Biodyne™ A Nylon Membrane, 0.45 μm, 8 cm x 12 cm
Biodyne™ A Nylon Membrane, 0.45 μm, 8 cm x 12 cm
Thermo Scientific™

Biodyne™ A Nylon Membrane, 0.45 μm, 8 cm x 12 cm

Thermo Scientific Biodyne A Nylon Membranes are sheets of unmodified nylon that provide excellent binding characteristics for nucleic acid transfer,深入閱讀
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產品號碼Quantity
7701525 sheets
產品號碼 77015
價格 (TWD)
19,950.00
Online offer
Ends: 31-Dec-2025
28,500.00
您節省 8,550.00 (30%)
Each
新增至購物車
Quantity:
25 sheets
價格 (TWD)
19,950.00
Online offer
Ends: 31-Dec-2025
28,500.00
您節省 8,550.00 (30%)
Each
新增至購物車
Thermo Scientific Biodyne A Nylon Membranes are sheets of unmodified nylon that provide excellent binding characteristics for nucleic acid transfer, blotting and detection methods.

Features of Biodyne A Nylon Membranes:

Versatile and durable—achieve strong DNA binding by baking or UV-crosslinking without damaging the membrane
Easy to use—pre-cut 8 x 12 cm sheets are the ideal size for standard mini-gel transfers and microplate dot-blots
High signal-to-noise ratio—lower background than nitrocellulose and most other nylon transfer membranes

Biodyne A Nylon Membrane is manufactured with a matrix pore size of 0.4 micron, and is supplied in packages of 8 x 12 cm sheets. It contains both negatively and positively charged groups, enabling it to bind many kinds of macromolecules. The membrane is resistant to heat and solvents and will not shrink, crack or tear.

Properties of Biodyne A Nylon Membrane:
• Composition: unmodified Nylon 66
• Surface: 50% amine and 50% carboxyl groups, pI 6.5
• Properties: provides excellent resolution, high sensitivity and extremely low background

More Product Data
Transfer EMSA gels using the Pierce G2 Fast Blotter

Related Products
Biodyne™ B Nylon Membrane, 0.45 μm, 8 cm x 12 cm
For Research Use Only. Not for use in diagnostic procedures.
規格
Quantity25 sheets
Dimensions (LxW)12 cm x 8 cm
FormatSheet
Length (Metric)12 cm
MaterialNylon
Pore Size0.45 μm
Product LineBiodyne
Width (Metric)8 cm
Unit SizeEach
內容物與存放
Note: Always wear gloves when handling membranes because oils from fingers may prevent proper wetting. Also, proteins and other contaminants from hands may bind to the membranes and cause background.