M04S-03-5PK
CellASIC ONIX切换板哺乳动物细胞(4腔室)
The M04 switching plates enable continuous perfusion culture for live cell analysis. Laminar flow provides rapid & uniform solution exchange for maximum cell health. The glass coverslide bottom surface ensures the highest resolution optical viewing.
别名:
CellASIC ONIX Plate, Mammalian Cell Plate, ONIX Switching Plate
About This Item
推荐产品
材料
PMMA
glass
polycarbonate
polydimethylsiloxane (PDMS)
製造商/商標名
CellASIC® ONIX
寬度 × 長度 × 高度
85.48 mm × 127.76 mm × 14.35 mm
相容性
for use with cells sized up to 50.0 μm
運輸包裝
ambient
一般說明
應用
- 活细胞成像以研究phi-particle对动力蛋白的自动抑制以及动力蛋白激活蛋白活化动力蛋白的贡献。
- 通过荧光显微镜技术进行fcSAgA结合和免疫球蛋白M表面聚集的活细胞成像
- 多重表皮生长因子(EGF)脉冲实验
- 粘附细胞的延时分析(time-lapse analysis)
- 长期连续灌注实验(通常3天)
- 溶液交换实验(诱导、抑制、给药)
- 培养室内活细胞的自动免疫染色和按需固定
- 平行比较四种不同细胞类型或暴露条件(培养基成分)、温度和气体气氛控制(温度变化、缺氧条件等)
特點和優勢
- 兼容CellASIC® ONIX2 微流体系统和ONIX2 Manifolds
- 可以用溶液切换进行基于灌注的长期活细胞分析
- 板为2D和3D细胞培养物提供受控的动态微环境。
法律資訊
儲存類別代碼
12 - Non Combustible Liquids
水污染物質分類(WGK)
nwg
閃點(°F)
Not applicable
閃點(°C)
Not applicable
商品
Application note on how the CellASIC® ONIX2 microfluidic system can be used to analyze caspase-3 mediated apoptosis/cell death and cellular hypoxia in live immune and cancer cell lines.
相关内容
Convert your microscope to a live cell imaging system – the CellASIC® ONIX2 system allows precise manipulation of the cell culture environment for dynamic live cell imaging and analysis using mammalian, yeast, and bacterial cells.
Convert your microscope to a live cell imaging system – the CellASIC® ONIX2 system allows precise manipulation of the cell culture environment for dynamic live cell imaging and analysis using mammalian, yeast, and bacterial cells.
Convert your microscope to a live cell imaging system – the CellASIC® ONIX2 system allows precise manipulation of the cell culture environment for dynamic live cell imaging and analysis using mammalian, yeast, and bacterial cells.
Convert your microscope to a live cell imaging system – the CellASIC® ONIX2 system allows precise manipulation of the cell culture environment for dynamic live cell imaging and analysis using mammalian, yeast, and bacterial cells.
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