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中文摘要
翻译
居住在成人骨髓中的是一群称为骨髓基质细胞的细胞。这个多才多艺的群体 干细胞很容易分离,提供更新的种群,并可用于自体移植。 已发现骨髓基质细胞在中枢和外周分化为神经细胞。 体内的神经系统。然而,人们对骨髓基质细胞的潜能知之甚少。 内耳结构中感觉神经元的特性。这项研究的主要目标是测试 骨髓间充质干细胞能否存活、分化并在发育中或体内建立连接 成人内耳,以及从微环境中分泌的信号蛋白是否起到任何指导作用 在这些过程中扮演的角色。目标1将测试骨髓基质细胞和组织之间的相互作用 在发育中的内耳周围对组织特异性神经元的分化起指导作用。目标 #2将测试从发育中的内耳分泌的可扩散蛋白是否促进迁移或轴突 暴露在神经诱导信号下的骨髓基质细胞的生长。AIM#3将测试 移植的骨髓基质细胞能否分化并整合到成年动物的内耳 或患有听神经病的动物。未分化或部分分化的基质细胞将 移植到成年正常沙土鼠或经哇巴因治疗的沙土鼠的耳蜗内。生存的程度, 将评估和比较供体基质细胞的神经元分化和轴突生长 不同的实验条件。总而言之,这些实验将提供有关因素的关键信息 骨髓源性干细胞在宿主耳蜗内的分化和整合 组织,因此在自体细胞的开发和实施中具有重要意义 听觉系统中的替代疗法。
英文摘要
Resident in adult bone marrow is a cell population called the marrow stromal cells. This pool of pluripotent stem cells is easy to isolate, provides a renewal population and can be used for autologous transplantation. Marrow stromal cells have been shown to differentiate into neuronal cells in the central and peripheral nervous systems in vivo. Little, however, is known about the potential of marrow stromal cells to take on properties of sensory neurons residing in the inner ear structures. The primary goal of this study is to test whether marrow storomal cells can survive, differentiate and establish connectivity within the developing or adult inner ear, and whether signaling proteins secreted from the microenvironment play any instructive roles in these processes. Aim #1 will test whether interactions between marrow stromal cells and tissues surrounding the developing inner ear play an instructive role in tissue-specific neuronal differentiation. Aim #2 will test whether diffusible proteins secreted from the developing inner ear promote migration or axon outgrowth of marrow stromal cells that have been exposed to neural induction signals. Aim #3 will test whether transplanted marrow stromal cells can differentiate and integrate into the inner ear of adult animals or animals with auditory neuropathy. Undifferentiated or partially-differentiated stromal cells will be transplanted into the cochlea of adult normal gerbils or gerbils treated with ouabain. The extent of survival, neuronal differentiation and axon outgrowth of donor stromal cells will be evaluated and compared among different experimental conditions. Together, these experiments would provide critical information on factors essential for the differentiation and integration of bone marrow-derived stem cells in the host cochlear tissue, and thus have significant implications in the development and implementation of an autologous cell replacement therapy in the auditory system.
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In-vivo assessment of migration and engraftment of stem cells in the cochlea using a high-resolution microscopic-endoscope.
使用高分辨率显微内窥镜对耳蜗中干细胞的迁移和植入进行体内评估。
DOI: 10.1002/lary.21679
发表时间: 2010
期刊: The Laryngoscope
影响因子: --
作者: [Matsuoka,AkihiroJ, Fritsch,MichaelH, Koehler,KarlR, Hashino,Eri]
通讯作者: Hashino,Eri
DOI: 10.1002/stem.624
发表时间: 2011-05
期刊: STEM CELLS
影响因子: 5.2
作者: [Kondo, Takako, Matsuoka, Akihiro J., Shimomura, Atsushi, Koehler, Karl R., Chan, Rebecca J., Miller, Josef M., Srour, Edward F., Hashino, Eri]
通讯作者: Hashino, Eri
Engineering High-Fidelity Human Cochlear Organoids
Engineering High-Fidelity Human Cochlear Organoids
Modeling Genetic Inner Ear Disorders with Human Pluripotent Stem Cells
Modeling Genetic Inner Ear Disorders with Human Pluripotent Stem Cells
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