Showing results (1-10 of 12) with videos related to
Sort By:
Pageof 2
ACS Applied Bio Materials|September 23, 2022
Liquid-Liquid Phase-Separated Hydrogel with Tunable Sol-Gel Transition Behavior as a Hotmelt-Adhesive Postoperative BarrierAkihiro Nishiguchi, Shima Ito, Kazuhiro Nagasaka, et al.Biomacromolecules|March 7, 2023
Tissue-Adhesive Decellularized Extracellular Matrix Patches Reinforced by a Supramolecular Gelator to Repair Abdominal Wall DefectsAkihiro Nishiguchi, Shima Ito, Kazuhiro Nagasaka, et al.Acta Biomaterialia|May 2, 2022
Hotmelt tissue adhesive with supramolecularly-controlled sol-gel transition for preventing postoperative abdominal adhesionAkihiro Nishiguchi, Hiroaki Ichimaru, Shima Ito, et al.Acta Biomaterialia|June 13, 2022
Prevention of postoperative adhesion with a colloidal gel based on decyl group-modified Alaska pollock gelatin microparticlesShima Ito, Akihiro Nishiguchi, Hiroaki Ichimaru, et al.Biomaterials|January 3, 2024
Injectable microcapillary network hydrogels engineered by liquid-liquid phase separation for stem cell transplantationAkihiro Nishiguchi, Shima Ito, Kazuhiro Nagasaka, et al.Macromolecular Bioscience|April 27, 2023
Improved Swelling Property of Tissue Adhesive Hydrogels Based on α-Cyclodextrin/Decyl Group-Modified Alaska Pollock Gelatin Inclusion ComplexesHiyori Komatsu, Shiharu Watanabe, Shima Ito, et al.Biomaterials Advances|March 22, 2024
Improved hydration property of tissue adhesive/hemostatic microparticle based on hydrophobically-modified Alaska pollock gelatinShima Ito, Kazuhiro Nagasaka, Hiyori Komatsu, et al.Colloids and Surfaces. B, Biointerfaces|October 15, 2024
Elevation and adhesion properties of injectable hydrogels based on catechol/boronic acid-modified Alaska pollock gelatin for endoscopic submucosal dissectionKazuhiro Nagasaka, Hiyori Komatsu, Shima Ito, et al.Journal of Biomedical Materials Research. Part A|April 11, 2026
Localized Antiadhesive Hydrogel Barriers for Prevention of Postoperative AdhesionHiyori Komatsu, Shiharu Watanabe, Kazuhiro Nagasaka, et al.Colloids and Surfaces. B, Biointerfaces|October 24, 2022
Enhanced burst strength of catechol groups-modified Alaska pollock-derived gelatin-based surgical adhesiveKazuhiro Nagasaka, Shiharu Watanabe, Shima Ito, et al.Pageof 2