产品封面图
文献支持

进口原代角质细胞培养基

收藏
  • ¥1600
  • Sciencell
  • C-2101
  • 美国
  • 2025年08月01日
    avatar
  • 企业认证

    点击 QQ 联系

    • 详细信息
    • 文献和实验
    • 技术资料
    • 库存

      100

    • 供应商

      上海酶研生物科技有限公司

    • 英文名

      KM (Kerotinocyte Medium)

    • 规格

      500ml/T

    货号

    2101

    产地

    美国

    缩写

    KM

    规格

    500ml

    用途

    科研

    储存

    4度,-20度

    运输

    胶冰

    角质细胞培养基是为正常人类角质细胞体外培养设计的适于其生长的培养基。无血清培养基是无菌的、液体培养基,包含必需和非必需氨基、维生素、有机和无机化合物、激素、生长因子、微量矿物质。该培养基不含血清。该培养基含碳酸氢盐缓冲体系,在5%二氧化碳/95%空气培养箱中平衡时PH值为7.4。该培养基在数量上和质量上都保证理想的营养平衡状态,选择性促进体外正常人类角质细胞的生长。
    成分
    角质细胞培养基包含500 ml基础培养基,5 ml角质细胞生长添加物,(KGS,目录编号2152)和5 ml青霉素/链霉素溶液(P/S,目录编号0503)

    3. Yang YC, Fu HC, Wu CY, Wei KT, Huang KE, Kang HY. (2013) 'Androgen Receptor Accelerates Premature Senescence of Human Dermal Papilla Cells in Association with DNA Damage.'

    The dermal papilla, located in the hair follicle, expresses androgen receptor and plays an important role in hair growth. Androgen/Androgen receptor actions have been implicated in the pathogenesis of androgenetic alopecia, but the exact mechanism is not well known. Recent studies suggest that balding dermal papilla cells exhibit premature senescence, upregulation of p16(INK4a), and nuclear expression of DNA damage markers. To investigate whether androgen/AR signaling influences the premature senescence of dermal papilla cells, we first compared frontal scalp dermal papilla cells of androgenetic alopecia patients with matched normal controls and observed that premature senescence is more prominent in the dermal papilla cells of androgenetic alopecia patients. Exposure of androgen induced premature senescence in dermal papilla cells from non-balding frontal and transitional zone of balding scalp follicles but not in beard follicles. Overexpression of the AR promoted androgen-induced premature senescence in association with p16(INK4a) upregulation, whereas knockdown of the androgen receptor diminished the effects of androgen. An analysis of γ-H2AX expression in response to androgen/androgen receptor signaling suggested that DNA damage contributes to androgen/androgen receptor-accelerated premature senescence. These results define androgen/androgen receptor signaling as an accelerator of premature senescence in dermal papilla cells and suggest that the androgen/androgen receptor-mediated DNA damage-p16(INK4a) axis is a potential therapeutic target in the treatment of androgenetic alopecia. Less

    4. Yang YC, Fu HC, Wu CY, Wei KT, Huang KE, Kang HY. (2013) "Androgen Receptor Accelerates Premature Senescence of Human Dermal Papilla Cells in Association with DNA Damage." PLOS ONE. 8: e79434.

    The dermal papilla, located in the hair follicle, expresses androgen receptor and plays an important role in hair growth. Androgen/Androgen receptor actions have been implicated in the pathogenesis of androgenetic alopecia, but the exact mechanism is not well known. Recent studies suggest that balding dermal papilla cells exhibit premature senescence, upregulation of p16(INK4a), and nuclear expression of DNA damage markers. To investigate whether androgen/AR signaling influences the premature senescence of dermal papilla cells, we first compared frontal scalp dermal papilla cells of androgenetic alopecia patients with matched normal controls and observed that premature senescence is more prominent in the dermal papilla cells of androgenetic alopecia patients. Exposure of androgen induced premature senescence in dermal papilla cells from non-balding frontal and transitional zone of balding scalp follicles but not in beard follicles. Overexpression of the AR promoted androgen-induced premature senescence in association with p16(INK4a) upregulation, whereas knockdown of the androgen receptor diminished the effects of androgen. An analysis of γ-H2AX expression in response to androgen/androgen receptor signaling suggested that DNA damage contributes to androgen/androgen receptor-accelerated premature senescence. These results define androgen/androgen receptor signaling as an accelerator of premature senescence in dermal papilla cells and suggest that the androgen/androgen receptor-mediated DNA damage-p16(INK4a) axis is a potential therapeutic target in the treatment of androgenetic alopecia. Less

    风险提示:丁香通仅作为第三方平台,为商家信息发布提供平台空间。用户咨询产品时请注意保护个人信息及财产安全,合理判断,谨慎选购商品,商家和用户对交易行为负责。对于医疗器械类产品,请先查证核实企业经营资质和医疗器械产品注册证情况。

    图标文献和实验
    该产品被引用文献

     

    1.) Yang YC, Fu HC, Wu CY, Wei KT, Huang KE, Kang HY. (2013) 'Androgen Receptor Accelerates Premature Senescence of Human Dermal Papilla Cells in Association with DNA Damage.'

    2.) Yang YC, Fu HC, Wu CY, Wei KT, Huang KE, Kang HY. (2013) "Androgen Receptor Accelerates Premature Senescence of Human Dermal Papilla Cells in Association with DNA Damage." PLOS ONE. 8: e79434.

    相关实验
    • 人皮肤角质形成细胞的分离与原代无血清培养

      人皮肤角质形成细胞的分离与原代无血清培养.pdf

    • 角质形成细胞的原代培养方法

      。 5. 角质形成细胞使用5ml完全培养基轻柔的吹打成悬液,并使用血细胞计数器计算角质形成细胞浓度。原代细胞大约3×10 6 放入75cm 2 组织培养瓶中,并加入15ml完全培养基。 细胞培养 :松弛的瓶盖,36°C ± 2°C,5% CO 2 的潮湿空气中。 6. 角质形成 细胞培养 液约每2~3天更换一次。 7. 由于原代角质形成细胞在供者之间

    • Millipore独家推出表皮角质形成细胞的3D培养基

      基无法满足的。新的3D培养基配方独特,能同时满足3D模型的增殖和分化。 CELLnTEC新的3D表皮角质形成细胞培养基是根据CELLnTEC的原代角质形成细胞特别优化的,与Millipore的Millicell inserts共同使用,能为3D体外皮肤模型创造出极佳的实验环境,代表了细胞培养性能的新水平,同时也非常便利和经济。 Millipore从一个高品质过滤产品和服务的公司逐步发展成为工具和服务的领先供应商,并成为生命科学用户精选的重要合作伙伴。我们通过研发投资,有机增长

    图标技术资料

    暂无技术资料 索取技术资料

    同类产品报价

    产品名称
    产品价格
    公司名称
    报价日期
    ¥1600
    上海酶研生物科技有限公司
    2025年08月01日询价
    ¥1600
    博辉生物科技(广州)有限公司
    2025年08月01日询价
    ¥1000
    武汉赛奥斯生物科技有限公司
    2025年12月16日询价
    询价
    上海柯雷生物科技有限公司
    2025年07月12日询价
    ¥100
    北京百奥创新科技有限公司
    2025年07月11日询价
    文献支持
    进口原代角质细胞培养基
    ¥1600