Austral Biologicals GF-240 - Human transforming growth factor beta-2 (TGF - beta-2) recombinant, 5 µg

Transforming Growth Factor Beta-2 (TGF-Beta 2), Human Recombinant

5 µg
$250.00
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Austral Biologicals GF-240 - Human transforming growth factor beta-2 (TGF - beta-2) recombinant, 5 µg

Transforming Growth Factor Beta-2 (TGF-Beta 2), Human Recombinant

Catalog no. GF-240-2
$250.00
Size5 µg

Human Transforming Growth Factor beta2 (TGF-beta 2) is stimulatory for cells of mesenchymal origin and inhibitory for cells of epithelial or neuroectodermal origin. Mature TGF- beta2 is a disulfide-linked homodimer of two chains composed of 112 amino acid residues each. There is a 70% homology between human TGF- beta2 and human TGF- beta1. Human TGF- beta2 is produced in genetically engineered e. coli bacteria, and purified by sequential chromatography.

  • Molecular weight: 25 kDa (dimeric protein)
  • Purity: Over 98% pure by non-reduced SDS gel electrophoresis.
  • Storage: Store at -80°C.
  • Stability: Several months at -80°C.
  • Biological activity: The biological activity of human TGF-&# beta2 is determined by measuring the acidification of the culture medium (Rat-1 cells) exposed to the growth factor.
  • Formulation: 1 mg/mL (pH 2.5). CAUTION: Since the volume supplied is small, we advise our customers to dilute this material to a working stock solution. To remove partial aliquots in not recommended.
  • References:

    1. Moustakas, A., Lin, H.Y., Henis, Y.I., Plamondon, J., O'Conner-McCourt, M.D., and Lodish, H.F., (1993) The Journal of Biological Chemistry, Vol 268, 30, October, 22215-22218.
    2. Geiser, A.G., Burmester, J.K., Webbink, R., Roberts, A.B., and Sporn, M.B., (1992). The Journal of Biological Chemistry, Vol 267, 4, February, 2588-2593.

Publications using Austral Biologicals GF-240

The following scientific publications report use of TGF-β2 from Austral Biologicals:

  1. Trastuzumab-mediated antibody-dependent cellular cytotoxicity against esophageal squamous cell carcinoma. Mimura et al., Clinical Cancer Research 11(13):4898-4904 (2005).
  2. Keloid-derived fibroblasts are refractory to Fas-mediated apoptosis and neutralization of autocrine transforming growth factor-beta1 can abrogate this resistance. Chodon et al., American Journal of Pathology 157(5):1661-1669 (2000).
  3. Transforming growth factor-beta inhibits interferon-gamma secretion by lymphokine-activated killer cells stimulated with tumor cells. Naganuma et al., Neurologia Medico-Chirurgica 36(11):789-795 (1996).
  4. Effects of transforming growth factor betas and basic fibroblast growth factor on articular chondrocytes obtained from immobilised rabbit knees. Okazaki et al., Annals of the Rheumatic Diseases 55(3):181-186 (1996).
  5. Effects of the cytokines on the proliferation of and collagen synthesis by human cataract lens epithelial cells. Nishi et al., British Journal of Ophthalmology 80(1):63-68 (1996).
  6. Characterization of transforming growth factor-beta growth regulatory effects and receptors on bovine mammary cells. Woodward et al., Journal of Cellular Physiology 165(2):339-348 (1995).
  7. Effect of the cytokines on the prostaglandin E2 synthesis by lens epithelial cells of human cataracts. Nishi et al., British Journal of Ophthalmology 79(10):934-938 (1995).
  8. Characterization of transforming growth factor-beta (TGF-beta) receptors on BeWo choriocarcinoma cells including the identification of a novel 38-kDa TGF-beta binding glycoprotein. Mitchell et al., Molecular Biology of the Cell 3(11):1295-1307 (1992).

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