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Titlebook: Cutting-Edge Enabling Technologies for Regenerative Medicine; Heung Jae Chun,Chan Hum Park,Gilson Khang Book 2018 Springer Nature Singapor

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Human–Computer Interaction Seriesissue regeneration. Herein, we summarized recent research advances in graphene-based nanocomposites for hard tissue regeneration, and highlighted their promising potentials in biomedical and tissue engineering.
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John A. Burt,Francesco Paparellarotein-based biomaterials have enormous capabilities, which can completely revolutionize the biomaterial world. In this review, we address an up-to date review on the novel, protein-based biomaterials used for biomedical field including tissue engineering, medical science, regenerative medicine as w
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The Varieties of Posthumous Experience,s have demonstrated that a combination of multiple GFs and/or therapeutic chemical factors with delivery platforms synergistically facilitates bone regeneration. Therefore, in the future, multiple combinations of various GFs, chemicals, and materials could provide patients and surgeons with non-inva
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https://doi.org/10.1007/978-981-99-7081-0ons of PNPs for biomedical field in individual form or cluster employment, such as immunoswitch particles, surface fabrication. Finally, the challenges and future development of PNPs are also discussed. In delivery section, we focus on how polymer “can be used” as vehicles in delivery application. B
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0065-2598 based on contributions from leading experts that were delivered at the 2018 Asia University Symposium on Biomedical Engineering in Seoul, Korea – the companion book examines in depth novel biomaterials for regenerative medicine. .978-981-13-4538-8978-981-13-0950-2Series ISSN 0065-2598 Series E-ISSN 2214-8019
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