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H0137

Sigma-Aldrich

HT Media Supplement (50×) Hybri-Max

lyophilized powder, γ-irradiated, BioXtra, suitable for hybridoma

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Synonym(s):
HT Supplement, Hypoxanthine-Thymidin (HT) media supplement

Quality Level

sterility

γ-irradiated

product line

BioXtra

form

lyophilized powder

technique(s)

cell culture | hybridoma: suitable

impurities

endotoxin, tested

storage temp.

−20°C

Application

HT Media supplement is a cocktail hypoxanthine and thymidine qualified for use in hybridoma selection and cell culture applications. HT Media Supplement (50×) Hybri-Max has been used as a supplement in INS-1 β-cells co-culture medium. It is suitable for use as medium for hybridoma cells and as Dulbecco′s Modified Eagle Medium (DMEM) for HeLa S3 and MTH1-KO cells.

Reconstitution

Reconstitute contents of vial with 10 ml sterile cell culture medium. Stock solution is sufficient to prepare 500 ml medium. Final working concentration: 100 μM hypoxanthine, 16 μM thymidine.

Legal Information

Hybri-Max is a trademark of Sigma-Aldrich Co. LLC

Storage Class Code

11 - Combustible Solids

WGK

WGK 3

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Personal Protective Equipment

dust mask type N95 (US), Eyeshields, Gloves

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Simulated Cholinergic Reinnervation of beta (INS-1) Cells: Antidiabetic Utility of Heterotypic Pseudoislets Containing beta Cell and Cholinergic Cell
Jiao A, et al.
International Journal of Endocrinology, 2018 (2018)
Characterization of an IgG monoclonal antibody targeted to both tissue cyst and sporocyst walls of Toxoplasma gondii
Gondim L, et al.
Experimental Parasitology, 163, 46-56 (2016)
The roles of human MTH1, MTH2 and MTH3 proteins in maintaining genome stability under oxidative stress
Hashiguchi K, et al.
Mutation Research. Fundamental and Molecular Mechanisms of Mutagenesis, 808, 10-19 (2018)
Kimberly A McCormack et al.
Parasitology research, 118(8), 2409-2417 (2019-06-15)
Human babesiosis, a tick-borne disease similar to malaria, is most often caused by the hemoprotozoans Babesia divergens in Europe, and Babesia microti and Babesia duncani in North America. Babesia microti is the best documented and causes more cases of human
Ellen Young et al.
Cell host & microbe, 27(5), 710-724 (2020-05-15)
The rational design of dengue virus (DENV) vaccines requires a detailed understanding of the molecular basis for antibody-mediated immunity. The durably protective antibody response to DENV after primary infection is serotype specific. However, there is an incomplete understanding of the

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