Skip to product information
Basic Fibroblast Growth Factor (FGF 2), Human Recombinant
Catalog no.
GF-030-3
$50.00
Human Basic Fibroblast Growth Factor is a mitogen that stimulates cell growth for such cells as fibroblasts, endothelial cells, myoblasts, glial cells and smooth muscle cells. Basic FGF is composed of 146 amino acid residues (pro 1 to ser 146), and is 55% homologous with acidic FGF, including two conserved cysteine residues. Human basic FGF is produced by genetically engineered yeast, and purified by heparin-Sepharose affinity chromatography.
- Molecular weight: 17.5 kDa
- Purity: Over 95% pure by N-terminal amino acid sequencing, amino acid composition, HPLC analysis, and SDS gel electrophoresis.
- Storage: Store at +4°C. Reconstitution is best in water or buffer near neutral pH, since it is unstable in acidic solutions. After reconstitution, storage in aliquots at -80°C is recommended.
- Stability: Several months, lyophilized or in solution, at pH 6-7 and +4°C.
- Biological activity: The mitogenic activity of human basic FGF is identical to natural bovine basic FGF, as measured by stimulation of 3H-thymidine incorporation into human foreskin fibroblast cells.
- Formulation: Lyophilized powder
-
References:
1. Gospodarowicz, D. (1975) J. Biol. Chem. 250, 2515-2520.
2. Folkman, J. and Klagsbrun, M. (1987) Science 235,442-447
3. Fox, J., et al. (1996) Journal of Biological Chemistry 271: 12578-12584.
Publications using Austral Biologicals GF-030
The following scientific publications report use of Austral Biologicals GF-030:
- Cell-cultured PDMS vascular model to allow placement of implant devices. Okuno et al., BMC Methods 3:16 (2026).
- Geometrically engineered organoid units and their assembly for pre-construction of organ structures. Kadotani et al., APL Bioengineering (2024).
- Hydrolytic hydrogels tune mesenchymal stem cell persistence and immunomodulation for enhanced diabetic cutaneous wound healing. Martin et al., Biomaterials (2023).
- Migration of endothelial cells on the surface of anodized Ni-Ti stent strut. Wang et al., Frontiers in Medical Technology (2023).
- Host type 2 immune response to xenogeneic serum components impairs biomaterial-directed osteo-regenerative therapies. Martin et al., Biomaterials (2022).
- Antiangiogenic Activity of Flavonols in Chorioallantoic Membrane (CAM) Assay. Okamura et al., Food Science and Technology Research 26:891-896 (2020).
- Hydrostatic pressure promotes endothelial tube formation through aquaporin 1 and Ras-ERK signaling. Yoshino et al., Communications Biology (2020).
- YAP and TAZ limit cytoskeletal and focal adhesion maturation to enable persistent cell motility. Mason et al., Journal of Cell Biology (2019).
- Fluid shear stress suppresses ICAM-1-mediated transendothelial migration of leukocytes in coculture model. Sakamoto et al., Biochemical and Biophysical Research Communications (2018).
- Skeletal cell YAP and TAZ combinatorially promote bone development. Kegelman et al., FASEB Journal (2018).
- A Novel Technique for Accelerated Culture of Murine Mesenchymal Stem Cells that Allows for Sustained Multipotency. Caroti et al., Scientific Reports 7:13334 (2017).
- Proliferation-Related Activity in Endothelial Cells Is Enhanced by Micropower Plasma. Suzuki and Yoshino, BioMed Research International (2016).
- Endothelial Cell Response Under Hydrostatic Pressure Condition Mimicking Pressure Therapy. Yoshino et al., Cellular and Molecular Bioengineering 8:296-303 (2015).
- Basic fibroblast growth factor predicts cardiovascular disease occurrence in participants from the Veterans Affairs Diabetes Trial. Zimering et al., Frontiers in Endocrinology 4:183 (2013).
- Haemodynamically dependent valvulogenesis of zebrafish heart is mediated by flow-dependent expression of miR-21. Banjo et al., Nature Communications 4:1978 (2013).
- Role of nesprin-1 in nuclear deformation in endothelial cells under static and uniaxial stretching conditions. Anno et al., Biochemical and Biophysical Research Communications (2012).
- Role of paxillin in the early phase of orientation of vascular endothelial cells exposed to cyclic stretching. Huang et al., Biochemical and Biophysical Research Communications (2012).
- Brazilian Propolis Suppresses Angiogenesis by Inducing Apoptosis in Tube-Forming Endothelial Cells through Inactivation of Survival Signal ERK1/2. Kunimasa et al., Evidence-Based Complementary and Alternative Medicine (2011).
- Cyclic Force Applied to FAs Induces Actin Recruitment Depending on the Dynamic Loading Pattern. Ueki et al., Open Biomedical Engineering Journal 4:129-134 (2010).
- Role of p120-catenin in the morphological changes of endothelial cells exposed to fluid shear stress. Sakamoto et al., Biochemical and Biophysical Research Communications (2010).
- Measurements of strain on single stress fibers in living endothelial cells induced by fluid shear stress. Ueki et al., Biochemical and Biophysical Research Communications (2010).
- Effect of spatial gradient in fluid shear stress on morphological changes in endothelial cells in response to flow. Sakamoto et al., Biochemical and Biophysical Research Communications (2010).
- Direct measurement of shear strain in adherent vascular endothelial cells exposed to fluid shear stress. Ueki et al., Biochemical and Biophysical Research Communications (2010).
- Ex vivo enrichment of mesenchymal cell progenitors by fibroblast growth factor 2. Bianchi et al., Experimental Cell Research (2003).
- Resveratrol and quercetin inhibit angiogenesis in vitro. Igura et al., Cancer Letters (2001).
- Transcriptional regulation of connective tissue growth factor by cortisol in osteoblasts. Pereira et al., American Journal of Physiology-Endocrinology and Metabolism 279:E570-E576 (2000).
- Proliferation kinetics and differentiation potential of ex vivo expanded human bone marrow stromal cells: implications for their use in cell therapy. Banfi et al., Experimental Hematology (2000).
- Placental lactogen-I gene activation in differentiating trophoblast cells: extrinsic and intrinsic regulation involving mitogen-activated protein kinase signaling pathways. Peters et al., Journal of Endocrinology 165:443-456 (2000).
- Ras/MEK/ERK Up-regulation of the Fibroblast KCa Channel FIK Is a Common Mechanism for Basic Fibroblast Growth Factor and Transforming Growth Factor-β Suppression of Myogenesis. Peña et al., Journal of Biological Chemistry 275:13677-13682 (2000).
- Clonal mesenchymal progenitors from human bone marrow differentiate in vitro according to a hierarchical model. Muraglia et al., Journal of Cell Science 113:1161-1166 (2000).
- Bone morphogenetic proteins induce the expression of noggin, which limits their activity in cultured rat osteoblasts. Gazzerro et al., Journal of Clinical Investigation 102:2106-2114 (1998).
- A Nude Mouse Model for Human Bone Formation in Unloaded Conditions. Muraglia et al., Bone (1998).
- Insulin-related growth factors stimulate proliferation of retinal progenitors in the goldfish. Boucher and Hitchcock, Journal of Comparative Neurology 394:386-394 (1998).
- Mitogen-Activated Protein Kinase Kinase (MEK) Activity Is Required for Inhibition of Skeletal Muscle Differentiation by Insulin-Like Growth Factor 1 or Fibroblast Growth Factor 2. Weyman and Wolfman, Endocrinology 139:1794-1800 (1998).
- Ets-1 is an early response gene activated by ET-1 and PDGF-BB in vascular smooth muscle cells. Naito et al., American Journal of Physiology-Cell Physiology 274:C472-C480 (1998).
- Fibroblast growth factor-2 supports ex vivo expansion and maintenance of osteogenic precursors from human bone marrow. Martin et al., Endocrinology 138:4456-4462 (1997).
- Differential responses of scirrhous and well-differentiated gastric cancer cells to orthotopic fibroblasts. Yashiro et al., British Journal of Cancer 74:1096-1103 (1996).
- Pro-inflammatory cytokines downregulate platelet derived growth factor-α receptor gene expression in human osteoblastic cells. Köse et al., Journal of Cellular Physiology 166:188-197 (1996).