Photoreceptor avascular privilege is shielded by soluble VEGF receptor-1

Author:

Luo Ling12,Uehara Hironori1,Zhang Xiaohui1,Das Subrata K1,Olsen Thomas1,Holt Derick1,Simonis Jacquelyn M1,Jackman Kyle1,Singh Nirbhai1,Miya Tadashi R1,Huang Wei1,Ahmed Faisal1,Bastos-Carvalho Ana3,Le Yun Zheng4,Mamalis Christina1,Chiodo Vince A5,Hauswirth William W5,Baffi Judit3,Lacal Pedro M6,Orecchia Angela7,Ferrara Napoleone8,Gao Guangping910,Young-hee Kim3,Fu Yingbin1,Owen Leah1,Albuquerque Romulo3,Baehr Wolfgang1,Thomas Kirk10,Li Dean Y10,Chalam Kakarla V11,Shibuya Masabumi12,Grisanti Salvatore13,Wilson David J14,Ambati Jayakrishna3,Ambati Balamurali K1

Affiliation:

1. Moran Eye Center, University of Utah, Salt Lake City, United States

2. Department of Ophthalmology, The 306th Hospital of PLA, Beijing, China

3. Ophthalmology and Visual Sciences, University of Kentucky, Lexington, United States

4. Department of Medicine and Harold Hamm Oklahoma Diabetes Center, University of Oklahoma Health Sciences Center, Oklahoma City, United States

5. Ophthalmology, University of Florida-Gainesville, Gainesville, United States

6. Laboratory of Molecular Oncology, IDI-IRCCS, Istituto Dermopatico dell’Immacolata-IRCCS, Rome, Italy

7. Laboratory of Molecular and Cell Biology, Istituto Dermopatico dell’Immacolata-IRCCS, Rome, Italy

8. Pharmaceutical Research, Genentech, South San Francisco, United States

9. Gene Therapy Center, University of Massachusetts Medical School, Worcester, United States

10. Department of Internal Medicine, Division of Cardiology, University of Utah, Salt Lake City, United States

11. Department of Ophthalmology, University of Florida, Jacksonville, Jacksonville, United States

12. Molecular Oncology, Institute of Physiology and Medicine, Jobu University, Takasaki, Japan

13. Ophthalmology, University of Luebeck, Luebeck, Germany

14. Department of Ophthalmology, Casey Eye Institute, Oregon Health & Science University, Portland, United States

Abstract

Optimal phototransduction requires separation of the avascular photoreceptor layer from the adjacent vascularized inner retina and choroid. Breakdown of peri-photoreceptor vascular demarcation leads to retinal angiomatous proliferation or choroidal neovascularization, two variants of vascular invasion of the photoreceptor layer in age-related macular degeneration (AMD), the leading cause of irreversible blindness in industrialized nations. Here we show that sFLT-1, an endogenous inhibitor of vascular endothelial growth factor A (VEGF-A), is synthesized by photoreceptors and retinal pigment epithelium (RPE), and is decreased in human AMD. Suppression of sFLT-1 by antibodies, adeno-associated virus-mediated RNA interference, or Cre/lox-mediated gene ablation either in the photoreceptor layer or RPE frees VEGF-A and abolishes photoreceptor avascularity. These findings help explain the vascular zoning of the retina, which is critical for vision, and advance two transgenic murine models of AMD with spontaneous vascular invasion early in life.

Funder

National Eye Institute

RPB Physician-Scientist Award

American Diabetes Association

VA Merit Award

Beckman Initiative for Macular Research

Doris Duke Charitable Foundation

Burroughs Wellcome Fund

Ellison Medical Foundation

Programme for Advanced Medical Education sponsored by Fundação Calouste Gulbenkian, Fundação Champalimaud, Ministério da Saúde, and Fundação para a Ciência e Tecnologia, Portugal

National Natural Science Foundation of China

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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