» Articles » PMID: 24523672

Novel Cell Separation Method for Molecular Analysis of Neuron-astrocyte Co-cultures

Overview
Specialty Cell Biology
Date 2014 Feb 14
PMID 24523672
Citations 13
Authors
Affiliations
Soon will be listed here.
Abstract

Over the last decade, the importance of astrocyte-neuron communication in neuronal development and synaptic plasticity has become increasingly clear. Since neuron-astrocyte interactions represent highly dynamic and reciprocal processes, we hypothesized that many astrocyte genes may be regulated as a consequence of their interactions with maturing neurons. In order to identify such neuron-responsive astrocyte genes in vitro, we sought to establish an expedited technique for separation of neurons from co-cultured astrocytes. Our newly established method makes use of cold jet, which exploits different adhesion characteristics of subpopulations of cells (Jirsova etal., 1997), and is rapid, performed under ice-cold conditions and avoids protease-mediated isolation of astrocytes or time-consuming centrifugation, yielding intact astrocyte mRNA with approximately 90% of neuronal RNA removed. Using this purification method, we executed genome-wide profiling in which RNA derived from astrocyte-only cultures was compared with astrocyte RNA derived from differentiating neuron-astrocyte co-cultures. Data analysis determined that many astrocytic mRNAs and biological processes are regulated by neuronal interaction. Our results validate the cold jet as an efficient method to separate astrocytes from neurons in co-culture, and reveals that neurons induce robust gene-expression changes in co-cultured astrocytes.

Citing Articles

Inhibition of post-lanosterol biosynthesis by fentanyl: potential implications for Fetal Fentanyl Syndrome (FFS).

Korade Z, Anderson A, Sharma K, Tallman K, Kim H, Porter N Mol Psychiatry. 2024; 29(12):3942-3949.

PMID: 38844533 DOI: 10.1038/s41380-024-02622-5.


Activity-dependent translation dynamically alters the proteome of the perisynaptic astrocyte process.

Sapkota D, Kater M, Sakers K, Nygaard K, Liu Y, Koester S Cell Rep. 2022; 41(3):111474.

PMID: 36261025 PMC: 9624251. DOI: 10.1016/j.celrep.2022.111474.


Metoprolol Inhibits Developmental Brain Sterol Biosynthesis in Mice.

Allen L, Mirnics K Biomolecules. 2022; 12(9).

PMID: 36139049 PMC: 9496459. DOI: 10.3390/biom12091211.


Targeting neurotransmitter-mediated inflammatory mechanisms of psychiatric drugs to mitigate the double burden of multimorbidity and polypharmacy.

Matt S Brain Behav Immun Health. 2021; 18:100353.

PMID: 34647105 PMC: 8495104. DOI: 10.1016/j.bbih.2021.100353.


Noncanonical Transmission of a Measles Virus Vaccine Strain from Neurons to Astrocytes.

Poelaert K, Williams R, Matullo C, Rall G mBio. 2021; 12(2).

PMID: 33758092 PMC: 8092232. DOI: 10.1128/mBio.00288-21.


References
1.
Acarin L, Gonzalez B, Castellano B . Glial activation in the immature rat brain: implication of inflammatory transcription factors and cytokine expression. Prog Brain Res. 2001; 132:375-89. DOI: 10.1016/S0079-6123(01)32089-7. View

2.
Mauch D, Nagler K, Schumacher S, Goritz C, Muller E, Otto A . CNS synaptogenesis promoted by glia-derived cholesterol. Science. 2001; 294(5545):1354-7. DOI: 10.1126/science.294.5545.1354. View

3.
Engelking L, Liang G, Hammer R, Takaishi K, Kuriyama H, Evers B . Schoenheimer effect explained--feedback regulation of cholesterol synthesis in mice mediated by Insig proteins. J Clin Invest. 2005; 115(9):2489-98. PMC: 1184040. DOI: 10.1172/JCI25614. View

4.
Jirsova K, Sodaar P, Mandys V, Bar P . Cold jet: a method to obtain pure Schwann cell cultures without the need for cytotoxic, apoptosis-inducing drug treatment. J Neurosci Methods. 1998; 78(1-2):133-7. DOI: 10.1016/s0165-0270(97)00146-5. View

5.
Medina J, Tabernero A . Astrocyte-synthesized oleic acid behaves as a neurotrophic factor for neurons. J Physiol Paris. 2002; 96(3-4):265-71. DOI: 10.1016/s0928-4257(02)00015-3. View