Immuno 可拆分透明模块
Immuno 可拆分透明模块
Actual product may vary
Immuno 可拆分透明模块
Immuno 可拆分透明模块
Immuno 可拆分透明模块
Immuno 可拆分透明模块
Immuno 可拆分透明模块
Thermo Scientific™

Immuno 可拆分透明模块

从 4 种表面以及多种孔和配置 Immuno 可拆分模块中选择,为特定测定提供理想的产品选择。
Have Questions?
更改视图buttonViewtableView
货号表面处理孔形每架数量产品类型
446639MaxiSorpU 形10微孔板联排
446442PolySorp圆形5单条可拆
446469MaxiSorp圆形10单条可拆
446477PolySorpU 形10框架
446490MultiSorp圆形10框架
448496PolySorpC10微孔板联排
448526MaxiSorp圆形10微孔板联排
473539PolySorp圆形5微孔板联排
473768MaxiSorp圆形5单条可拆
95029390通用结合 (UB)圆形50微孔板联排
货号 446639
价格(CNY)
-
申请报价
表面处理:
MaxiSorp
孔形:
U 形
每架数量:
10
产品类型:
微孔板联排

使用 Thermo Scientific™ Immuno 可拆透明酶标板可从 4 个表面以及多个孔和配置中进行选择,提供了可靠性,孔间可重复性,以及对于特殊分析的产品的理想选择。

  • 独立模块,易于处理
对内部研究使用限制的免责声明:关于买方仅可将产品用于内部研究的任何限制事项并不适用于与此声明相关的网页上的产品。
规格
结合属性亲水
转折点可拆分联排管
认证级
描述高光学质量,结果可靠
检测方法比色法
适用于(应用)用于抗体夹心检测
每箱数量60
每架数量10
包装10 包,60 箱
板封闭
产品类型微孔板联排
靶标分子抗体(糖蛋白)
工作容积(公制)250 μL
颜色透明
产品规格单条可拆
材质聚苯乙烯
孔数量96
表面处理MaxiSorp
孔容积(公制)320 μL
孔形U 形
Unit SizeCase of 60

常见问题解答 (FAQ)

What length of peptide is ideal for binding to the Thermo Scientific MaxiSorp surface? What are the detection limitations?

We have tested and found that a 3 amino acid peptide (Pro, Leu, Gly) cannot be detected when passively adsorbed on the MaxiSorp surface. However, this peptide can be detected when covalently immobilized using CovaLink NH Modules and CovaLink NH2 Modules and Plates. Using covalent immobilization of small peptide residues, you can typically obtain a better orientation of the molecule and reduced problems with antibody recognition of the peptide due to masking of the epitope. We have discovered that a 7 amino acid peptide from the MHC Class II antigen can be detected when adsorbed on the MaxiSorp surface. We state that the detection limitation using the MaxiSorp surface is between 3 and 7 amino acid residues.
One additional note is that detection is contingent upon the orientation of the peptide when immobilized. If the active site is inactivated or hidden at the site facing the solid phase, no detection signal is observed.

Can I bind either single- or double-stranded DNA to the Thermo Scientific MaxiSorp surface?

Single-stranded DNA can be adsorbed to our MaxiSorp surface using approximately 10 µg ssDNA per mL PBS, pH 8.2, although the stability is uncertain. Based on our experience, ssDNA immobilized on the MaxiSorp surface is so loosely bound that it can be removed by stringent washing.
Double-stranded DNA will not bind to the MaxiSorp surface. DNA, however, can be covalently bound to Nunc NucleoLink Strips.

Are your Thermo Scientific 8-Well Strip Caps for Immuno Standard Modules compatible with all Nunc MicroWell 96-Well Microplates and Nunc Immuno 96-Well Plates?

Our Thermo Scientific 8-Well Strip Caps for Immuno Standard Modules were designed to provide a positive seal for flat and round bottom wells of our Nunc MicroWell 96-Well Microplates and Nunc Immuno 96-Well Plates.
8-Well Strip Caps for Immuno Standard Modules are not compatible with C or V bottom wells of the Nunc Microwell 96-Well Microplates and Nunc Immuno 96-Well Plates.

Are your Thermo Scientific 8-Well Strip Caps for Immuno Standard Modules compatible with LockWell modules?

Due to the locking feature design of the LockWell modules, the 8-Well Strip Caps for Immuno Standard Modules are not compatible with, and will not seal, the LockWell Modules.

For Nunc Immuno plates and modules, what are the advantages of one well geometry type over another? Which types should I use for various applications?

The following list describes the geometries of wells available for Nunc Immuno-plates and modules:
- Flat bottom (F): Allows maximum transmission of light. These plates can be read on a monochromatic reader.
- Round bottom (U): This geometry optimizes washing and coating. These plates can be read using a dual wavelength reader.
- "C" bottom (C): This design of the well is a combination of both flat and round bottoms. Basically, it is a flat bottomed well with curved edges at the bottom. These plates also can be read using a monochromatic reader combining optimal reading and washing.
- StarWell: These wells have a modified "C" shape geometry with eight fins strategically placed at the bottom. This feature increases surface area, allowing more molecules to become immobilized which reduces incubation times.