Cre-Expressing Porcine Primary Prostate Fibroblasts

SKU:BHC16404684
Overview
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Cre-Expressing Porcine Primary Prostate Fibroblasts are primary fibroblasts derived from porcine prostate tissue and supplied in selectable cryopreserved formats. Relevant to fibrosis & ECM and reproductive biology studies.
Species Porcine
Cell Type Fibroblasts
Organ System Reproductive
Tissue Porcine Prostate
Morphology Fibroblast-like
Options selector
Catalog no. Format
P-6223Cre-FV-0.5M Frozen Vial (0.5 x 10^6 cells)
Available Options

Select the variant that best fits your experiment. Availability and lead time may vary by option.

  • Options: Format: Frozen Vial (0.5 x 10^6 cells)
  • Lead time: options listed in "Availability Content"; otherwise, there will be a column of “lead time”, other statuses may take longer.
  • Storage: Cryopreserved cells are shipped with dry ice overnight. Upon arrival, transfer frozen cells to liquid nitrogen (-180°C) immediately until ready for use. Live cell shipment is also available on request. Primary cells can never be kept at -20 °C or -80 °C freezer.
  • Shipping: Cryopreserved cells are shipped with dry ice overnight.
  • Upon receipt: store at the recommended temperature as soon as possible.
  • Sales terms and conditions: Please review prior to ordering.
Field Specification
Alternative names CRE-POPPRFB
Species Porcine
Applications
  • Cell Culture (Growth)
  • Fibroblast Studies
  • Extracellular Matrix Studies
  • Immunophenotyping
Cell type Fibroblasts
Classification Primary
Tissue
  • Prostate
Growth properties
  • Adherent
Biosafety level BSL-2
Storage Cryopreserved cells are shipped with dry ice overnight. Upon arrival, transfer frozen cells to liquid nitrogen (-180°C) immediately until ready for use. Live cell shipment is also available on request. Primary cells can never be kept at -20 °C or -80 °C freezer.
Shipping Cryopreserved cells are shipped with dry ice overnight.
Catalog no. (Mfr.) P-6223Cre
Main SKU BHC16404684

Overview

Cre-Expressing Porcine Primary Prostate Fibroblasts are primary fibroblasts derived from porcine prostate tissue. Product metadata indicate adherent growth with fibroblast-like morphology and a reported BSL-2 handling context. Depending on the selected variant, the product may be supplied in selectable cryopreserved formats (Frozen Vial (0.5 x 10^6 cells)) for in vitro studies that benefit from tissue-relevant cellular context.

Key elements and design rationale

  • Source and identity reflect the stated fibroblasts model and tissue origin, supporting experiments where prostate/reproductive context matters.
  • Reported classifications and phenotype descriptors include primary, adherent growth, and fibroblast-like morphology.
  • Selectable variants can include Frozen Vial (0.5 x 10^6 cells); choose the listed format according to culture scale, handling preference, and downstream assay design.
  • Handling considerations should follow institutional practice appropriate for the reported BSL-2 classification and the datasheet associated with the selected format.

Review the specification table and variant selector together when choosing the appropriate format for assay scale, tissue context, and downstream readouts.

Biological background

Fibroblasts help maintain extracellular matrix and stromal architecture while responding to inflammatory, mechanical, and profibrotic signals. Tissue-specific fibroblast programs are widely studied in wound repair, fibrosis, matrix remodeling, and paracrine signaling. In this case, the stated prostate tissue and reproductive context can influence morphology, baseline signaling, and assay responsiveness.

Research relevance and current trends

  • Fibrosis & ECM remains an active area for experiments that compare tissue-specific phenotype, pathway response, or functional readouts in culture-based systems.
  • Reproductive biology remains an active area for experiments that compare tissue-specific phenotype, pathway response, or functional readouts in culture-based systems.
  • Researchers often combine morphological, molecular, and functional measurements to interpret phenotype in context.

Common research applications

  • Comparative cell-culture studies to track morphology, viability, or response to environmental cues.
  • Molecular or imaging-based analyses to connect phenotype with pathway-level changes.
  • Functional assays selected to match the stated tissue origin, cell type, and experimental question.

Changes in morphology, marker expression, proliferation, migration, barrier properties, reporter activity, or secreted factors are typically interpreted alongside matched controls and the selected culture conditions.

Notes for experimental interpretation

  • Potential confounders include donor-to-donor variability, passage-dependent phenotypic drift, substrate effects, serum or media composition, and differences between cryopreserved and expansion-stage material.
  • Use matched controls and confirm identity with morphology- and marker-based readouts suited to the stated cell type, tissue source, and downstream assay.

SKU:BHC16404684

Customization & Add-ons: Can't find the cell line you need—or require a custom cell-based solution for your project? We can help you source the best match or support custom cell line services for diverse research needs, including cell line sourcing and selection (species, tissue, and disease model matching), stable cell line engineering (overexpression, knockdown, or knockout via CRISPR/Cas9, shRNA, or sgRNA), reporter gene integration (GFP, RFP, luciferase, and other fluorescent or bioluminescent constructs), genome editing and knockin (point mutations, tagged endogenous proteins, conditional alleles), inducible expression systems (Tet-On/Off and other regulatable constructs), drug resistance marker selection (puromycin, G418, hygromycin, and others), custom growth and media optimisation for specific assay requirements, scale-up production for high-throughput screening campaigns, and authentication and QC services (STR profiling, mycoplasma testing, viability assessment). Click Talk to a Scientist to submit a request, email us at support@biohippo.com, or explore our Research Services for additional support—our team will follow up with feasibility details and next steps.

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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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