125
Views
6
CrossRef citations to date
0
Altmetric
Original Article

(3R)-5,6,7-trihydroxy-3-isopropyl-3-methylisochroman-1-one ameliorates retinal degeneration in Pde6brd10 mice

&
Pages 245-251 | Received 08 Jan 2018, Accepted 09 Feb 2018, Published online: 15 Mar 2018

References

  • Hartong DT, Berson EL, Dryja TP. Retinitis pigmentosa. Lancet 2006;368:1795–1809.
  • Pang JJ, Boye SL, Kumar A, et al. AAV-mediated gene therapy for retinal degeneration in the rd10 mouse containing a recessive PDEbeta mutation. Invest Ophthalmol Vis Sci 2008;49:4278–4283.
  • Komeima K, Rogers BS, Lu L, Campochiaro PA. Antioxidants reduce cone cell death in a model of retinitis pigmentosa. Proc Natl Acad Sci USA 2006;103:11300–11305.
  • Kiang AS, Humphries MM, Campbell M, Humphries P. Antioxidant therapy for retinal disease. Adv Exp Med Biol 2014;801:783–789.
  • Martínez-Fernández de la Cámara C, Salom D, Sequedo MD, et al. Altered antioxidant-oxidant status in the aqueous humor and peripheral blood of patients with retinitis pigmentosa. PLoS One 2013;8:e74223.
  • Kang K, Tarchick MJ, Yu X, et al. Carnosic acid slows photoreceptor degeneration in the Pde6b(rd10) mouse model of retinitis pigmentosa. Sci Rep 2016;6:22632–22642.
  • Li Y, Li T, Li JZ, Wu QS. (2R, 3S)-Pinobanksin-3-cinnamate ameliorates photoreceptor degeneration in Pde6rd10 mice. Cutan Ocul Toxicol 2017;36:273–277.
  • Kang K, Yu MZ. Protective effect of sulforaphane against retinal degeneration in the Pde6rd10 mouse model of retinitis pigmentosa. Curr Eye Res 2017;42:1684–1688.
  • Chen DY, Yang F, Lin YQ. Neuroprotective constituent from the seeds of Alpinia katsumadai Hayata. Phytochem Lett 2016;18:59–63.
  • Yi EH, Xu F, Li P. (3R)-5,6,7-trihydroxy-3-isopropyl-3-methylisochroman-1-one alleviates lipoteichoic acid-induced photoreceptor cell damage. Cutan Ocul Toxicol 2017. [Epub ahead of print]. DOI: 10.1080/15569527.2017.1409753
  • McLaughlin ME, Sandberg MA, Berson EL, Dryja TP. Recessive mutations in the gene encoding the beta-subunit of rod phosphodiesterase in patients with retinitis pigmentosa. Nat Genet 1993;4:130–134.
  • Yu MZ, Kang K, Bu P, et al. Deficiency of CC chemokine ligand 2 and decay-accelerating factor causes retinal degeneration in mice. Exp Eye Res 2015;138:126–133.
  • Zhang J, Xu D, Ouyang H, et al. Neuroprotective effects of methyl 3,4 dihydroxybenzoate in a mouse model of retinitis pigmentosa. Exp Eye Res 2017;162:86–96.
  • Liu X, Zhang Y, He Y, et al. Progress in histopathologic and pathogenesis research in a retinitis pigmentosa model. Histol Histopathol 2015;30:771–779.
  • Adibhatla RM, Hatcher JF. Lipid oxidation and peroxidation in CNS health and disease: from molecular mechanisms to therapeutic opportunities. Antioxid Redox Signal 2010;12:125–169.
  • Wong KS, Fong WP, Tsang PWK. Metergoline-induced cell death in Candida krusei. Fungal Biol 2011;115:302–309.
  • Xiao X, Liu J, Hu J, et al. Protective effects of protopine on hydrogen peroxide-induced oxidative injury of PC 12 cells via Ca2+ antagonism and antioxidant mechanisms. Eur J Pharmacol 2008;591:21–27.
  • Ali MA, Aly EM, Elawady AI. Effectiveness of selenium on acrylamide toxicity to retina. Int J Ophthalmol 2014;7:614–620.
  • Pan X, Yan D, Wang D, et al. Mitochondrion mediated apoptosis induced by acrylamide is regulated by a balance between Nrf2 antioxidant and MAPK signaling pathways in PC12 cells. Mol Neurobiol 2017;54:4781–4794.
  • Cingolani C, Rogers B, Lu L, et al. Retinal degeneration from oxidative damage. Free Radic Biol Med 2006;40:660–669.
  • Kobayashi M, Yamamoto M. Nrf2-Keap1 regulation of cellular defense mechanisms against electrophiles and reactive oxygen species. Adv Enzyme Regul 2006;46:113–140.
  • Itoh K, Wakabayashi N, Katoh Y, et al. Keap1 represses nuclear activation of antioxidant responsive elements by Nrf2 through binding to the amino-terminal Neh2 domain. Genes Dev 1999;13:76–86.
  • Rushmore TH, Morton MR, Pickett CB. The antioxidant responsive element. Activation by oxidative stress and identification of the DNA consensus sequence required for functional activity. J Biol Chem 1991;266:11632–11639.
  • Roehlecke C, Schumann U, Ader M, et al. Stress reaction in outer segments of photoreceptors after blue light irradiation. PLoS One 2013;8:e71570.
  • Jarrett SG, Lin H, Godley BF, Boulton ME. Mitochondrial DNA damage and its potential role in retinal degeneration. Prog Retin Eye Res 2008;27:596–607.
  • Kim KA, Shim SH, Ahn HR, Jung SH. Protective effects of the compounds isolated from the seed of Psoralea corylifolia on oxidative stress-induced retinal damage. Toxicol Appl Pharmacol 2013;269:109–120.
  • Lee CS, Han JH, Jang YY, et al. Differential effect of catecholamines and MPP(+) on membrane permeability in brain mitochondria and cell viability in PC12 cells. Neurochem Int 2002;40:361–369.
  • Wang C, Youle RJ. The role of mitochondria in apoptosis*. Annu Rev Genet 2009;43:95–118.
  • Xin BR, Liu JF, Kang J, Chan WP. (2R, 3S)-pinobanksin-3-cinnamate, a new flavonone from seeds of Alpinia galanga willd., presents in vitro neuroprotective effects. Mol Cell Toxicol 2014;10:165–172.
  • Ulbrich F, Schallner N, Coburn M, et al. Argon inhalation attenuates retinal apoptosos after ischemia/reperfusion injury in a time- and dose-dependent manner in rats. PLoS One 2014;9:e115984.
  • Wang DM, Li SQ, Zhu XY, et al. Protective effects of hesperidin against amyloid-β (Aβ) induced neurotoxicity through the voltage dependent anion channel 1 (VDAC1)-mediated mitochondrial apoptotic pathway in PC12 cells. Neurochem Res 2013;38:1034–1044.
  • Klettner A. Oxidative stress induced cellular signaling in RPE cells. Front Biosci (Schol Ed) 2012;4:392–411.
  • Pearson G, Robinson F, Beers GT, et al. Mitogen-activated protein (MAP) kinase pathways: regulation and physiological functions. Endocr Rev 2001;22:153–183.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.