Hydroxychloroquine Causes Early Inner Retinal Toxicity and Affects Autophagosome–Lysosomal Pathway and Sphingolipid Metabolism in the Retina

被引:0
|
作者
Koushik Mondal
Hunter Porter
Jerome Cole
Hemang K. Pandya
Sandip K. Basu
Sufiya Khanam
Chi-Yang Chiu
Vinay Shah
Daniel J. Stephenson
Charles E. Chalfant
Nawajes Mandal
机构
[1] Hamilton Eye Institute,Department of Ophthalmology
[2] The University of Tennessee Health Science Center,Department of Ophthalmology, Dean McGee Eye Institute
[3] The University of Oklahoma Health Sciences Center,Division of Biostatistics, Department of Preventive Medicine
[4] University of Tennessee Health Science Center,Department of Cell Biology, Microbiology and Molecular Biology
[5] University of South Florida,Research Service
[6] The Moffitt Cancer Center,Department of Anatomy and Neurobiology
[7] James A. Haley Veterans Hospital,Department of Pharmaceutical Sciences, College of Pharmacy
[8] The University of Tennessee Health Science Center,undefined
[9] The University of Tennessee Health Science Center,undefined
[10] Memphis VA Medical Center,undefined
来源
Molecular Neurobiology | 2022年 / 59卷
关键词
HCQ (Hydroxychloroquine); Retina; Autophagy; Lysosome; Sphingolipids;
D O I
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学科分类号
摘要
Hydroxychloroquine (HCQ) is an anti-malarial drug but also widely used to treat autoimmune diseases like arthritis and lupus. Although there have been multiple reports of the adverse effect of prolonged HCQ usage on the outer retina, leading to bull’s-eye maculopathy, the effect of HCQ toxicity on the inner retina as well as on overall visual functions has not been explored in detail. Furthermore, lack of an established animal model of HCQ toxicity hinders our understanding of the underlying molecular mechanisms. Here, using a small clinical study, we confirmed the effect of HCQ toxicity on the inner retina, in particular the reduction in central inner retinal thickness, and established a mouse model of chronic HCQ toxicity that recapitulates the effects observed in human retina. Using the mouse model, we demonstrated that chronic HCQ toxicity results in loss of inner retinal neurons and retinal ganglion cells (RGC) and compromises visual functions. We further established that HCQ treatment prevents autophagosome–lysosome fusion and alters the sphingolipid homeostasis in mouse retina. Our results affirm the notion that HCQ treatment causes early damage to the inner retina and affects visual functions before leading to characteristic toxicity in the macular region of the outer retina, ‘bull’s-eye maculopathy.’ We also provide insights into the underlying molecular mechanisms of HCQ retinal toxicity that may involve autophagy–lysosomal defects and alterations in sphingolipid metabolism.
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页码:3873 / 3887
页数:14
相关论文
共 8 条
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    Mondal, Koushik
    Porter, Hunter
    Cole, Jerome
    Pandya, Hemang K.
    Basu, Sandip K.
    Khanam, Sufiya
    Chi-Yang Chiu
    Shah, Vinay
    Stephenson, Daniel J.
    Chalfant, Charles E.
    Mandal, Nawajes
    [J]. MOLECULAR NEUROBIOLOGY, 2022, 59 (06) : 3873 - 3887
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    Koushik Mondal
    Hunter Porter
    Jerome Cole II
    Hemang K. Pandya
    Sandip K. Basu
    Sufiya Khanam
    Chi-Yang Chiu
    Vinay Shah
    Daniel J. Stephenson
    Charles E. Chalfant
    Nawajes Mandal
    [J]. Molecular Neurobiology, 2022, 59 : 6611 - 6611
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