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Article

Metabolomic Study of a Rat Model of Retinal Detachment

1
School of Ophthalmology, Optometry and Eye Hospital, Wenzhou Medical University, Wenzhou 325027, China
2
Department of Ophthalmology, Putuo Poeple’s Hospital, Tongji University, Shanghai 200070, China
3
Department of Ophthalmology, Shanghai General Hospital, National Clinical Research Center for Eye Diseases, Shanghai 200080, China
4
State Key Laboratory of Optometry, Ophthalmology, and Vision Science, Wenzhou 325027, China
5
Zhejiang Provincial People’s Hospital, Affiliated People’s Hospital of Hangzhou Medical College, Shangtang Road 158#, Gongshu District, Hangzhou 310014, China
*
Author to whom correspondence should be addressed.
These authors contributed equally to this work.
Metabolites 2022, 12(11), 1077; https://doi.org/10.3390/metabo12111077
Submission received: 30 August 2022 / Revised: 9 October 2022 / Accepted: 2 November 2022 / Published: 7 November 2022
(This article belongs to the Special Issue Metabolic Studies in Ophthalmology and Visual Science)

Abstract

Retinal detachment is a serious ocular disease leading to photoreceptor degeneration and vision loss. However, the mechanism of photoreceptor degeneration remains unclear. The aim of this study was to investigate the altered metabolism pathway and physiological changes after retinal detachment. Eight-week-old male SD rats were fed, and the model of retinal detachment was established by injecting hyaluronic acid into the retinal space. The rats were euthanized 3 days after RD, and the retinal tissues were sectioned for analysis. Untargeted lipid chromatography-mass spectrometry lipidomic was performed to analyze the metabolite changes. A total of 90 significant metabolites (34 in anionic and 56 in cationic models) were detected after retinal detachment. The main pathways were (1) histidine metabolism; (2) phenylalanine, tyrosine, and tryptophan biosynthesis; and (3) glycine, serine, and threonine metabolism. The key genes corresponding to each metabolic pathway were verified from the Gene Expression Omnibus (GEO) database of human retinal samples. The results indicated that the production of histamine by histidine decarboxylase from histidine reduced after RD (p < 0.05). Xanthine, hypoxanthine, guanine, and guanosine decreased after RD (p < 0.05). Decreased xanthine and hypoxanthine may reduce the antioxidant ability. The decreased guanosine could not provide enough sources for inosine monophosphate production. Tyrosine is an important neurotransmitter and was significantly reduced after RD (p < 0.05). Citrate was significantly reduced with the increase of ATP-citrate lyase enzyme (ACLY) (p < 0.05). We inferred that lipid oxidation might increase rather than lipid biogenesis. Thus, this study highlighted the main changes of metabolite and physiological process after RD. The results may provide important information for photoreceptor degeneration.
Keywords: retinal detachment; metabolomics; amino acid; histamine; retina degeneration retinal detachment; metabolomics; amino acid; histamine; retina degeneration
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MDPI and ACS Style

She, X.; Zhou, Y.; Liang, Z.; Wei, J.; Xie, B.; Zhang, Y.; Shen, L. Metabolomic Study of a Rat Model of Retinal Detachment. Metabolites 2022, 12, 1077. https://doi.org/10.3390/metabo12111077

AMA Style

She X, Zhou Y, Liang Z, Wei J, Xie B, Zhang Y, Shen L. Metabolomic Study of a Rat Model of Retinal Detachment. Metabolites. 2022; 12(11):1077. https://doi.org/10.3390/metabo12111077

Chicago/Turabian Style

She, Xiangjun, Yifan Zhou, Zhi Liang, Jin Wei, Bintao Xie, Yun Zhang, and Lijun Shen. 2022. "Metabolomic Study of a Rat Model of Retinal Detachment" Metabolites 12, no. 11: 1077. https://doi.org/10.3390/metabo12111077

APA Style

She, X., Zhou, Y., Liang, Z., Wei, J., Xie, B., Zhang, Y., & Shen, L. (2022). Metabolomic Study of a Rat Model of Retinal Detachment. Metabolites, 12(11), 1077. https://doi.org/10.3390/metabo12111077

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