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Laser Capture Microdissection of Highly Pure Trabecular Meshwork from Mouse Eyes for Gene Expression Analysis
Published on: June 3, 2018
Microarray-based gene expression analysis combined with laser capture microdissection is beneficial in investigating
Makoto Shirai1, Noriyo Niino1, Kazuhiko Mori2
1Medicinal Safety Research Laboratories, Daiichi Sankyo Co., Ltd., 1-16-13 Kitakasai, Edogawa-ku, Tokyo 134-0081, Japan.
Abstract:
The retina consists of several layers, and drugs can affect the retina and choroid separately. Therefore, investigating the target layers of toxicity can provide useful information pertaining to its modes of action. Herein, we compared gene expression profiles obtained via microarray analyses using samples of target layers collected via laser capture microdissection and samples of the whole globe of the eye of rats treated with N-methyl-N-nitrosourea. Pathway analyses suggested changes in the different pathways between the laser capture microdissection samples and the whole globe samples. Consistent with the histological distribution of glial cells, upregulation of several inflammation-related pathways was noted only in the whole globe samples. Individual gene expression analyses revealed several gene expression changes in the laser capture microdissection samples, such as caspase- and glycolysis-related gene expression changes, which is similar to previous reports regarding N-methyl-N-nitrosourea-treated animals; however, caspase- and glycolysis-related gene expressions did not change or changed unexpectedly in the whole globe samples. Analyses of the laser capture microdissection samples revealed new potential candidate genes involved in the modes of action of N-methyl-N-nitrosourea-induced retinal toxicity. Collectively, our results suggest that specific retinal layers, which may be targeted by specific toxins, are beneficial in identifying genes responsible for drug-induced ocular toxicity.
Insights
Investigating specific retinal layers improves understanding of drug-induced ocular toxicity. Laser capture microdissection reveals unique gene expression changes, unlike whole-globe analysis, identifying key toxicity mechanisms.
Area of Science:
- Ophthalmology
- Toxicology
- Molecular Biology
Background:
- Drugs can differentially affect retinal and choroidal layers.
- Targeted layer analysis offers insights into drug toxicity mechanisms.
Purpose of the Study:
- Compare gene expression profiles in specific retinal layers versus whole-eye samples.
- Identify genes and pathways involved in N-methyl-N-nitrosourea (NMU)-induced retinal toxicity.
Main Methods:
- Microarray analysis of laser capture microdissected retinal layers and whole rat globes.
- Pathway and individual gene expression analyses.
Main Results:
- Pathway analysis revealed distinct changes between microdissected samples and whole globes.
- Inflammation-related pathways upregulated in whole globes, not specific layers.
- Caspase- and glycolysis-related gene changes identified in microdissected samples, but not whole globes.
Conclusions:
- Laser capture microdissection is crucial for identifying specific genes in drug-induced ocular toxicity.
- Targeted analysis reveals NMU toxicity mechanisms missed by whole-globe studies.
- This approach aids in discovering genes responsible for ocular toxicity.
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