P04-03500: PAN-Biotech DMEM, w: 4.5 g/L Glucose, w/o: L-Glutamine, w/o: Sodium pyruvate, w: 3.7 g/L NaHCO3, 500 ml bottle, cell culture media
P04-035001: PAN-Biotech DMEM, w: 4.5 g/L Glucose, w/o: L-Glutamine, w/o: Sodium pyruvate, w: 3.7 g/L NaHCO3, 1000 ml bottle, cell culture media
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PAN-Biotech DMEM, w: 4.5 g/L Glucose, w/o: L-Glutamine, w/o: Sodium pyruvate, w: 3.7 g/L NaHCO3

P04-03500
Regular price
$40.00
Sale price
$40.00
Regular price
$47.00
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Introduction

Intrinsically developed for the cultivation of murine embryonic cells, DMEM (Dulbecco's Modified Eagle Medium) is tailor-made for the cultivation of a broad range of cells, especially if the medium is supplemented with FBS. DMEM is an Eagle medium modification with a fourfold content of amino acids and vitamins. DMEM with 1.0 g/L Glucose is the standard medium, whereas DMEM with 4.5 g/L Glucose is for cells which have a high energy demand.

Composition

PAN-Biotech DMEM, w: 4.5 g/L Glucose, w/o: L-Glutamine, w/o: Sodium pyruvate, w: 3.7 g/L NaHCO3

Specifications

Cat. No. P04-03500, P04-035001

Bicarbonate: With 3.7 g/L Sodium Bicarbonate
Endotoxin Content: Endotoxin Content unspecified
Glucose: High Glucose (4.5 g/L)
Glutamine: No glutamine
HEPES: Without HEPES
Liquid / Powder: Liquid
Phenol Red: With Phenol Red
Product Category: Cell Culture Media
Product Type: DMEM
Size:

Various

Sodium Pyruvate: With Sodium Pyruvate
Sterile: Yes
Storage Temperature: +2°C - +8°C

    Documents

    Product References

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    • Kocaturk, Nur Mehpare et al. “Novel protein complexes containing autophagy and UPS components regulate proteasome-dependent PARK2 recruitment onto mitochondria and PARK2-PARK6 activity during mitophagy.” Cell death & disease vol. 13,11 947. 10 Nov. 2022, doi:10.1038/s41419-022-05339-x
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    • Namli, Ilayda et al. “Hydrodynamic Cavitation on a Chip: A Tool to Detect Circulating Tumor Cells.” ACS applied materials & interfaces vol. 14,36 (2022): 40688-40697. doi:10.1021/acsami.2c12356
    • Jarzina, Sebastian et al. “Application of the Adverse Outcome Pathway Concept to In Vitro Nephrotoxicity Assessment: Kidney Injury due to Receptor-Mediated Endocytosis and Lysosomal Overload as a Case Study.” Frontiers in toxicology vol. 4 864441. 19 Apr. 2022, doi:10.3389/ftox.2022.864441
    • Kummer, Daniel et al. “A JAM-A-tetraspanin-αvβ5 integrin complex regulates contact inhibition of locomotion.” The Journal of cell biology vol. 221,4 (2022): e202105147. doi:10.1083/jcb.202105147
    • Das, Sarada et al. “Immunoprecipation Assay to Quantify the Amount of tRNAs associated with Their Interacting Proteins in Tissue and Cell Culture.” Bio-protocol vol. 12,4 e4335. 20 Feb. 2022, doi:10.21769/BioProtoc.4335
    • Reichel, Mona et al. “Suitability of GRK Antibodies for Individual Detection and Quantification of GRK Isoforms in Western Blots.” International journal of molecular sciences vol. 23,3 1195. 21 Jan. 2022, doi:10.3390/ijms23031195
    • De Maio, Flavio et al. “Graphene nanoplatelet and graphene oxide functionalization of face mask materials inhibits infectivity of trapped SARS-CoV-2.” iScience vol. 24,7 (2021): 102788. doi:10.1016/j.isci.2021.102788
    • Adihou, Hélène et al. “A protein tertiary structure mimetic modulator of the Hippo signalling pathway.” Nature communications vol. 11,1 5425. 27 Oct. 2020, doi:10.1038/s41467-020-19224-8
    • Hosseini, Hedayatollah et al. “Early dissemination seeds metastasis in breast cancer.” Nature vol. 540,7634 (2016): 552-558. doi:10.1038/nature20785
    • Wenzel, Michaela et al. “Towards Profiles of Resistance Development and Toxicity for the Small Cationic Hexapeptide RWRWRW-NH2.” Frontiers in cell and developmental biology vol. 4 86. 26 Aug. 2016, doi:10.3389/fcell.2016.00086

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