PriGrow I Medium

Cat. No.
TM001
Unit
500 ml
Price
$135.00
Cat. No. TM001
Name PriGrow I Medium
Description

abm’s PriGrow Media Series for mammalian cell culture is composed of high-quality, specific formulations for optimal cell growth.

PriGrow media is offered as a serum and antibiotic-free basal formulation to give end-users the flexibility of further supplementation, as required. Each lot has been fully tested and optimized to support the growth of the intended cells and has undergone quality control measures to test sterility, pH, osmolality and endotoxin levels.

Special media modification is available as a Custom Media Service, please contact a technical representative at technical@abmgood.com for more details.

Unit 500 ml
Endotoxin Level ≤ 1EU/ml
Osmolarity 270-310 mOsm/kgH2O
pH 7.15-7.25
Sterility Pass
Appearance Liquid
QC

Each lot has been fully tested and optimized for its ability to support in vitro cell culture. The testing parameters include: adherence rate (where applicable), typical morphology, and metabolism of the tested cells. Additionally, the media has been tested for sterility, pH, osmolality and endotoxin levels.

Storage Condition Store at 2-8°C.
Caution

For research use only and is not intended for therapeutic or diagnostic applications. abm products are intended for laboratory research purposes only, unless noted otherwise. They are not intended for use in humans. abm makes no warranties or representations as to the accuracy of the information on this site. Citations from literature and provided for informational purposes only. abm does not warrant that such information has been shown to be accurate.

Disclaimer
  1. abm products are intended for laboratory research purposes only, unless noted otherwise. They are not intended for use in humans.
  2. abm makes no warranties or representations as to the accuracy of the information on this site. Citations from literature and provided for informational purposes only. abm does not warrant that such information has been shown to be accurate.
Material Citation If use of this material results in a scientific publication, please cite the material in the following manner: Applied Biological Materials Inc, Cat. No. TM001
Print/Download Datasheet
  • Gong, B et al. "Exchange protein directly activated by cAMP plays a critical role in bacterial invasion during fatal rickettsioses." Proc Natl Acad Sci U S A. 110(48):19615-20 (2013). DOI: 10.1073/pnas.1314400110. PubMed: 24218580.
  • Gong, B et al. "Compartmentalized, functional role of angiogenin during spotted fever group rickettsia-induced endothelial barrier dysfunction: evidence of possible mediation by host tRNA-derived small noncoding RNAs" BMC Infect Dis. 13:285 (2013). DOI: 10.1186/1471-2334-13-285. PubMed: 23800282.
  • Gong, B et al. "Rickettsiae induce microvascular hyperpermeability via phosphorylation of VE-cadherins: evidence from atomic force microscopy and biochemical studies" PLoS Negl Trop Dis 6(6):e1699 (2012). DOI: 10.1371/journal.pntd.0001699. PubMed: 22720111.
  • Gong , B. et al. "METHODS OF TREATING RICKETTSIA USING EXCHANGE PROTEINS DIRECTLY ACTIVATED BY CAMP (EPACS) INHIBITORS" Patent : (2014). PubMed: US20140348853.
  • Hansen, K et al. "Feasibility Investigation of Cellulose Polymers for Mucoadhesive Nasal Drug Delivery Applications" Molecular Pharmaceutics 8:2732-2741 (2015). PubMed: 26097994. Application: cell culture.
  • Prince, J et al. "MicroRNA-9 inhibits hyperglycemia-induced pyroptosis in human ventricular cardiomyocytes by targeting ELAVL1" Biochemical and biophysical research communications 4:423-429 (2016). DOI: doi: 10.1016/j.bbrc.2016.02.065. Application: Culture.
  • Lai, IL et al. "Targeting the Warburg effect with a novel glucose transporter inhibitor to overcome gemcitabine resistance in pancreatic cancer cells" Carcinogenesis 10:2203-2213 (2014). DOI: doi: 10.1093/carcin/bgu124. PubMed: 24879635 . Application: Culture.
  • Jeyabal, P et al. "MicroRNA-9 inhibits hyperglycemia-induced pyroptosis in human ventricular cardiomyocytes by targeting ELAVL1" Biochem. Biophys. Res. Commun. 4:423-429 (2016). DOI: 10.1016/j.bbrc.2016.02.065. PubMed: 26898797. Application: Culture.
  • Li, Y., Hong, J., Jung, B.-K., Oh, E., & Yun, C.-O. "Oncolytic Ad co-expressing decorin and Wnt decoy receptor overcomes chemoresistance of desmoplastic tumor through degradation of ECM and inhibition of EMT" Cancer Letters 459:15–29 (2019). DOI: 10.1016/j.canlet.2019.05.033.
  • Liu, Q., Wang, X., Liu, X., Kumar, S., Gochman, G., Ji, Y., ... & Jiang, J. "Use of Polymeric Nanoparticle Platform Targeting the Liver To Induce Treg-Mediated Antigen-Specific Immune Tolerance in a Pulmonary Allergen Sensitization Model" ACS nano 13(4):4778-4794 (2019).
  • Liu, Q., Zhao, Y., Xing, H., Li, L., Li, R., Dai, J., … Fang, S. "The role of R-spondin 1 through activating Wnt/β-catenin in the growth, survival and migration of ovarian cancer cells" Gene 689:124–130 (2019). DOI: 10.1016/j.gene.2018.11.098.
  • Quintela, M., Sieglaff, D. H., Gazze, A. S., Zhang, A., Gonzalez, D., Francis, L., … Conlan, R. S. "HBO1 directs histone H4 specific acetylation, potentiating mechano-transduction pathways and membrane elasticity in ovarian cancer cells" Nanomedicine: Nanotechnology Biology and Medicine:17 (2019). DOI: 10.1016/j.nano.2019.01.017.
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