• 具体包括干细胞分离培养组织工程海绵体的构建。

    It specifically includes the isolation culture of muscle stem cells and the construction of tissue engineered corpus spongiosum.

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  • 方法体外分离培养成骨细胞。

    Methods The osteoblasts were isolated from human fetal calvaria.

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  • 目的分离培养鉴定人胚胎骨髓间充质干细胞

    Objective To culture and identify mesenchymal stem cells (MSCs) derived from human fetal bone marrow.

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  • 方法贴壁法分离培养外周血单核细胞进行鉴定

    Methods the monocytes were separated by the anchoring technique and identified.

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  • 目的脑中分离培养鉴定神经干细胞

    Objective To isolate and culture human neural stem cells from elder embryonic brain.

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  • 目的分离培养胰岛素瘤细胞研究功能特性

    Objective To isolate human insulinoma cells, and investigate its functional characteristics.

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  • 目的探讨大鼠细小动脉平滑肌细胞分离培养方法

    Objective: to investigate a new method to cultivate the smooth muscle cell of rat arteriole.

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  • 目的:探讨表皮干细胞体外快速分离培养鉴定方法

    Objective To explore a method for isolation and culture of human epidermal stem cells.

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  • PSA培养上,利用病菌菌核分离培养了稻曲病菌。

    Using false smut of rice (FSR) sclerotia isolation, the pathogen of FSR was cultured in PSA medium.

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  • 目的分离培养发育基本成熟的视网膜中神经干细胞细胞

    Objective To isolate the neural stem cell-like cells from infant human retinas.

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  • 前言: 目的:探讨新生神经干细胞分离培养鉴定

    Objective:To study the identification and cultivation of neural stem cells in neonatal rats in vitro.

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  • 目的:分离培养骨髓基质干细胞探讨体外生物学特性

    Objective To study the biological characteristics of rabbit bone marrow mesenchymal stem cells in vitro.

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  • 目的建立一种小鼠骨髓分离培养间充质干细胞高效方法

    Objective To establish an efficient method for isolation and culture of mesenchymal stem cells from mouse bone marrow.

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  • 方法制备大鼠急性心肌梗死模型分离培养同种异体msc

    Methods: Rat model of AMI was performed and allogenic MSC were isolated and cultured.

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  • 表皮细胞分离培养技术一步就是从皮肤中分离底层细胞

    Isolation and culture of Keratinocyte, it is the first step to isolate the epidermal basal layer cells.

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  • 结论:研究出套应用少量针刺活检分离培养MVEC方法。

    CONCLUSIONS We developed a system for isolation and culture of human MVEC from small needle biopsies.

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  • 材料5月龄新西兰大白耳用于骨髓间充质干细胞分离培养

    MATERIALS: New Zealand big-eared rabbits aged 5 months were used for isolation and culture of BMSCs.

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  • 目的提出一个可供分离培养结核杆菌简易血清琼脂斜面培养方法。

    Objective To develop a simple serum-agar slant medium for cultivation and isolation of tubercle bacilli.

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  • 比较吸附混合一、改进混合三种方法分离培养口疮病毒的效果。

    A comparative study on the adsorption passage, mixing passage and modified passage method were carried out.

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  • 目的新生大鼠脊髓分离培养神经干细胞并观察其增殖分化能力。

    ObjectiveTo study the isolation, culture and characterization of neural stem cells from newborn rat spinal cords.

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  • 自然环境99%的微生物不能传统分离培养方法获得培养

    About 99% microorganisms in natural environment cannot be obtained their pure culture by traditional isolation and culture methods.

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  • 目的改良现有小胶质细胞纯化分离培养方法建立稳定简便培养模型

    Objective To modify the current cultural method of rat microglia and establish a convenient and stable model of culture method for rat microglia.

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  • 结论脐血成分复杂,体外分离培养可以获得形态各异的脐血间充质样细胞

    Conclusion: Cord blood mesenchymal-like cells can be cultured in vitro, and mesenchymal-like cells with varied morphology can be obtained.

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  • 目的分离培养幽门螺杆菌科学研究药品质量检测提供先进简便方法

    Objective: to separate and to cultivate helicobacter pylori, provide advanced and simple method for scientific research and drug control.

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  • 但是乳糖发酵分离培养证实试验过程中,有些原理实验现象需要引起注意

    But some principles and some experimental phenomenons need to be paid attention to during the course of lactose fermentation, separate cultivation and confirmatory test.

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  • 目的成体牙周组织中分离培养牙周韧带干细胞研究分化软骨细胞可行性

    Objective to isolate and cultivate human periodontal ligament stem cells (PDLSC) and to investigate the feasibility of PDLSC in vitro differentiation into chondrogenic phenotype.

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  • 结论端脑分离培养细胞具有自我更新能力多潜能分化能力,中枢神经系统干细胞。

    Conclusion the cells from fetal rat telencephalon possess multipotency and self renew ability and is believed to be BSCs of the central nervous system.

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  • 结论端脑分离培养细胞具有自我更新能力多潜能分化能力,中枢神经系统干细胞。

    Conclusion the cells from fetal rat telencephalon possess multipotency and self renew ability and is believed to be BSCs of the central nervous system.

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