Search Results - "Tabata, Yasuhiko"

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  1. 1

    Biomaterial technology for tissue engineering applications by Tabata, Yasuhiko

    Published in Journal of the Royal Society interface (06-06-2009)
    “…Tissue engineering is a newly emerging biomedical technology and methodology to assist and accelerate the regeneration and repairing of defective and damaged…”
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    Journal Article
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  3. 3

    Influence of shaking culture on the biological functions of cell aggregates incorporating gelatin hydrogel microspheres by Nii, Teruki, Makino, Kimiko, Tabata, Yasuhiko

    Published in Journal of bioscience and bioengineering (01-11-2019)
    “…The objective of this study is to investigate the influence of shaking culture on the biological functions of cell aggregates incorporating gelatin hydrogel…”
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    Journal Article
  4. 4

    Enhanced angiogenesis by multiple release of platelet-rich plasma contents and basic fibroblast growth factor from gelatin hydrogels by Matsui, Makoto, Tabata, Yasuhiko

    Published in Acta biomaterialia (01-05-2012)
    “…The objective of this study is to evaluate the angiogenic effects induced by biodegradable gelatin hydrogel granules incorporating mixed platelet-rich plasma…”
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    Journal Article
  5. 5

    Recruitment of mesenchymal stem cells and macrophages by dual release of stromal cell-derived factor-1 and a macrophage recruitment agent enhances wound closure by Kim, Yang-Hee, Tabata, Yasuhiko

    “…In this study, the wound closure of mouse skin defects was examined in terms of recruitment of mesenchymal stem cells (MSC) and macrophages. For the cells…”
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    Journal Article
  6. 6

    Preparation of fibrin hydrogels to promote the recruitment of anti-inflammatory macrophages by Tanaka, Ryusuke, Saito, Yoichi, Fujiwara, Yukio, Jo, Jun-ichiro, Tabata, Yasuhiko

    Published in Acta biomaterialia (15-04-2019)
    “…[Display omitted] Macrophages play an important role in regulating inflammation and tissue regeneration. In the present study, uniform fibrin hydrogel…”
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    Journal Article
  7. 7

    Sustained release of water-insoluble simvastatin from biodegradable hydrogel augments bone regeneration by Tanigo, Tomomi, Takaoka, Ryohei, Tabata, Yasuhiko

    Published in Journal of controlled release (19-04-2010)
    “…Drug delivery technology is a practically promising way to enhance the therapeutic efficacy of drugs. However, there remain some properties of material to be…”
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    Journal Article
  8. 8

    Enhancement of bone regeneration by dual release of a macrophage recruitment agent and platelet-rich plasma from gelatin hydrogels by Kim, Yang-Hee, Furuya, Hiroyuki, Tabata, Yasuhiko

    Published in Biomaterials (01-01-2014)
    “…Abstract Macrophages play an important role in regulating inflammatory responses and tissue regeneration. In the present study, their effect on bone remodeling…”
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    Journal Article
  9. 9

    Gelatin hydrogel membrane containing carbonate hydroxyapatite for nerve regeneration scaffold by Ardhani, Retno, Ana, Ika Dewi, Tabata, Yasuhiko

    “…A scaffold that mimics physicochemical structure of nerve and supplies calcium ions in axonal environment is an attractive alternative for nerve regeneration,…”
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    Journal Article
  10. 10

    Synergistic effects of the dual release of stromal cell-derived factor-1 and bone morphogenetic protein-2 from hydrogels on bone regeneration by Ratanavaraporn, Juthamas, Furuya, Hiroyuki, Kohara, Hiroshi, Tabata, Yasuhiko

    Published in Biomaterials (01-04-2011)
    “…Abstract The objective of this study is to evaluate the activity of gelatin hydrogels incorporating combined stromal cell-derived factor-1 (SDF-1) and bone…”
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    Journal Article
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    Hypoxia-induced angiogenesis is increased by the controlled release of deferoxiamine from gelatin hydrogels by Saito, Takashi, Tabata, Yasuhiko

    Published in Acta biomaterialia (01-08-2014)
    “…The objective of this study is to design biodegradable hydrogels for the controlled release of deferoxiamine (DFO) and evaluate their biological activity. When…”
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    Journal Article
  12. 12

    Controlled Release of Stromal-Cell-Derived Factor-1 from Gelatin Hydrogels Enhances Angiogenesis by Kimura, Yu, Tabata, Yasuhiko

    “…Controlled release of a chemokine, stromal-cell-derived factor-1 (SDF-1), could be achieved with gelatin hydrogels of release carrier. Gelatin was chemically…”
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    Journal Article
  13. 13

    Hydrogen gas improves proliferation and mitochondrial activity of human adipose-derived stem cells after cryopreservation by Kimura, Koji, Tabata, Yasuhiko

    Published in Regenerative therapy (01-06-2024)
    “…The objective of this study is to evaluate the effect of hydrogen gas on the biological functions of human adipose-derived stem cells (hADSC) in…”
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    Journal Article
  14. 14

    Dual release of growth factor from nanocomposite fibrous scaffold promotes vascularisation and bone regeneration in rat critical sized calvarial defect by Kuttappan, Shruthy, Mathew, Dennis, Jo, Jun-ichiro, Tanaka, Ryusuke, Menon, Deepthy, Ishimoto, Takuya, Nakano, Takayoshi, Nair, Shantikumar V., Nair, Manitha B., Tabata, Yasuhiko

    Published in Acta biomaterialia (15-09-2018)
    “…[Display omitted] A promising strategy for augmenting bone formation involves the local delivery of multiple osteoinductive and vasculogenic growth factors…”
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    Journal Article
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    Matrix vesicles promote bone repair after a femoral bone defect in mice by Mizukami, Yuya, Kawao, Naoyuki, Takafuji, Yoshimasa, Ohira, Takashi, Okada, Kiyotaka, Jo, Jun-Ichiro, Tabata, Yasuhiko, Kaji, Hiroshi

    Published in PloS one (07-04-2023)
    “…Matrix vesicles (MtVs) are one of the extracellular vesicles (EVs) secreted by osteoblasts. Although MtVs have a classically-defined function as an initiator…”
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    Journal Article
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    Biological apatite (BAp) crystallographic orientation and texture as a new index for assessing the microstructure and function of bone regenerated by tissue engineering by Nakano, Takayoshi, Kaibara, Kazuhiro, Ishimoto, Takuya, Tabata, Yasuhiko, Umakoshi, Yukichi

    Published in Bone (New York, N.Y.) (01-10-2012)
    “…Abstract Recently, there have been remarkable advances in medical techniques for regenerating bone defects. To determine the degree of bone regeneration, it is…”
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    Journal Article
  17. 17

    Degree of biological apatite c‐axis orientation rather than bone mineral density controls mechanical function in bone regenerated using recombinant bone morphogenetic protein‐2 by Ishimoto, Takuya, Nakano, Takayoshi, Umakoshi, Yukichi, Yamamoto, Masaya, Tabata, Yasuhiko

    Published in Journal of bone and mineral research (01-05-2013)
    “…The aim of the present study was to assess the bone regeneration process in defects introduced into rabbit long bones, which were regenerated with controlled…”
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    Journal Article
  18. 18

    Classification of PD‐L1 expression in various cancers and macrophages based on immunohistocytological analysis by Saito, Yoichi, Fujiwara, Yukio, Shinchi, Yusuke, Mito, Remi, Miura, Yuji, Yamaguchi, Tomoya, Ikeda, Koei, Urakami, Shinji, Nakashima, Yuta, Sakagami, Takuro, Suzuki, Makoto, Tabata, Yasuhiko, Komohara, Yoshihiro

    Published in Cancer science (01-09-2022)
    “…Programmed death (PD)‐1/PD‐ligand 1 (PD‐L1) antibodies have shown an intense clinical effect in some patients with PD‐L1+ tumors, and their applications have…”
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    Journal Article
  19. 19

    Gelatin as a delivery vehicle for the controlled release of bioactive molecules by Young, Simon, Wong, Mark, Tabata, Yasuhiko, Mikos, Antonios G.

    Published in Journal of controlled release (05-12-2005)
    “…Gelatin is a commonly used natural polymer which is derived from collagen. The isoelectric point of gelatin can be modified during the fabrication process to…”
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    Journal Article Conference Proceeding
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    Angiogenesis induced by controlled release of neuropeptide substance P by Kohara, Hiroshi, Tajima, Shuhei, Yamamoto, Masaya, Tabata, Yasuhiko

    Published in Biomaterials (01-11-2010)
    “…Abstract The in vivo recruitment of circulating host cells to the site to be regenerated is one of the promising strategies for therapeutic angiogenesis…”
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    Journal Article