Recombinant Anti-IGF1R Antibody, Rabbit Monoclonal

EliteRmab®, manufactured by recombinant technology
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Recombinant Anti-IGF1R Antibody, Rabbit Monoclonal 产品信息

产品名称
Recombinant Anti-IGF1R Antibody, Rabbit Monoclonal
经验证的应用
FCM,ICC/IF
交叉反应
Reacts with: Human
特异性
Human IGF1R
免疫原
Recombinant Human IGF1R / CD221 protein (Catalog#10164-H08H)
制备方法
This antibody was obtained from a rabbit immunized with purified, recombinant Human IGF1R / CD221 (rh IGF1R / CD221; Catalog#10164-H08H; NP_000866.1; Met1-Asn932).
来源
Monoclonal Rabbit IgG Clone #012
纯化
Protein A
缓冲液
0.2 μm filtered solution in PBS
偶联物
Unconjugated
状态
Liquid
运输方式
This antibody is shipped as liquid solution at ambient temperature. Upon receipt, store it immediately at the temperature recommended below.
储存条件
This antibody can be stored at 2℃-8℃ for one month without detectable loss of activity. Antibody products are stable for twelve months from date of receipt when stored at -20℃ to -80℃. Preservative-Free. Avoid repeated freeze-thaw cycles.

Recombinant Anti-IGF1R Antibody, Rabbit Monoclonal 经验证的应用

应用 推荐稀释比/用量
ICC-IF 1:20-1:100
FCM 1:25-1:100
Please Note: Optimal concentrations/dilutions should be determined by the end user.

Recombinant Anti-IGF1R Antibody, Rabbit Monoclonal 图片

Immunofluorescence staining of Human IGF1R in MCF7 cells. Cells were fixed with 4% PFA, blocked with 10% serum, and incubated with Rabbit anti-Human IGF1R monoclonal antibody (1:60) at 37℃ 1 hour. Then cells were stained with the Alexa Fluor® 488-conjugated Goat Anti-rabbit IgG secondary antibody (green). Positive staining was localized to cell membrane.
Flow cytometric analysis of human IGF1R expression on HeLa cells. Cells were stained with purified anti-Human IGF1R, then a FITC-conjugated second step antibody. The histogram were derived from events with the forward and side light-scatter characteristics of intact cells.

Recombinant Anti-IGF1R Antibody, Rabbit Monoclonal: 别称

Anti-CD221 Antibody; Anti-IGF-I R Antibody; Anti-IGF1 Receptor Antibody; Anti-IGFIR Antibody; Anti-IGFR Antibody; Anti-JTK13 Antibody

IGF1R 背景信息

The insulin-like growth factor-1 receptor (IGF1R) is a transmembrane tyrosine kinase involved in several biological processes including cell proliferation, differentiation, DNA repair, and cell survival. This a disulfide-linked heterotetrameric transmembrane protein consisting of two α and two β subunits, and among which, the α subunit is extracellular while the β subunit has an extracellular domain, a transmembrane domain, and a cytoplasmic tyrosine kinase domain. The IGF1R signaling pathway is activated in the mammalian nervous system from the early developmental stages. Its major effect on developing neural cells is to promote their growth and survival. This pathway can integrate its action with signaling pathways of growth and morphogenetic factors that induce cell fate specification and selective expansion of specified neural cell subsets. Modulation of cell migration is another possible role that IGF1R activation may play in neurogenesis. In the mature brain, IGF-I binding sites have been found in different regions of the brain, and multiple reports confirmed a strong neuroprotective action of the IGF-IR against different pro-apoptotic insults. IGF1R is an important signaling molecule in cancer cells and plays an essential role in the establishment and maintenance of the transformed phenotype. Inhibition of IGF1R signaling thus appears to be a promising strategy to interfere with the growth and survival of cancer cells. IGF1R is frequently overexpressed by tumors and mediates proliferation and apoptosis protection. IGF signaling also influences hypoxia signaling, protease secretion, tumor cell motility, and adhesion, and thus can affect the propensity for invasion and metastasis. Therefore, IGF1R is now an attractive anti-cancer treatment target.
全称
insulin-like growth factor 1 receptor
Related Pathways
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    Autophagy Pathway
参考文献
  • Bhr C, et al. (2004) The insulin like growth factor-1 receptor (IGF-1R) as a drug target: novel approaches to cancer therapy. Growth Horm IGF Res. 14 (4): 287-95.
  • Riedemann J, et al. (2006) IGF1R signalling and its inhibition. Endocr Relat Cancer. 13 Suppl 1: 33-43.
  • Gualco E, et al. (2009) IGF-IR in neuroprotection and brain tumors. Front Biosci. 14: 352-75.
  • Annenkov A. (2009) The insulin-like growth factor (IGF) receptor type 1 (IGF1R) as an essential component of the signalling network regulating neurogenesis. Mol Neurobiol. 40 (3): 195-215.
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