HCC187 cell

SKU:BHC11101693
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Overview
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HCC187 cell is a epithelial cell cell line derived from Caucasian (Female). It is commonly used as an in vitro model for 1 research. Growth characteristics: Mixed: adherent and suspension, epithelial. Supplied as cryopreserved cells with accompanying batch CoA and quality-control documentation.

Species Human
Disease model Breast ductal carcinoma
Morphology epithelial
Growth Properties Mixed: adherent and suspension
Tissue Breast
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Catalog no. Size
305781 1 cryovial
Available Options

This cell line is available in the U.S. For non-profit users, please sign and submit the Non-Profit Supply Agreement to orders@biohippo.com before placing an order. For commercial users, please complete the CLEAR Form before ordering, as additional usage fees may apply based on the intended use. For further details, please contact orders@biohippo.com. Products ship after the required agreement is completed; typical delivery is 2–3 business days. Products are shipped frozen on dry ice in cryotubes. Each cryotube typically contains 3 × 10^6 cells for adherent lines or 5 × 10^6 cells for suspension lines (refer to the batch CoA for details).

Field Specification
Mfr No 305781
Species Human
HCC1187 is a human breast carcinoma cell line established from a primary ductal breast tumor of an adult patient. It exhibits a triple-negative phenotype, lacking expression of estrogen receptor (ER), progesterone receptor (PR), and HER2, which is characteristic of basal-like breast cancers. HCC1187 is part of a panel of cell lines developed to represent the molecular diversity of breast cancers, and has been extensively profiled in multiple large-scale genomic and proteomic studies including the Cancer Cell Line Encyclopedia (CCLE) and The Cancer Genome Atlas (TCGA)-aligned analyses. This cell line displays complex genomic alterations commonly observed in high-grade breast tumors, such as copy number variations and a high burden of somatic mutations. Proteomic analyses reveal that HCC1187 has a proteomic profile aligned with basal-like breast tumors, including elevated expression of cytokeratins associated with basal epithelial cells and low levels of luminal markers. Quantitative proteomics also show that HCC1187 clusters with other triple-negative breast cancer (TNBC) lines based on pathway-level protein expression, demonstrating dysregulation in pathways related to DNA damage repair, cell cycle progression, and apoptosis. These properties position HCC1187 as a valuable model for studying TNBC biology and testing targeted therapeutics for basal-like or BRCA1-deficient breast cancer subtypes. HCC1187 has also been included in comprehensive mutational studies of breast cancer, contributing to the understanding of mutation frequency patterns and the landscape of driver versus passenger mutations. Studies have shown that although individual tumors harbor numerous mutations, only a subset significantly contributes to cancer progression. In HCC1187, several such driver mutations and pathway alterations have been identified, making it a key model for exploring the genetic basis of tumorigenesis and for developing personalized therapeutic approaches.

SKU:BHC11101693

  • Protein expression: Progesterone receptor, negative
  • Antigen expression: epithelial glycoprotein 2 (EGP2); cytokeratin 19
  • Oncogenes: her2/neu-; p53+
  • Tumorigenic: Yes, the tumor was classified as TNM stage IIA, grade 3, invasive ductal carcinoma.
  • Mutational profile: Mutation: TP53, Simple, p.Gly108del (c.322_324delGGT), Homozygous (Cosmic-CLP=749711)
  • cultureMedium: RPMI 1640, w: 2.0 mM stable Glutamine, w: 2.0 g/L NaHCO3 (Cytion article number 820700a)
  • supplements: Supplement the medium with 10% FBS
  • dissociationReagent: Accutase
  • doublingTime: 100 hours
  • fluidRenewal: 2 to 3 times per week
  • freezeMedium: As a cryopreservation medium, use complete growth medium (including FBS) + 10% DMSO for adequate post-thaw viability, or CM-1 (Cytion catalog number 800100), which includes optimized osmoprotectants and metabolic stabilizers to enhance recovery and reduce cryo-induced stress.
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Experience the power of Celltrypse™, c-LEcta's innovative enzyme solution for gentle and efficient cell dissociation. Request your free sample and discover a superior alternative for your cell culture workflows.

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