Nunc™ TripleFlask Treated Cell Culture Flasks
Nunc™ TripleFlask Treated Cell Culture Flasks
Thermo Scientific™

Nunc™ TripleFlask Treated Cell Culture Flasks

この細胞培養用処理済 TripleFlasks によって、薬物スクリーニングやスケールアップなどの大細胞量アプリケーションを実現できます。
製品番号(カタログ番号)表面処理キャップタイプバーコード
132867細胞培養処理済み固体不可
132913細胞培養処理済みフィルター不可
132920Nunclon Deltaフィルター
製品番号(カタログ番号) 132867
価格(JPY)
86,800
Case of 32
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表面処理:
細胞培養処理済み
キャップタイプ:
固体
バーコード:
不可

Thermo Scientific™ Nunc™ TripleFlask™細胞培養用処理済みフラスコは、標準型のフラスコのフットプリント内で細胞培養を増殖し、500 cm2の総培養面積を実現します。3 層の平行層と、自動システムにおいて効率的な使用が可能なストレートネックデザインにより、大きな総培養面積を提供します。TripleFlaskには特許取得済みの細胞培養表面処理であるNunclon™ Delta処理が施されており、幅広い細胞種を最大限に接着させます。

3層の増殖表面により、500 cm2の総培養面積が標準型のNunc 175 cm2フラスコと同一のフットプリントで得られます。

  • 推奨使用容量は200 mLです。
  • 単層の接着細胞培養を促進します。
  • Code 128 バーコード付きもご用意しています。
  • ケースごとに、単層形成、クローニング効率、細胞無毒性、パイロジェン非含有、無菌性などの Nunclon Delta 保証書が付属します。
保証:90日間

内部研究への使用制限に関する免責条項:この条件に関連するウェブページに掲載されている製品については、購入者が社内研究目的にのみ使用することを制限するものではありません。
仕様
バーコード不可
キャップタイプ固体
概要細胞培養用処理済みTripleFlask
ネックスタイルストレート
箱あたりの入数32/Cs.
パックあたり入数1 Ea.
製品タイプFlask
形状ストレートネックの標準的なNunc T175と同じ外形寸法
容量(メートル法)使用可能200 mL
底形状平底
培養面積500 cm2
無菌性滅菌済
表面処理細胞培養処理済み
Unit SizeCase of 32

よくあるご質問(FAQ)

What is the difference between the Nunclon Delta surface and a tissue culture (TC) surface from a competitor?

Our Nunclon Delta surface for adherent cells is a standard tissue culture (TC) surface modification that makes the polystyrene surface more hydrophilic. This facilitates maximum adhesion for a broad range of cell types.

The Nunclon Delta surface is Thermo Scientific Nunclon Delta-certified, which is a Thermo Fisher proprietary certification that has a quality standard to help ensure consistency. Every lot of Thermo Scientific Nunclon Delta-certified cell cultureware is tested with Gibco media for:
- Less than 10% growth variation in L929, Hel299 and primary chick embryo cells
- Less than 15% variation colony formation of V79-4 cells

More information and all applicable products can be found in the "Product selection guide for every step of your cell culture workflow" brochure .

Can I use a Nunc Cell Scraper with a Nunc TripleFlask that has Nunclon Delta surface treatment?

The design of the Nunc TripleFlask does not allow for mechanical scraping. However, cells are easily harvested using protein digesting enzymes, such as trypsin, collagenase, and Pronase or by using non-enzymatic dissociation solutions.
The following is a document link regarding culturing techniques for Nunc TripleFlask:
https://assets.thermofisher.com/TFS-Assets/BID/Technical-Notes/culturing-technique-nunc-tripleflask-technical-note.pdf

What is the recommended working volume of Nunc adherent cell culture products?

This depends largely on the cell line and working conditions (considerations include headspace for gas exchange, supplements used, and optimal feeding schedule, among others) but we do offer guidelines for development purposes (0.3 to 0.5 mL per cm2) . Note that these volumes are approximate and may have to be modified for best performance. T25 Flask = 7 mL, T75 Flask = 25 mL, T175 Flask = 55 mL, T225 Flask = 70 mL, 300cm2 Flask = 100 mL, 500 cm2 TripleFlask = 200 mL, 35 mm round culture dish = 3 mL, 60 mm round culture dish = 5 mL, 100 mm round culture dish = 12 mL, 150 mm round culture dish = 35 mL, 4 (rectangular) well Multidish = 5 mL, 8 (rectangular) well Multidish = 3 mL, 4 (round) well Multidish = 1 mL, 6 well Multidish = 3 mL, 12 well Multidish = 2 mL, 24 well Multidish = 1 mL, 48 well Multidish = 0.5 mL.

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.