NuPAGE™ Tris-Acetate Welcome Pack, 7%
NuPAGE™ Tris-Acetate Welcome Pack, 7%
Invitrogen™

NuPAGE™ Tris-Acetate Welcome Pack, 7%

Das NuPAGE Tris-Acetat Starterpaket enthält alle notwendigen NuPAGE Tris-Acetat Gele, Puffer und Reagenzien für den erstmaligen Einsatz eines Mini-Gel-Tanks.
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KatalognummerWells
EA0355C15-Well
EA0355A10-Well
EA0355B12-Well
Katalognummer EA0355C
Preis (EUR)
972,00
Each
Zum Warenkorb hinzufügen
Wells:
15-Well
Preis (EUR)
972,00
Each
Zum Warenkorb hinzufügen
Das NuPAGE Tris-Acetat-Startpaket enthält alle notwendigen NuPAGE Tris-Acetat-Gele, -Puffer und -Reagenzien für den erstmaligen Einsatz eines Mini-Gel-Tanks. Der Mini-Gel-Tank ist mit allen Invitrogen Novex-, NuPAGE- und Bolt Mini-Gelen kompatibel. Jeder Mini Gel Tank fasst bis zu zwei Gele pro Lauf. Das einzigartige Tank-Design ermöglicht eine praktische parallele Gel-Beladung und eine optimale Anzeige bei der Verwendung. Laufzeiten schwanken je nach Pufferbedingungen und der eingesetzten Stromversorgung.
Das NuPAGE Tris-Acetat Begrüßungspaket enthält:
• Mini-Gel-Tank
• NuPAGE Tris-Acetat Mini-Gele (2 Kartons, 20 Gele)
• NuPAGE Tris-Acetat SDS-Laufpuffer (20X)
• NuPAGE LDS-Probenpuffer (4X)
• NuPAGE Probenreduktionsmittel (10X)
• Vorgefärbter HiMark™ Protein-Standard

Informationen zum Mini-Gel-Tank
Der Mini-Gel-Tank ist mit allen Novex, NuPAGE und Bolt Mini-Gelen kompatibel. Jeder Mini Gel Tank fasst bis zu zwei Gele pro Lauf. Das einzigartige Tank-Design ermöglicht eine praktische parallele Gelbeladung und eine optimale Anzeige bei der Verwendung. Die Laufzeiten können je nach Pufferbedingungen und verwendeter Stromversorgung variieren.

NuPAGE Tris-Acetat-Gele
NuPAGE Tris-Acetat-Proteingele bieten eine hervorragende Trennung von Proteinen mit hoher Molekülmasse. NuPAGE Tris-Acetat-Protein-Gele sind leistungsstarke Polyacrylamidgele, die die Denaturierung oder die nativen Bedingungen des traditionellen Laemmli-Systems simulieren. Die einzigartige Pufferformulierung sorgt während der Elektrophorese für einen niedrigen pH-Wert, was im Vergleich zu herkömmlichen Tris-Glycin SDS-PAGE Gelen zu einer überlegenen Auflösung von Proteinen führt.

Transfer und Nachweis
NuPAGE Tris-Acetat Gele sind mit dem Mini Blot-Modul, Pierce Power Blotter, iBlot 2 Gel-Transfergerät, iBind Western-Gerät und iBind Flex Western-Gerät für einen optimalen Transfer und den Nachweis von Proteinen kompatibel.

For Research Use Only. Not for use in diagnostic procedures.
Specifications
Gel Thickness1,0 mm
ProduktlinieNuPAGE
Menge1 Welcome Pack
VersandbedingungZugelassen für den Versand bei Raumtemperatur und auf Nasseis
Zur Verwendung mit (Geräte)Mini-Gel-Tank
Gelanteil (%)7 %
GelgrößeMini
GeltypTris-Acetat
Trennbereich36 bis 500 kDa
Wells15-Well
Unit SizeEach
Inhalt und Lagerung
• Mini-Gel-Tank
• NuPAGE 7%ige Tris-Acetat Proteingele, 1,0 mm, 15-Well
• NuPAGE Tris-Acetat SDS-Laufpuffer (20X)
• NuPAGE LDS-Probenpuffer (4X)
• NuPAGE Probenreduktionsmittel (10X)
• HiMark Vorgefärbter Proteinstandard

Häufig gestellte Fragen (FAQ)

I used one of your protein standards for a western transfer and noticed that some of the lower-molecular weight protein bands passed through the membrane. How can I resolve this issue?

- Decrease voltage, current or length of transfer time
- Make sure that the methanol concentration in the transfer buffer is proper; use a methanol concentration of 10-20% methanol removes the SDS from SDS-protein complexes and improves the binding of protein to the membrane.
- Make sure that the SDS concentration (if added) in the transfer buffer is proper, don't use more than 0.02-0.04% SDS. Using too much SDS can prevent binding of proteins to the membrane.
- Check the pore size of the membrane and the size of the target protein. Proteins smaller than 10 kDa will easily pass through a 0.45 µm pore size membrane. If proteins smaller than 10 kDa are of interest, it would be better to use a 0.2 µm pore size membrane.

Find additional tips, troubleshooting help, and resources within our Protein Assays and Analysis Support Center.

I used one of your protein standards for a western transfer and noticed that some of the higher-molecular weight bands transferred very poorly to the membrane. Can you offer some tips?

- Increase voltage, current or length of time for transfer
- SDS in the gel and in the SDS-protein complexes promotes elution of the protein from the gels but inhibits binding of the protein to membranes. This inhibition is higher for nitrocellulose than for PVDF. For proteins that are difficult to elute from the gel such as large molecular weight proteins, a small amount of SDS may be added to the transfer buffer to improve transfer. We recommend pre-equilibrating the gel in 2X Transfer buffer (without methanol) containing 0.02-0.04% SDS for 10 minutes before assembling the sandwich and then transferring using 1X transfer buffer containing 10% methanol and 0.01%SDS.
- Methanol removes the SDS from SDS-protein complexes and improves the binding of protein to the membrane, but has some negative effects on the gel itself, leading to a decrease in transfer efficiency. It may cause a reduction in pore size, precipitation of some proteins, and some basic proteins to become positively charged or neutral. Make sure that the methanol concentration in the transfer buffer is not more than 10-20% and that high-quality, analytical grade methanol is used.

Find additional tips, troubleshooting help, and resources within our Protein Assays and Analysis Support Center.

I used one of your pre-stained standards on a Tris-Glycine gel and noticed that the molecular weights of the proteins were different than on a NuPAGE Bis-Tris gel. What is the reason for this?

Pre-stained standards have a dye that is covalently bound to each protein that will result in the standard migrating differently in different buffer systems (i.e., different gels). As a result, using a pre-stained standard for molecular weight estimation will only give the apparent molecular weight of the protein. Pre-stained standards may be used for molecular weight approximation, confirming gel migration and estimating blotting efficiency but for accurate molecular weight estimation, an unstained standard should be used.

Find additional tips, troubleshooting help, and resources within our Protein Assays and Analysis Support Center.

I used one of your protein standards and am seeing some extra bands in the lane. Can you offer some suggestions?

- While loading, take care to make sure that there is no cross-contamination from adjacent sample lanes.
- Make sure that the correct amount of standard is loaded per lane. Loading too much protein can result in extra bands and this is a problem especially with silver-stained gels.
- Improper storage of the standard or repeated freeze/thawing can result in protein degradation.

Find additional tips, troubleshooting help, and resources within our Protein Assays and Analysis Support Center.

I used one of your protein standards and the bands look non-distinct and smeary. What should I do?

Here are some suggestions:

- Make sure that the correct amount of standard is loaded per lane. Loading too much protein can cause smearing and this is a problem especially with silver stained gels.
- Bands will not be as well resolved in low percentage gels. Try using a higher percentage gel.
- If the bands look smeary and non-distinct after a western transfer/detection, this may be due to the antibody being too concentrated. Follow the manufacturer's recommended dilution or determine the optimal antibody concentration by dot-blotting.

Find additional tips, troubleshooting help, and resources within our Protein Assays and Analysis Support Center.