SK-NEP-1 cell

SKU:BHC11100624
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Overview
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SK-NEP-1 cell is a cell line derived from Caucasian (Female). It is commonly used as an in vitro model for 1 research. Growth characteristics: Suspension, Epithelial-like. Supplied as cryopreserved cells with accompanying batch CoA and quality-control documentation.

Species Human
Disease model Wilms tumor
Morphology Epithelial-like
Growth Properties Suspension
Tissue Kidney
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Catalog no. Size
300341 1 cryovial
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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 300341
Species Human
SK-NEP-1 is a human cell line originally derived from a nephroblastoma, also known as Wilms' tumor, a common pediatric renal malignancy. This cell line has been used extensively in preclinical research to study nephroblastoma biology and to evaluate novel therapeutic approaches for treating Wilms' tumor. However, later molecular characterizations revealed that SK-NEP-1 expresses the EWS-FLI1 fusion gene, which is characteristic of Ewing sarcoma, indicating that this cell line is more representative of the Ewing family of tumors rather than Wilms' tumor. This discovery has important implications for interpreting past research that utilized SK-NEP-1, as its biological characteristics align more closely with Ewing sarcoma rather than anaplastic Wilms' tumor. Research involving SK-NEP-1 has shown that it is responsive to chemotherapy agents such as vincristine, which inhibits microtubule polymerization, leading to G2/M phase arrest and apoptosis. Additionally, combination therapies using natural compounds like andrographolide have demonstrated synergistic effects in increasing the cytotoxicity of vincristine on SK-NEP-1 cells, primarily through the PI3K-AKT-p53 signaling pathway. This combination was shown to induce apoptosis in SK-NEP-1 cells, both in vitro and in vivo, making it a promising approach for treating tumors that share the molecular characteristics of SK-NEP-1. SK-NEP-1 is thus a critical model for studying the molecular underpinnings of pediatric renal and Ewing sarcoma tumors and for evaluating the effectiveness of drug combinations aimed at improving therapeutic outcomes in these cancer types. Its use in research has contributed to understanding drug-induced apoptosis and the potential of targeting specific signaling pathways like PI3K-AKT-p53 in cancer therapy.

SKU:BHC11100624

  • Isoenzymes: PGM3, 1, PGM1, 1-2, ES-D, 1, Me-2, 2, AK-1, 1, GLO-1, 2, G6PD, B, Phenotype Frequency Product: 0.0029
  • Tumorigenic: Yes, in nude mice.
  • Mutational profile: p53 mut
  • Karyotype: (P12) hypotriploid to hypertriploid (+A1, +A2, +C, +D, +E, +F, +G) with abnormalities including acrocentric fragments, secondary constrictions and large sub telocentric markers
  • cultureMedium: McCoys 5a, w: 3.0 g/L Glucose, w: stable Glutamine, w: 2.0 mM Sodium pyruvate, w: 2.2 g/L NaHCO3 (Cytion article number 820200a)
  • supplements: Supplement the medium with 10% FBS
  • subculturing: Maintain cultures by periodically adding or replacing the medium. Initiate cultures with a density of 5 x 105 cells/ml and keep the cell concentration within the range of 3 x 105 to 1 x 106 cells/ml for optimal growth.
  • 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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