General Cell Lines and Cell Cultures
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Filtered Search Results
ATCC Escherichia coli; Quantitative DNA
Quantitative Genomic DNA from Escherichia coli strain 2002-3211 can be used for assay development, verification, and validation as well as monitoring of day-to-day test variation and lot-to-lot performance of molecular-based assays. The quantitative format allows for the generation of a standard curve for quantitative PCR (qPCR) to determine bacterial load.
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ATCC MYC 1-9E10.2; Hybridoma; Mouse (Mus musculus)
There is a Permit requirement: License form needed to be completed Material Transfer Agreement Addendum for Screening Application
The forms are available here: https://www.atcc.org/support/order-support/permits-and-restrictions
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ATCC Cutibacterium granulosum D-34
NULL
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ATCC Salmonella enterica; subsp. enterica; serovar Typhimurium
Salmonella enterica subsp. enterica serovar Typhimurium strain WG49 is a whole-genome sequenced bacterium with applications in enteric disease research. This strain is a male-specific coliphage host.
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ATCC Rhizobium tropici
Rhizobium tropici strain CIAT 899 is a bacterial type strain that was isolated in 1978 from nodules on Phaseolus vulgaris in Colombia. This strain is propagated aerobically in Rhizobium X medium.
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ATCC Acetivibrio thermocellus
Type strain. Produces endoglucanase, restriction endonuclease CthI, and restriction endonuclease CthII.
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ATCC Escherichia coli serotype o157:h7
NULL
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ATCC pRS426 phagemid; in E. coli
This is a YE-type shuttle vector encoding the beta-galactosidase alpha peptide, permitting blue-white visual detection. It can be used to produce ssDNA and it contains promoters for in vitro RNA synthesis and priming sites useful for sequencing. It also contains the REP3 and FRT sequences necessary for high copy propagation in yeast. In S. cerevisiae, the copy number is about 20 per haploid cell. In non-selective growth, plasmids are lost through mitotic segregation at rates in the range of 4.4 +/- 1.4% of progeny per doubling.
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ATCC Lactobacillus animalis
Type strain
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ATCC Quantitative Genomic DNA from; Klebsiella pneumoniae; Strain: NCTC 9633
Quantitative Genomic DNA from Klebsiella pneumoniae subsp. pneumoniae strain NCTC 9633 (ATCC 13883) can be used for assay development, verification, and validation as well as monitoring day-to-day test variation and the lot-to-lot performance of molecular-based assays. The quantitative format allows for the generation of a standard curve for quantitative PCR (qPCR) to determine bacterial load.
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ATCC Quantitative Synthetic; Avian paramyxovirus 1 RNA
Quantitative Synthetic Avian paramyxovirus RNA can be used for assay development, verification, and validation as well as monitoring of day-to-day test variation and lot-to-lot performance of molecular-based assays. The quantitative format allows for the generation of a standard curve for quantitative PCR (qPCR) to determine viral load. This preparation includes fragments from the M (Matrix protein), F (Fusion protein), and L (Large RNA polymerase protein) gene regions and targets Class II NDV (velogenic assays favored).
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ATCC Monoclonal Antibody;Anti-SARS-CoV-2 Receptor; Binding Domain (RBD);protein, Clone 2TP2F2
Monoclonal antibody prepared against the Severe acute respiratory syndrome-related coronavirus 2 (SARS-CoV-2) spike glycoprotein receptor binding domain. This product was purified from clone 2TP2F2 hybridoma supernatant by protein G affinity chromatography.
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ATCC RTG-2; Mixed Ovaries/Testes; Trout (Oncorhynchus mykiss)
RTG-2 a is a cell line exhibiting fibroblast morphology that was isolated from mixed ovary and testis of rainbow trout. This cell line was deposited by K Wolf.
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ATCC Quantitative Synthetic; Human coronavirus; Strain NL63 RNA
Quantitative synthetic Human coronavirus NL63 RNA can be used for assay development, verification, and validation as well as monitoring of day-to-day test variation and lot-to-lot performance of molecular-based assays. The quantitative format allows for the generation of a standard curve for quantitative PCR (qPCR) to determine viral load. This preparation includes fragments from NSP3 (ORF 1A), Rdrp (nsp12), NTPase (nsp13), nsp16, spike protein, nucleocapsid, and 3’ untranslated regions.
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ATCC HCM-BROD-0011-C71; Cancer Model Primary; Glioblastoma Brain; Human (Homo sapiens)
A patient-derived next-generation cancer model generated by the Human Cancer Models Initiative (HCMI). HCM-BROD-0011-C71 (ATCC No. PDM-18) was isolated from primary glioblastoma of brain tissue. This tumor-derived model can be used in basic research and pharmacological screening applications. Data for the parental tumor and the tumor-derived organoid models are available at the GDC. Additional molecular characterizations may be available at the GDC. Additional controlled data may be available via dbGaP.
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