LanthaScreen™ Tb 标记的抗小鼠抗体试剂盒
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Invitrogen™

LanthaScreen™ Tb 标记的抗小鼠抗体试剂盒

为便于围绕多个靶标类别和检测形式进行内部测定开发,在 LanthaScreen™ 检测试剂工具箱中提供了 Tb 标记的物种特异性二抗。Tb 标记的二抗以低纳摩尔表观 Kd 与相应物种的 IgG了解更多信息
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货号数量
PV376525 μg
PV37671 mg
货号 PV3765
价格(CNY)
17,891.00
Each
添加至购物车
数量:
25 μg
价格(CNY)
17,891.00
Each
添加至购物车
为便于围绕多个靶标类别和检测形式进行内部测定开发,在 LanthaScreen™ 检测试剂工具箱中提供了 Tb 标记的物种特异性二抗。Tb 标记的二抗以低纳摩尔表观 Kd 与相应物种的 IgG 结合,并显示与其他物种的 IgG 的交叉反应性可忽略不计。各 Tb 标记的抗物种抗体均与作为阳性对照品的相应荧光素标记的 IgG 一起提供。

在使用 Tb 标记的抗体通用试剂的激酶测定中,未标记抗磷酸肽一抗,通过添加 Tb 标记的二抗进行检测步骤。此方法可应用于其他靶标类别和检测形式。
仅供科研使用。不可用于诊断程序。
规格
数量25 μg
反应性小鼠
运输条件干冰
偶联物镧系元素螯合物,铽 (Tb)
Unit SizeEach
内容与储存
在冷冻冰箱(-5 至 -30°C)中储存。

常见问题解答 (FAQ)

How does the LanthaScreen technology compare to other TR-FRET assay formats?

We performed a comparison between the LanthaScreen assay and other commercially available TR-FRET assays from 2 different suppliers for the PKC kinase target. Our data revealed that the assays performed comparably, but that the LanthaScreen assay was simpler to optimize and contained fewer components that required optimization. The LanthaScreen assay is a two component system, whereas the other assay formats utilize a trimolecular mechanism which is more time consuming to optimize and has added costs.

For my kinase assay, can I pre-mix the Tb-Ab and EDTA so that I can stop the kinase assay and begin detection with a single reagent addition?

Yes, this is possible depending on the concentrations of reagents used and the time for which they are mixed. We recommend developing and optimizing the assay by using separate reagent additions, because this method will work under the widest range of conditions. Once the assay is optimized, the performance of the assay using pre-mixed antibody and EDTA can be evaluated. We have successfully developed robust assays in which the antibody and EDTA were pre-mixed and then stored overnight at 4 degrees C prior to use the following day. A loss of signal intensity was observed in this case, however, by using the ratiometric readout, this effect was minimal.

Are the LanthaScreen reagents stable to interference from Mg2+, Mn2+, and EDTA?

The chelate is completely stable to Mg2+. The amount of Mn2+ or EDTA that the chelate can tolerate depends largely on how long they are mixed together and the combination of additives used in the reaction. If a reaction requires either Mg2+ or Mn2+ for activation, it is best to stop the reaction by adding an equimolar amount (or slight excess) of EDTA to chelate the metal ions present. This will then essentially eliminate any interference on the terbium chelate by EDTA or Mn2+. Regardless, when LanthaScreen assays are performed using a ratiometric readout (division of the acceptor signal by the donor signal), any interference caused by Mn2+ or EDTA is largely cancelled out.

What is the optimal and/or maximum distance for a Tb-fluorescein pair?

The Förster radius, the distance at which energy transfer efficiency is half-maximal, is around 50-angstroms for the terbiumÆ fluorescein pair. However, the Förster radius does not give a complete indication of energy transfer efficiency when using long lifetime fluorophores such as terbium chelates. When using terbium chelates, energy transfer efficiency is determined by the distance of closest approach between the donor and acceptor during the excited state lifetime of the donor. In many assay systems, such as those designed using antibodies or peptides, there is a large degree of conformational freedom that allows the donor and acceptor to approach one another, effectively enhancing the FRET signal. Additionally, it is important to note that as the donor/acceptor pair approach one another and the efficiency of energy transfer increases, the fluorescent lifetime decreases to a comparable extent. From a practical standpoint, this means that when energy transfer is extremely efficient, FRET cannot be measured in time-resolved mode (because the energy transfer is complete before the measurement is made). This is another reason why TR-FRET assays based around terbium-labeled antibodies or streptavidin perform so well, because there exist a range of donor/acceptor distances, several of which are optimal for measuring FRET.

How many LanthaScreen assays can I run with a given amount of substrate?

It varies, depending on the concentration of substrate used in the assay. But in general, for the peptide substrates, 1 mg of peptide will run approximately 250,000 wells (10 µL reaction, 200 nM peptide). For Poly GT or GAT, the 1 mL of 30 µM size we sell is approximately 1 mg. With these substrates, 1 mL of 30 µM will run approximately 16,700 wells (10 µL reaction, 200 µM substrate).

20 nmol of our physiological protein substrates is sufficient for approximately 10,000 wells (10 µL reaction, 200 µM substrate).