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Promotion of fibrovascular tissue ingrowth into porous sponges by basic fibroblast growth factor Yamamoto, M; Tabata, Y; Kawasaki, H; Ikada, Y (2000) JOURNAL OF MATERIALS SCIENCE-MATERIALS IN MEDICINE, 11(4): 213-218 | |
Prevascularization with gelatin microspheres containing basic fibroblast growth factor enhances the benefits of cardiomyocyte transplantation Sakakibara, Y; Nishimura, K; Tambara, K; Yamamoto, M; Lu, FL; Tabata, Y; Komeda, M (2002) JOURNAL OF THORACIC AND CARDIOVASCULAR SURGERY, 124(1): 50-56 | |
Novel method to induce therapeutic angiogenesis in limb ischemia with use of basic fibroblast growth factor-incorporating gelatin hydrogel Marui, A; Tabata, Y; Doi, K; Hirose, K; Yamamoto, M; Kushibiki, T; Nishina, T; Ikeda, T; Nishimura, K; Komeda, M (2003) ATHEROSCLEROSIS SUPPLEMENTS, 4(2): 171-171 | |
Controlled release of growth factors based on biodegradation of gelatin hydrogel Yamamoto, M; Ikada, Y; Tabata, Y (2001) JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 12(1): 77-88 | |
Enhanced osteoinduction by controlled release of bone morphogenetic protein-2 from biodegradable sponge composed of gelatin and beta-tricalcium phosphate Takahashi, Y; Yamamoto, M; Tabata, Y (2005) BIOMATERIALS, 26(23): 4856-4865 | |
Control-release of hepatocyte growth factor (HGF) via gelatin hydrogel sheets improves left ventricular function in a rat model of dilated cardiomyopathy (DCM) Tambara, K; Sakaguchi, G; Sakakibara, Y; Iwai-Kanai, E; Premaratne, GU; Horii, T; Miwa, S; Ozeki, M; Yamamoto, M; Tabata, Y; Komeda, M (2002) CIRCULATION, 106(19): 350-350 | |
Administration of control-released hepatocyte growth factor enhances the efficacy of skeletal myoblast transplantation in rat infarcted hearts by greatly increasing both quantity and quality of the graft Tambara, K; Premaratne, GU; Sakaguchi, G; Kanemitsu, N; Lin, X; Nakajima, H; Sakakibara, Y; Kimura, Y; Yamamoto, M; Tabata, Y; Ikeda, T; Komeda, M (2005) CIRCULATION, 112(9): I129-I134 | |
Use of collagen sponge incorporating transforming growth factor-beta 1 to promote bone repair in skull defects in rabbits Ueda, H; Hong, L; Yamamoto, M; Shigeno, K; Inoue, M; Toba, T; Yoshitani, M; Nakamura, T; Tabata, Y; Shimizu, Y (2002) BIOMATERIALS, 23(4): 1003-1010 | |
Carrier dependent cell differentiation of bone morphogenetic protein-2 induced osteogenesis and chondrogenesis during the early implantation stage in rats Takita, H; Vehof, JWM; Jansen, JA; Yamamoto, M; Tabata, Y; Tamura, M; Kuboki, Y (2004) JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 71A(1): 181-189 | |
Bone regeneration at rabbit skull defects treated with transforming growth factor-beta 1 incorporated into hydrogels with different levels of biodegradability Hong, L; Tabata, Y; Miyamoto, S; Yamamoto, M; Yamada, K; Hashimoto, N; Ikada, Y (2000) JOURNAL OF NEUROSURGERY, 92(2): 315-325 |
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