玉木 哲朗

Tamaki Tetsuro

  • 教授
  • 学位:医学博士

基本情報

所属

  • Undergraduate School of Medicine / Faculty of Medicine

詳細情報

研究分野

  • Life sciences Cell biology skeletal muscle, stem cells, regenerative medicine
  • Life sciences Physiology

論文

Skeletal Muscle-Derived Stem Cell Transplantation Accelerates the Recovery of Peripheral Nerve Gap Injury under 50% and 100% Allogeneic Compatibility with the Swine Leucocyte Antigen.

Differentiation Capacity of Porcine Skeletal Muscle-Derived Stem Cells as Intermediate Species between Mice and Humans.

Transplantation of Fibroblast Sheets with Blood Mononuclear Cell Culture Exerts Cardioprotective Effects by Enhancing Anti-Inflammation and Vasculogenic Potential in Rat Experimental Autoimmune Myocarditis Model.

Quantitative Evaluation of the Reduced Capacity of Skeletal Muscle Hypertrophy after Total Body Irradiation in Relation to Stem/Progenitor Cells

Peripheral Nerve Regeneration Using a Cytokine Cocktail Secreted by Skeletal Muscle-Derived Stem Cells in a Mouse Model

Biomedical applications of muscle-derived stem cells: from bench to bedside.

Artificial oxygen carrier improves fatigue resistance in slow muscle but not in fast muscle in a rat in situ model

Regeneration of Transected Recurrent Laryngeal Nerve Using Hybrid-Transplantation of Skeletal Muscle-Derived Stem Cells and Bioabsorbable Scaffold

Voluntary Exercise Positively Affects the Recovery of Long-Nerve Gap Injury Following Tube-Bridging with Human Skeletal Muscle-Derived Stem Cell Transplantation

PEGylated carboxyhemoglobin bovine (SANGUINATE) ameliorates myocardial infarction in a rat model

Therapeutic capacities of human and mouse skeletal muscle-derived stem cells for a long gap peripheral nerve injury

Purified Human Skeletal Muscle-Derived Stem Cells Enhance the Repair and Regeneration in the Damaged Urethra

A Long-Gap Peripheral Nerve Injury Therapy Using Human Skeletal Muscle-Derived Stem Cells (Sk-SCs): An Achievement of Significant Morphological, Numerical and Functional Recovery

Reconstitution of the complete rupture in musculotendinous junction using skeletal muscle-derived multipotent stem cell sheet-pellets as a "bio-bond"

Paracrine effect of skeletal muscle-derived stem cell transplantation: The case of peripheral nerve long-gap injury therapy.

Osteogenic differentiation of skeletal muscle-derived multipotent stem cells in a murine model of tibial bone fracture.

Reconstruction of Multiple Facial Nerve Branches Using Skeletal Muscle-Derived Multipotent Stem Cell Sheet-Pellet Transplantation

Therapeutic isolation and expansion of human skeletal muscle-derived stem cells for the use of muscle-nerve-blood vessel reconstitution

Three-dimensional reconstitution of nerve blood vessel units on damaged trachea and bronchial stump using hybrid-transplantation of skeletal muscle-derived stem cells and bioabsorbable polyglyconate felt.

Establishment of β-2 microglobulin deficient human iPS cells using CRISPR/Cas9 system.

共同研究・競争的資金等の研究課題

Experimental approach to respiratory and circulatory failure using artificial oxygen carriers and their derivatives

Head and Neck Nerve Regeneration Using Skeletal Muscle-Derived Multipotent Stem Cell Transplantation

Total research for the sarcopenia from rats to human using multiple level analysis, such as motor unit in vivo, cell, molecule and nucleic acid.

Innovative Approaches for Oxygen Metabolism Disorder with Artificial Oxygen Carriers and Related Compounds

Regeneration of Damaged Peripheral Nerve using Skeletal Muscle-Derived Multipotent Stem Cell co-using with Absorbable Tube

Reconstitution of urethral sphincter and neurovascular bundle using skeletal muscle-derived multipotent stem cells.

Relationship among anabolic androgenic steroid, weight-lifting exercise and physiological functions.

A basic study of skeletal muscle damage : Relationship between free radical and muscle damage following weight-lifting exercise.

New method for the analysis of motor function on experimental animals.

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