Reduced Disc Shedding and Phagocytosis of Photoreceptor Outer Segment Contributes to Kava Kava Extract–induced Retinal Degeneration in F344/N Rats

Author:

Yamashita Haruhiro12,Hoenerhoff Mark J.13,Shockley Keith R.4,Peddada Shyamal D.4,Gerrish Kevin E.5,Sutton Deloris1,Cummings Connie A.6,Wang Yu1,Julie Foley F.1,Behl Mamta1,Waidyanatha Suramya1,Sills Robert C.1,Pandiri Arun R.1

Affiliation:

1. National Toxicology Program, National Institute of Environmental Health Sciences (NIEHS), Research Triangle Park, North Carolina, USA

2. Taisho Pharmaceutical Co. Ltd., Saitama, Japan

3. In Vivo Animal Core, Unit for Laboratory Animal Medicine, University of Michigan Medical School, Ann Arbor, Michigan, USA

4. Biostatistics and Computational Biology Branch, NIEHS, Research Triangle Park, North Carolina, USA

5. Molecular Genomics Core Laboratory, NIEHS, Research Triangle Park, North Carolina, USA

6. UltraPath Imaging, Research Triangle Park, North Carolina, USA

Abstract

There was a significant increase in the incidence of retinal degeneration in F344/N rats chronically exposed to Kava kava extract (KKE) in National Toxicology Program (NTP) bioassay. A retrospective evaluation of these rat retinas indicated a similar spatial and morphological alteration as seen in light-induced retinal degeneration in albino rats. Therefore, it was hypothesized that KKE has a potential to exacerbate the light-induced retinal degeneration. To investigate the early mechanism of retinal degeneration, we conducted a 90-day F344/N rat KKE gavage study at doses of 0 and 1.0 g/kg (dose which induced retinal degeneration in the 2-year NTP rat KKE bioassay). The morphological evaluation indicated reduced number of phagosomes in the retinal pigment epithelium (RPE) of the superior retina. Transcriptomic alterations related to retinal epithelial homeostasis and melatoninergic signaling were observed in microarray analysis. Phagocytosis of photoreceptor outer segment by the underlying RPE is essential to maintain the homeostasis of the photoreceptor layer and is regulated by melatonin signaling. Therefore, reduced photoreceptor outer segment disc shedding and subsequent lower number of phagosomes in the RPE and alterations in the melatonin pathway may have contributed to the increased incidences of retinal degeneration observed in F344/N rats in the 2-year KKE bioassay.

Publisher

SAGE Publications

Subject

Cell Biology,Toxicology,Molecular Biology,Pathology and Forensic Medicine

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1. Effects of Different Spectrum of LEDs on Retinal Degeneration Through Regulating Endoplasmic Reticulum Stress;Translational Vision Science & Technology;2023-06-26

2. Retinal Toxicity Induced by Chemical Agents;International Journal of Molecular Sciences;2022-07-25

3. DARK Classics in Chemical Neuroscience: Kava;ACS Chemical Neuroscience;2020-01-06

4. Responses of Transgenic Melatonin-Enriched Goats on LPS Stimulation and the Proteogenomic Profiles of Their PBMCs;International Journal of Molecular Sciences;2018-08-15

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