Mouse Astrocytes-hippocampal (MA-h)

SKU:BHC18500281
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iXCells Biotechnologies
iXCells Biotechnologies
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Overview
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Mouse astrocytes from Brain (hippocampal) for in vitro research and model development. Key attributes: Primary Cells, Custom Cells; Cryopreserved; Inquire about custom lot sizes, package sizes and marker characterization; BSL-1; Cryopreserved at P1. Commonly used in Nervous biology workflows (assay dependent).
Species Mouse
Cell Type Astrocytes
Tissue Details hippocampal
Disease Normal
Options selector
Catalog no. Form Size
10MU-011 Cryopreserved
Available Options

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

  • Options: Form: Cryopreserved; Size: Inquire about custom lot sizes, package sizes and marker characterization
  • Storage: Liquid nitrogen
  • Shipping: cold-chain shipment on dry ice.
  • Upon receipt: transfer to liquid nitrogen storage as soon as possible.
  • Sales terms and conditions: Please review prior to ordering.
Field Specification
Mfr No 10MU-011
Product Type
  • Cells
  • Primary Cells
  • Custom Cells
Shipping Dry ice
Species Mouse
Storage Liquid nitrogen

Overview

Mouse Astrocytes-hippocampal (MA-h) is a cell model used for research applications where physiologically relevant identity and donor background support interpretation of experimental readouts. Mouse Astrocytes derived from Brain (hippocampal) within the Nervous system.

Astrocytes are the majority cell type of the mammalian brain. Astrocytes have been implicated in a variety of supportive functions for their partner neurons in the CNS, such as neuronal guidance during development, and nutritional and metabolic support throughout life [1]. The functions of astroyctes are also complicated during pathological processes [2]. Numerous studies have demonstrated that astrocytes are among the most functionally diverse group of cells in the CNS [3]. Much of what we have learned about astrocytes is from in vitro studies and astrocyte culture is continually providing a useful tool in exploring the diverse property of astrocytes. iXCells Biotechnologies provides high quality Mouse Astrocytes-hippocampal (MA-h), which are isolated from neonate day two mouse brain (hippocampal) and cryopreserved at P1, with >0.5 million cells in each vial. MA-h express GFAP are negative for HIV-1, HBV, HCV, mycoplasma, bacteria, yeast, and fungi. They can further expand for 5 population doublings in Astrocyte Medium (Cat# MD-0039) under the condition suggested by iXCells Biotechnologies.

Key elements and design rationale

  • Cell identity: Astrocytes (Primary Cells, Custom Cells)
  • Source context: Brain; hippocampal; Nervous
  • Biosafety level: BSL-1 (follow your institution’s biosafety program and local regulations)

Product-specific elements (such as tissue source, donor background, and cell classification) help frame how results should be interpreted across assays and experimental conditions.

Biological background

Neural and glial cell models support studies of neuronal signaling, synaptic biology, neuroinflammation, and cell-type–specific responses to injury or disease-relevant stimuli.

Across primary and specialty cell models, experimental outcomes can be influenced by donor heterogeneity, passage history, confluence, and media composition. For interpretation, it is common to validate key markers or functional phenotypes in the user’s assay context and to document culture variables consistently.

Research relevance and current trends

  • Increasing use of primary and specialty cells to improve translational relevance for target biology and phenotypic screening.
  • Adoption of 3D culture formats and co-culture systems to better capture tissue microenvironments and cell–cell interactions.
  • Integration of functional readouts with single-cell and multi-omics profiling to connect phenotype with molecular state.
  • Growth of human-relevant neural models (including glial components) to study circuit- and inflammation-linked phenotypes.

Common research applications

  • Profile identity markers by flow cytometry or immunostaining in cultured cells
  • Quantify neurite outgrowth and synaptic marker profiles in neural cultures
  • Quantify functional responses to defined stimuli relevant to the model system
  • Compare baseline phenotype across donors/conditions using gene expression profiling
  • Measure neuroinflammatory signaling in neuron–glia or microglia-enriched models

Interpretation typically focuses on how a perturbation (e.g., cytokine exposure, metabolic stress, genetic manipulation, or compound treatment) shifts marker profiles or functional readouts relative to an appropriate control matched for donor and culture variables.

Notes for experimental interpretation

  • Donor-to-donor heterogeneity can influence baseline phenotype and treatment response; include biological replicates when feasible.
  • Passage number, confluence, and media composition can shift gene expression and functional readouts; track and report these variables consistently.
  • Contamination control (including routine mycoplasma monitoring) supports reproducibility in downstream assays.
  • Use appropriate negative/positive controls for the readout (e.g., unstimulated controls, pathway agonists/antagonists) to contextualize observed changes.

SKU:BHC18500281

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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