4.6 Article

A Naturally-Derived Compound Schisandrin B Enhanced Light Sensation in the pde6c Zebrafish Model of Retinal Degeneration

Journal

PLOS ONE
Volume 11, Issue 3, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0149663

Keywords

-

Funding

  1. International Retinal Research Foundation
  2. National Key Basic Research Program [2013CB967502]
  3. Zhejiang Provincial Natural Science Foundation of China [LR13H120001]
  4. National Natural Science Foundation of China [81522014, 81371059]
  5. Schlumberger Foundation
  6. National Science Foundation [DMS-1440037, 1440038, 1438957]
  7. National Institutes of Health [5R01GM113242-02]
  8. Medical Panel, The Chinese University of Hong Kong [2041771]
  9. Research Grants Council of Hong Kong [2140694]
  10. National Scientific Foundation of China [81486126]
  11. Provincial Natural Scientific Foundation of China [8151503102000019]
  12. Direct For Mathematical & Physical Scien [1223107] Funding Source: National Science Foundation
  13. Direct For Mathematical & Physical Scien
  14. Division Of Mathematical Sciences [1440038, 1438957] Funding Source: National Science Foundation
  15. Division Of Mathematical Sciences [1223107] Funding Source: National Science Foundation

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Retinal degeneration is often progressive. This feature has provided a therapeutic window for intervention that may extend functional vision in patients. Even though this approach is feasible, few promising drug candidates are available. The scarcity of new drugs has motivated research to discover novel compounds through different sources. One such example is Schisandrin B (SchB), an active component isolated from the five-flavor fruit (Fructus Schisandrae) that is postulated in traditional Chinese medicines to exert prophylactic visual benefit. This SchB benefit was investigated in this study in pde6c(w59), a zebrafish retinal degeneration model. In this model, the pde6c gene (phosphodiesterase 6C, cGMP-specific, cone, alpha prime) carried a mutation which caused cone degeneration. This altered the local environment and caused the bystander rods to degenerate too. To test SchB on the pde6c(w59) mutants, a treatment concentration was first determined that would not cause morphological defects, and would initiate known physiological response. Then, the mutants were treated with the optimized SchB concentration before the appearance of retinal degeneration at 3 days postfertilization (dpf). The light sensation of animals was evaluated at 6 dpf by the visual motor response (VMR), a visual startle that could be initiated by drastic light onset and offset. The results show that the VMR of pde6c(w59) mutants towards light onset was enhanced by the SchB treatment, and that the initial phase of the enhancement was primarily mediated through the mutants' eyes. Further immunostaining analysis indicates that the treatment specifically reduced the size of the abnormally large rods. These observations implicate an interesting hypothesis: that the morphologically-improved rods drive the observed VMR enhancement. Together, these investigations have identified a possible visual benefit of SchB on retinal degeneration, a benefit that can potentially be further developed to extend functional vision in patients.

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