ULTRAhyb™ Ultrasensitive Hybridization Buffer
ULTRAhyb™ Ultrasensitive Hybridization Buffer
Invitrogen™

ULTRAhyb™ Ultrasensitive Hybridization Buffer

Ambion™ ULTRAhyb™ には、ハイブリダイゼーション促進剤とブロッキング剤の独自の混合物が含まれており、ハイブリダイゼーションレベルを大幅に向上させるため、可視化に数日かかっていたシグナルが数時間で現れるようになりました。125 mLのボトル1本で提供されます。•あらゆるブロットハイブリダイゼーション実験の感度の向上• ランダムプライムDNAプローブの感度が最大100倍詳細を見る
製品番号(カタログ番号)数量
AM86694 x 125 mL
AM8670125 mL
製品番号(カタログ番号) AM8669
価格(JPY)
66,000
Online offer
Ends: 26-Dec-2025
110,100
割引額 44,100 (40%)
Each
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数量:
4 x 125 mL
一括またはカスタム形式をリクエストする
Ambion™ ULTRAhyb™ には、ハイブリダイゼーション促進剤とブロッキング剤の独自の混合物が含まれており、ハイブリダイゼーションレベルを大幅に向上させるため、可視化に数日かかっていたシグナルが数時間で現れるようになりました。125 mLのボトル1本で提供されます。

•あらゆるブロットハイブリダイゼーション実験の感度の向上
• ランダムプライムDNAプローブの感度が最大100倍、RNAプローブの感度が20倍向上します
• 1ブロットに使用するプローブを低減
• ハイブリダイゼーション時間をわずか2時間に短縮

感度が最大100倍向上し、ハイブリダイゼーションにかかる時間をわずか2時間に短縮
標準ハイブリダイゼーションバッファーを使用すると、プローブにハイブリダイズするのはブロット上のターゲット分子のわずか1–5%であるため、ブロットは比較的核酸解析に影響を与えません(Vernier et al.(1996) Anal Biochem 235:11-19).ULTRAhyb™ 超高感度ハイブリダイゼーションバッファーを使用すると、ハイブリダイゼーション反応が完了に近づくため、検出できる分子はわずか10,000個になります。

あらゆるハイブリダイゼーションプロトコル用
ULTRAhyb™は、ノーザン、サザン、およびドット/スロットブロットで、同位体および非同位体で標識されたRNAおよびDNAプローブに適合しています。50%ホルムアミドを含有しており、正荷電膜に対応しています(アクセサリ製品を参照)。ULTRAhyb™に必要な非同位体DNAプローブは、標準的なハイブリダイゼーションバッファーより も10–100倍少ないため、単一の標識反応でより多くのハイブリダイゼーションを実施できます。

アクセサリ製品:
Brightstar™ -プラス正荷電ナイロン膜(SKU番号 AM10100、AM10102、AM10104)は、ULTRAhyb™と使用することをお勧めします。NorthernMax™ 洗浄バッファー(SKU番号AM8673およびAM8674)は、ULTRAhyb™との併用に最適です。ULTRAhyb™-オリゴ(SKU番号AM8663)は、オリゴヌクレオチドプローブ用に特別に調製されています。
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
バッファーハイブリダイゼーションバッファー
製品タイプ超高感度ハイブリダイゼーションバッファー
数量4 x 125 mL
出荷条件室温
Unit SizeEach
組成および保存条件
4℃で保存。

よくあるご質問(FAQ)

With the ULTRAhyb Ultrasensitive Hybridization Buffer, why am I getting cross-hybridization?

The extreme sensitivity of ULTRAhyb Ultrasensitive Hybridization Buffer may detect RNAs that are not the expected full-length target. Although much of the probe binding can be legitimate (hybridization to alternatively spliced, partially degraded, or closely related mRNAs), some might be hybridization to RNAs with only partial homology to the target. We recommend using a more specific probe if possible. Here are other possible causes for cross-hybridization and solutions offered:
- The hybridization stringency may have been inadequate. Increasing the hybridization and wash temperature 3-10 degrees C can greatly reduce the levels of non-target hybridization. Simply reducing the amount of time used to expose the blot to film might also alleviate the problem.

- The probes might have contained non-target sequence. The presence of vector sequence within the probe can cause hybridization to RNAs sharing sequence homology with the vector. If the probe template contains vector sequence, cleave it by restriction digestion and then gel purify the sequence of interest before labeling.

- Too much non-isotopic probe may have been present. Non-isotopic probes can have problems with cross-hybridization, especially when they are used at 42 degrees C. We have observed that lowering the probe concentration 10 to 100-fold in the hybridization reaction will greatly reduce non-specific hybridization while having little if any impact on target-specific hybridization.

With the ULTRAhyb Ultrasensitive Hybridization Buffer, why am I getting low signal on my blot?

Here are possible causes and solutions:
- Not enough probe (or label) was used. Using less than the recommended amounts of probe, using low specific activity probe, or using less than full-length probes can lead to low signal. We recommend checking each of these factors if low sensitivity is observed.

- The hybridization and washes may have been too stringent. We recommend lowering the hybridization temperature or the wash time and temperature. This may be especially helpful for oligonucleotide probes. Note that reducing stringency can lead to higher background and cross-hybridization.

With the ULTRAhyb Ultrasensitive Hybridization Buffer, why am I getting high background on my blot?

Here are possible causes and solutions:
- There could be precipitates in the ULTRAhyb Ultrasensitive Hybridization Buffer. Inadequate solubilization of the hybridization buffer is one of the primary causes of high background. We recommend increasing the amount of time used to preheat the buffer and ensure that there is no precipitate in the buffer before adding it to the blot. ULTRAhyb Ultrasensitive Hybridization Buffer may start to precipitate at temperatures below 25-30 degrees C.

- Prehybridization may have been inadequate. We recommend increasing the blot prehybridization time from 30 min to 1 hr.

- The probe may have been too old. We recommend using fresh probe. Isotopic probes that are several days old tend to produce higher background than freshly prepared probes. This is attributed to probe size; radiolytic decay reduces the size of the probe molecules over time.

- Unincorporated radionucleotides may have been present. Although we don't ordinarily recommend removing free nucleotides, we have occasionally observed high background from unincorporated label. We recommend removing free label by precipitation (0.5 M NH4OAc and 2 volumes EtOH) or with a spin column designed for this purpose.

- Hybridization stringency may have been inadequate. We recommend the following:
-If hybridizing at 42 degrees C, try raising the hybridization temperature to 4 degrees C, or even to 55 degrees C.
-If hybridizing at 68 degrees C, hybridization stringency is unlikely to be causing background. In our experience, raising the hybridization temperature above 68 degrees C does not decrease background.

- Ionic interactions could have led to high background. If the background signal makes the blot look uniformly dark, we recommned adding a high salt wash to minimize ionic interactions between the probe and the hybridization membrane. To do this, after the ordinary washes, add a 2 x 15 min wash in 5X SSC or SSPE, 0.5% SDS at 68 degrees C for RNA probes, or at 60 degrees C for DNA probes.

- Washing may have been inadequate. We recommend the following:
-Double check that your wash buffers contain SDS. Wash buffers lacking SDS are not recommended for use with ULTRAhyb Ultrasensitive Hybridization Buffer. Doubling the wash times and/or washing at higher temperatures can reduce background. Wash temperatures can be raised from 42 degrees C to 55 degrees C or 60 degrees C.
-If you are washing at 68 degrees C, inadequate washing is probably not causing your high background. In our experience, raising wash temperatures above 68 degrees C does not decrease background.