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Characterization of Molecular Mechanisms of In vivo UVR Induced Cataract
Published on: November 28, 2012
Identification of spontaneous age-related cataract in Microtus fortis
Tianqiong He1,2, Junkang Zhou3,4, Yixin Wen3,4
1Department of Laboratory Animal Science, Xiangya School of Medicine, Central South University; Changsha 410013. hetianqiong@csu.edu.cn.
Objectives:
Age-related cataract is the most common type of adult cataract and a leading cause of blindness. Currently, there are few reports on the establishment of animal models for age-related cataract. During the experimental breeding of Microtus fortis (M. fortis), we first observed that M. fortis aged 12 to 15 months could naturally develop cataracts. This study aims to explore the possibility of developing them as an animal model for age-related cataract via identifing and analyzing spontaneous cataract in M. fortis.
Methods:
The 12-month-old healthy M. fortis were served as a control group and 12-month-old cataractous M. fortis were served as an experimental group. The lens transparency was observed using the slit-lamp biomicroscope. Hematoxylin and eosin staining was used to detect pathological changes in the lens. Biochemical detection methods were applied to detect blood routine, blood glucose levels, the serum activities of superoxide dismutase (SOD), and glutathione peroxidase (GSH-Px) in both groups. Finally, real-time RT-PCR was used to detect the transcription levels of cataract-related genes in the lens of 2 groups.
Results:
Compared with the control group, the lens of cataract M. fortis showed severely visible opacity, the structure of lens was destroyed seriously, and some pathological damage, such as swelling, degeneration/necrosis, calcification, hyperplasia, and fiber liquefaction were found in lens epithelial cells (LECs). The fibrous structure was disorganized and irregularly distributed with morgagnian globules (MGs) aggregated in the degenerated lens fibers. There was no statistically significant difference in blood glucose levels between the experimental and control groups (P>0.05). However, white blood cell (WBC) count (P<0.05), lymphocyte count (P<0.01), and lymphocyte ratio (P<0.05) were significantly decreased, while neutrophil percentage (P<0.05) and monocyte ratio (P<0.01) were significantly increased. The serum activities of SOD and GSH-Px (both P<0.05) were both reduced. The mRNAs of cataract-related genes, including CRYAA, CRYBA1, CRYBB3, Bsfp1, GJA3, CRYBA2, MIP, HspB1, DNase2B, and GJA8, were significantly downregultaed in the lenses of the experimental group (all P<0.05).
Conclusions:
There are significant differences in lens pathological changes, peroxidase levels, and cataract-related gene expression between cataract and healthy M. fortis. The developed cataract spontaneously in M. fortis is closely related to age, the cataract M. fortis might be an ideal animal model for the research of age-related cataract.
Insights
Spontaneously developed cataracts in aged Microtus fortis (M. fortis) show significant lens pathology and altered gene expression. These findings suggest M. fortis may serve as an ideal animal model for age-related cataract research.
Area of Science:
- Ophthalmology
- Genetics
- Animal Models
Background:
- Age-related cataract is a primary cause of blindness, yet established animal models are scarce.
- Spontaneous cataract development was observed in aged Microtus fortis (M. fortis) during experimental breeding.
- This study investigates M. fortis as a potential animal model for age-related cataract research.
Purpose of the Study:
- To identify and analyze spontaneous cataracts in M. fortis.
- To evaluate M. fortis as a suitable animal model for age-related cataract.
Main Methods:
- Comparison of 12-month-old healthy and cataractous M. fortis.
- Slit-lamp biomicroscopy for lens transparency assessment.
- Histopathological analysis (H&E staining), biochemical assays (blood routine, glucose, SOD, GSH-Px), and real-time RT-PCR for gene expression analysis.
Main Results:
- Cataractous M. fortis exhibited severe lens opacity, structural damage, and pathological changes in lens epithelial cells.
- Significant alterations in white blood cell counts, lymphocyte ratios, and increased neutrophil/monocyte percentages were noted.
- Reduced serum activities of superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px), and downregulation of key cataract-related genes (e.g., CRYAA, GJA8) were observed.
Conclusions:
- Significant differences in lens pathology, oxidative stress markers, and cataract-related gene expression exist between healthy and cataractous M. fortis.
- The spontaneous cataract development in M. fortis is age-related.
- M. fortis presents a promising animal model for studying age-related cataracts.

