Nunc™ 细胞培养皿/皮氏培养皿
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Nunc™ 细胞培养皿/皮氏培养皿
Actual product may vary
Nunc™ 细胞培养皿/皮氏培养皿
Nunc™ 细胞培养皿/皮氏培养皿
Thermo Scientific™

Nunc™ 细胞培养皿/皮氏培养皿

通过多种尺寸和样式,体验理想性能。Nunc 细胞培养皿专为满足多种实验需求而设计。
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货号培养面积表面处理带栅格排气口
15034021.5 sq. cm未经处理非网格型带通气孔的盖
1503188.8 sq. cmNunclon Delta非网格型无通气口盖
1530668.8 sq. cmNunclon DeltaNot Gridded带通气孔的盖
1749268.8 sq. cmNunclon Delta带栅格带通气孔的盖
1710998.8 sq. cm未经处理非网格型带通气孔的盖
17488820.8 sq. cm细胞培养非网格型带通气孔的盖
15032621.5 sq. cmNunclon Delta非网格型无通气口盖
15028821.5 sq. cmNunclon DeltaNot Gridded带通气孔的盖
16955821.5 sq. cmNunclon Delta带栅格带通气孔的盖
15035056.7 sq. cmNunclon DeltaNot Gridded带通气孔的盖
17295856.7 sq. cmNunclon DeltaNot Gridded带通气孔的盖
168381145 sq. cmNunclon DeltaNot Gridded带通气孔的盖
17293156.7 sq. cmNunclon DeltaNot Gridded带通气孔的盖
货号 150340
价格(CNY)
5,232.00
Case of 400
添加至购物车
培养面积:
21.5 sq. cm
表面处理:
未经处理
带栅格:
非网格型
排气口:
带通气孔的盖
价格(CNY)
5,232.00
Case of 400
添加至购物车

多种尺寸和样式可满足多种实验需求,体验理想性能。Thermo Scientific™ Nunc 细胞培养皿经过 Nunclon™ Delta 表面处理,这是一种专有的表面修饰技术,可促进多种类型细胞极大程度实现贴壁生长。培养皿使用高质量且光学透明的聚苯乙烯材质制成。

特点:

  • 顶部和底部的堆叠圈使操作更加简便,堆叠更加稳固。
  • 无菌和无热原
  • 可选择有无透气孔进行气体交换
  • 2 x 2 mm 的网格,可用于克隆实验和测定平板效率

订购信息:

174926 和 169558 采用 2 x 2 mm 网格

171099 适用于悬浮细胞培养 - 未经 Nunclon Delta 处理

包括:

认证书可保证用户使用时的生物学性能和产品具有可追溯性。

质保期:90 天

对内部研究使用限制的免责声明:关于买方仅可将产品用于内部研究的任何限制事项并不适用于与此声明相关的网页上的产品。
规格
盖子颜色透明
包括瓶盖包括瓶盖
盖子材料塑料,聚苯乙烯
带栅格非网格型
包括
每箱数量400/Cs.
每架数量10 Pk.
数量10 Pk., 400/Cs.
形状圆形
类型细胞培养皿
排气口带通气孔的盖
工作容积(公制)5 mL
底部形状
容量(公制)5 mL(孔)
颜色清除
培养面积21.5 sq. cm
直径(公制)60 mm
高度(公制)15 mm
材质聚苯乙烯
无菌无菌
表面处理未经处理
孔数1
Unit SizeCase of 400

常见问题解答 (FAQ)

What is Nunclon Delta?

Nunclon Delta refers to our performance-certified surface for culture of adherent cells, available in a variety of common formats (flasks, plates, multiwell dishes). It is tested with at least four cell lines (varies by product and manufacturing location) commonly used in research, and it should work well for most robust cell lines. It does not involve addition of coating reagent, but rather is manufactured by exposure of the molded products to a proprietary energy source, which renders the surface more hydrophilic by means of increasing the concentration of oxygen-containing (e.g. hydroxyl) molecular groups. It is by this hydrophilic property that anchorage-dependent cells are able to attach to the surface and become confluent.

Find additional tips, troubleshooting help, and resources within our Cell Culture Support Center.