Y04C-02-5PK
CellASIC ONIX单倍体酵母细胞培养板(4室,3.5-5微米)
The Y04 plates for Haploid Yeast Cells utilize a microfabricated silicone ceiling with a height similar to yeast cells to restrict their growth in a single focal plane & maintaining x,y position over time.
别名:
Haploid Yeast Cell Plate, Haploid Yeast Plate, ONIX Yeast Plate
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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 3.5–5.0 μm
運輸包裝
ambient
一般說明
用于单倍体酵母细胞的 Y04 板使用高度类似于酵母细胞的微型硅胶顶板,以限制它们在单个焦平面中的生长,& 随时间的推移保持 x,y 位置。
應用
单倍体酵母菌细胞用CellASIC® ONIX 板(4 腔室、3.5-5 微米)已被用于活细胞显微镜学和栗酒裂殖酵母细胞的分析。它也被用于酿酒酵母的活细胞成像。该单倍体酵母菌细胞用CellASIC ONIX板(4 腔室、3.5-5 微米)也适用于:
- 酵母细胞的时移分析(time-lapse analysis)
- 长期连续灌注实验
- 溶液交换实验(诱导、抑制、给药等)
- 比较最多4种不同类型细胞或平行暴露条件(培养基成分)
- 细胞分裂追踪(追踪母代/子代细胞)
- 温度和气体环境控制(温度变化、缺氧条件等)
特點和優勢
- 兼容 CellASIC® ONIX2 微流控系统和 ONIX2 歧管
- 通过调换溶液进行基于灌注的长期活细胞分析
- 该板为细胞提供受控的动态微环境。
法律資訊
CELLASIC is a registered trademark of Merck KGaA, Darmstadt, Germany
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
Distinct interactions select and maintain a specific cell fate.
Molecular Cell, Vol. 43, Issue 4, 528-539 (2011)
Spinning-disk confocal microscopy of yeast.
Test, Volume 470, 581-602 (2010)
Nature cell biology, 22(2), 159-166 (2020-02-08)
Nuclear pore complexes (NPCs) are very large proteinaceous assemblies that consist of more than 500 individual proteins1,2. NPCs are essential for nucleocytoplasmic transport of different cellular components, and disruption of the integrity of NPCs has been linked to aging, cancer
Oscillations in CDC14 release and sequestration reveal a circuit underlying mitotic exit.
The Journal of cell biology, vol. 190 no. 2, 209-222 (2010)
Dynamic analysis of cytosolic glucose and ATP levels in yeast using optical sensors.
The Biochemical Journal, 432(2), 399-406 (2010)
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.
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