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Trappc9,NIBP Polyclonal antibody

Trappc9,NIBP Polyclonal Antibody for WB, ELISA
Cat No. 20287-1-AP

Host / Isotype

Rabbit / IgG

Reactivity

human, mouse, rat

Applications

WB, ELISA

Trappc9, Trafficking protein particle complex subunit 9, NIK- and IKBKB-binding protein, Nibp, mKIAA1882

Formulation:  PBS and Azide
PBS and Azide
Conjugate:  Unconjugated
Unconjugated
Size/Concentration: 

-/ -


ご購入について

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国内在庫・納期について

約2万点のプロテインテック製品をコスモバイオ社物流センター(国内)に在庫しています。国内在庫の有無はコスモバイオ社ホームページの「品番検索」でカタログ番号を検索して確認できます。


保証・サポートについて

テクニカルサポートまたはご購入後1年間の交換/補填対応を承ります。詳細はこちらをご覧ください。


Tested Applications

Positive WB detected inmouse skeletal muscle tissue, MCF-7 cells

Recommended dilution

ApplicationDilution
Western Blot (WB)WB : 1:500-1:2000
It is recommended that this reagent should be titrated in each testing system to obtain optimal results.
Sample-dependent, Check data in validation data gallery.

Published Applications

WBSee 1 publications below

Product Information

20287-1-AP targets Trappc9,NIBP in WB, ELISA applications and shows reactivity with human, mouse, rat samples.

Tested Reactivity human, mouse, rat
Cited Reactivityrat
Host / Isotype Rabbit / IgG
Class Polyclonal
Type Antibody
Immunogen Trappc9,NIBP fusion protein Ag14017 相同性解析による交差性が予測される生物種
Full Name trafficking protein particle complex 9
Calculated molecular weight 129/250/128 kDa
Observed molecular weight 130-139 kDa
GenBank accession numberBC070463
Gene Symbol NIBP/Trappc9
Gene ID (NCBI) 76510
RRIDAB_11183047
Conjugate Unconjugated
Form Liquid
Purification MethodAntigen affinity purification
UNIPROT IDQ3U0M1
Storage Buffer PBS with 0.02% sodium azide and 50% glycerol , pH 7.3
Storage ConditionsStore at -20°C. Stable for one year after shipment. Aliquoting is unnecessary for -20oC storage.

Protocols

Product Specific Protocols
WB protocol for Trappc9,NIBP antibody 20287-1-APDownload protocol
Standard Protocols
Click here to view our Standard Protocols

Publications

SpeciesApplicationTitle
ratWB

Stem Cell Res Ther

Epidermal stem cells maintain stemness via a biomimetic micro/nanofiber scaffold that promotes wound healing by activating the Notch signaling pathway.

Authors - Zhixiao Lin
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