UltraPure™ Formamide
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Invitrogen™

UltraPure™ Formamide

UltraPure™ホルムアミドは、シーケンシングゲル電気泳動、電子顕微鏡、ハイブリダイゼーション用の核酸の変性に一般的に使用されます。UltraPure™ホルムアミドは、室温で液体であり、減圧蒸留され、乾燥窒素下で充填されています。購入日から3カ月以内に多くの用途に使用できます。ホルムアミドの分解産物は核酸を分解するため詳細を見る
製品番号(カタログ番号)数量
15515026500 g
製品番号(カタログ番号) 15515026
価格(JPY)
17,600
線上優惠
Ends: 27-Mar-2026
25,200
割引額 7,600 (30%)
Each
お問い合わせください ›
数量:
500 g
UltraPure™ホルムアミドは、シーケンシングゲル電気泳動、電子顕微鏡、ハイブリダイゼーション用の核酸の変性に一般的に使用されます。UltraPure™ホルムアミドは、室温で液体であり、減圧蒸留され、乾燥窒素下で充填されています。購入日から3カ月以内に多くの用途に使用できます。ホルムアミドの分解産物は核酸を分解するため、高感度アプリケーションでは、使用直前に混合床イオン交換樹脂で処理してホルムアミドを脱イオンする必要があります。
研究用にのみ使用できます。診断用には使用いただけません。
仕様
使用対象(アプリケーション)細胞イメージング/核酸ゲル電気泳動&ブロッティング
製品ラインUltraPure
製品タイプホルムアミド
純度DNase-Free, RNase-Free
数量500 g
出荷条件室温またはウェットアイスでの出荷
形状Liquid
Unit SizeEach
組成および保存条件
冷蔵庫(2~8℃)に保存。

よくあるご質問(FAQ)

Can a sample buffer with formamide be used with the Invitrogen TBE-Urea system?

There are many sample buffer formulations used, however we have found a distinct difference in the band appearance depending on the sample buffer composition. After evaluating urea, formamide, and various buffer systems, we found that the sharpest, flattest bands were obtained with a urea, Ficoll, and TBE buffer solution. Sample buffers made with formamide resulted in fuzzy, indistinct bands.

Find additional tips, troubleshooting help, and resources within our Nucleic Acid Purification and Analysis Support Center.

Is formamide (Cat. No. 15515-026) supplied as a liquid? When is deionization required, and can you provide a protocol?

Yes, formamide is supplied as a liquid even though it is sold by weight.

It is appropriate to use out of the bottle for most applications (hybridization buffer, loading buffers for sequencing gels, and formaldehyde-containing RNA gels) if less than one year old and stored properly (-20 degrees C). (If formamide smells like ammonia, it is probably breaking down and should not be used.) However, we have seen that in a protocol we have for running RNA gels without formaldehyde in the gel, freshly deionized formamide is essential for preparation of the loading buffer. That protocol as well as the protocol for deionizing the formamide follows:

These reagents are used in electrophoresis of RNA in agarose gels in 1X MOPS EDTA buffer. (Note: no formaldehyde is used in the gel.) The sample is prepared in the sample buffer (1.5 to 3 µL sample mixed with sample buffer). Heat the RNA in sample buffer for 10 min at 65 degrees C. Place on ice immediately then load gel.

10X MOPS EDTA (10X ME)

(1) Measure out 700 mL DEPC-treated water in a DEPC-treated 1-liter graduated cylinder and place in a DEPC-treated 1-liter beaker.
(2) Place beaker on stir plate and begin stirring with a DEPC-treated stir bar.
(3) Add 104.65 g MOPS to beaker. Weigh out MOPS using a sterile-flamed spatula from an unopened bottle MOPS or one set aside for RNA only. Dissolve by stirring.
(4) Add 40 mL 0.25 M EDTA to solution. Note: the EDTA solution should be made with DEPC-treated processed water.
(5) Adjust pH to 7.0 by adding 10 N NaOH (~20 mL)
(6) Bring up to 1 liter volume with DEPC-treated water.
(7) Filter solution using a 0.2 µm Nalgene filter unit.
(8) Store at 4 degrees C for six months in a DEPC-treated glass bottle. (This prevents solution from yellowing.) NOTE: The presence of yellow color does not affect the performance of the buffer.

Formamide Deionization protocol:
1. Add 1 g mixed bed, ion exchange resin for every 10 ml of formamide. Suitable ion exchange resins include BioRad AG501-X8 and Fisher Resin 1-300.
2. Stir for 30 to 60 min @ RT.
3. Filter through Whatman No. 1 filter paper.
4. Dispense into units of use and store at -20°C

引用および参考文献 (1)

引用および参考文献
Abstract
High-sensitivity detection of DNA hybridization on microarrays using resonance light scattering.
Authors: Bao Paul; Frutos Anthony G; Greef Charles; Lahiri Joydeep; Muller Uwe; Peterson Todd C; Warden Laurence; Xie Xinying;
Journal:Anal Chem
PubMed ID:11985309
The application of resonance light scattering (RLS) particles for high-sensitivity detection of DNA hybridization on cDNA microarrays is demonstrated. Arrays composed of approximately 2000 human genes ( ... More