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- Human Astrocytes-spinal cord
Astrocytes are the major cell type in the mammalian brain. They have been implicated in a variety of supportive functions for their partner neurons in the central nervous system, such as neuronal guidance during development, ion and water homeostasis, blood flow regulation, neurotransmission, energy metabolism, and immune defense. Recent studies have shown that spinal cord astrocytes contribute to neuroinflammation by chemokine expression, which leads to the recruitment of “inflammatory” monocytes and neutrophils to the lesion site. Experimentally, spinal cord astrocytes have also been used to study the wobbler mutation and astrogliosis. As the importance of astrocyte function in the nervous system becomes more recognized, particularly in regards to the modulation of neural activity, astrocyte cultures will provide a useful tool for exploring the diverse properties and functions of these cells.
HA-sp from ScienCell Research Laboratories are isolated from human spinal cord. HA-sp are cryopreserved at passage one and delivered frozen. Each vial contains >5 x 10⁵ cells in 1 ml volume. HA-sp are characterized by immunofluorescence with antibody specific to GFAP. HA-sp are negative for HIV-1, HBV, HCV, mycoplasma, bacteria, yeast, and fungi. HA-sp are guaranteed to further expand for 15 population doublings under the conditions provided by ScienCell Research Laboratories.
Recommended Medium
It is recommended to use Astrocyte Medium (AM, Cat. #1801) for culturing HA-sp in vitro.
Catalog No. | 1820 |
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Country of Manufacture | United States |
Product Code | HA-sp |
Size/Quantity | 5 x 10⁵ cells/vial. |
Product Use | HA-sp are for research use only. They are not approved for human or animal use, or for application in in vitro diagnostic procedures. |
Storage | Upon receiving, directly and immediately transfer the cells from dry ice to liquid nitrogen and keep the cells in liquid nitrogen until they are needed for experiments. |
Shipping Info | Dry ice. |
References | [1] G. I. Hatton (2002) Glial-neuronal interactions in the mammalian brain. Adv. in Physiol. Edu. 26:225-237. [2] Van der Laan, L. J. W., De Groot, C. J. A., Elices, M. J. and Dijkstran, C. D. (1997) Extracellular matrix proteins expressed by human adult astrocytes in vivo and in vitro: an astrocyte surface protein containing the CS1 domain contributes to binding of lymphoblasts. J. Neurosci. Res. 50:539-548. [3] Chen Y., and Swanson, R. A. (2003) Astrocytes and brain injury. J. Cereb. Blood Flow Metab. 23:137-149. |
1.) Linker RA, Lee DH, Ryan S, van Dam AM, Conrad R, Bista P, Zeng W, Hronowsky X, Buko A, Chollate S, Ellrichmann G, Br?ck W, Dawson K, Goelz S, Wiese S, Scannevin RH, Lukashev M, Gold R. (2011) "Fumaric acid esters exert neuroprotective effects in neuroinflammation via activation of the Nrf2 antioxidant pathway." Brain. 134: 678-92.
ScienCell Research Laboratories (SRL) takes pride in being a resource for researchers all over the world. The publications listed here are not meant as an endorsement or confirmation of the reliability of the research methods. Our sole intention of sharing the research publications listed here is to provide research related insights and innovations of our products with other researchers.
CAT. NO. | CODE | DESCRIPTION | PRICE | Qty | |
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MEDIA | |||||
1801 | AM | Astrocyte Medium |
$127.00
As low as:
$85.00
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MOLECULAR BIOLOGY | |||||
1824 | HA-sp cDNA | Human Astrocyte-spinal cord cDNA |
$453.00
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1825 | HA-sp tRNA | Human Astrocyte-spinal cord Total RNA |
$401.00
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1826 | HA-sp Lysate | Human Astrocyte-spinal cord Lysate |
$438.00
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1827 | HA-sp miRNA | Human Astrocyte-spinal cord MicroRNA |
$374.00
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1829 | HA-sp gDNA | Human Astrocyte-spinal cord genomic DNA |
$438.00
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