General Cell Lines and Cell Cultures
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Filtered Search Results
ATCC Quantitative Synthetic; Human herpesvirus; 8 DNA
ATCC Genuine Nucleics can be used for assay development, verification, validation, 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. Preparation includes genomic segments taken from the minor capsid protein (ORF 26) and the latency-associated nuclear antigen (LANA or ORF 73).
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ATCC Escherichia coli
Escherichia coli
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ATCC NCI-H1836; Lung Carcinoma; Human (Homo sapiens)
NCI-H1836 [H1836] is a cell line isolated from the lungs of a 52-year-old White male patient with small cell lung cancer. This product has applications in cancer research.
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ATCC Mammary Epithelial Cell Basal Medium
Mammary Epithelial Cell Basal Medium is a sterile, phenol-red-free, liquid tissue culture medium designed to support epithelial cells derived from a normal patient's breast. Mammary Epithelial Cell Basal Medium contains essential and non-essential amino acids, vitamins, other organic compounds, trace minerals, and inorganic salts. To support the proliferation and plating efficiency of mammary epithelial cells ATCC PCS-600-010, Mammary Cell Basal Medium must be supplemented with the Mammary Epithelial Cell Growth Kit (ATCC PCS-600-040). ATCC’s Human Mammary Epithelial Cells cultured in Mammary Epithelial Cell complete medium (basal medium plus growth kit) is an optimal serum-free culture model for many research areas. Common uses of HMEC include the study of breast cancer development, three-dimensional culture, and carcinogen screening.
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ATCC LS513; Colon Carcinoma; Human (Homo sapiens)
LS513 are cells exhibiting epithelial morphology that were isolated from the large intestine (cecum) of a 64-year-old, White male patient with Dukes' type C carcinoma. It has applications in cancer research.
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ATCC Staphylococcus aureus; subsp. aureus; SA113
Staphylococcus aureus subsp. aureus strain SA113 was isolated from a corneal ulcer. It can be used as a transformation host in molecular biology research.
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ATCC Roseomonas mucosa; Strain: RSM2015
Roseomonas mucosa strain RSM2015 was isolated from the skin of a healthy human. The depositor states that this bacterial strain is a ceramide producer and nitrogen fixer.
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ATCC SCC-25; Tongue Carcinoma; Human (Homo sapiens)
SCC-25 is an epithelial-like cell that was isolated from the tongue of a 70-year-old, male patient with squamous cell carcinoma. This cell line was deposited by JG Rheinwald and can be used in toxicology and cancer research.
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ATCC Salmonella enterica; subspecies enterica; serovar Typhimurium; Strain: SAP18-6199
Salmonella enterica subsp. enterica serovar Typhimurium strain SAP18-6199 was isolated from a human. This whole-genome sequenced bacterium was part of the 2018 PulseNet-GenomeTrakr joint proficiency test exercise. This strain has applications in enteric disease research, infectious disease research, and zoonotic disease research.
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ATCC Bifidobacterium breve
Bifidobacterium breve
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ATCC Burkholderia cepacia
Burkholderia cepacia strain UCB 717 was isolated from an onion. This whole-genome sequenced bacterial type strain can be used in infectious disease research, media testing, quality control, and respiratory disease research.
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ATCC Shigella dysenteriae
Type strain.
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ATCC Quantitative Genomic; DNA from; Chlamydia trachomatis; Serovar D strain UW-3/Cx
Genomic DNA isolated from a preparation of Chlamydia trachomatis Serovar D strain UW-3/Cx (ATCC VR-885). This product 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 BT-483; Breast Ductal Carcinoma; Human (Homo sapiens)
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ATCC Primary Skeletal Muscle Cells; Normal, Human
Primary Human Skeletal Muscle Cells (HSkMC) are isolated from normal, human skeletal muscle and provide an ideal culture model for the study of striated muscle cell biology, diabetes, insulin receptor studies, muscle cell metabolism, muscle tissue repair, and myotube development.
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