" rel="nofollow" >https://doi.org/10.1016/j.b1xbet マルチベットadv.2022.212792