| Literature DB >> 28114834 |
Miguel Marchena1, Beatriz Villarejo-Zori1, Josefa Zaldivar-Diez2, Valle Palomo2, Carmen Gil2, Catalina Hernández-Sánchez1, Ana Martínez2, Enrique J de la Rosa1.
Abstract
Retinitis pigmentosa (RP) is an inherited retinal dystrophy that courses with progressive degeneration of retinal tissue and loss of vision. Currently, RP is an unpreventable, incurable condition. We propose glycogen synthase kinase 3 (GSK-3) inhibitors as potential leads for retinal cell neuroprotection, since the retina is also a part of the central nervous system and GSK-3 inhibitors are potent neuroprotectant agents. Using a chemical genetic approach, diverse small molecules with different potency and binding mode to GSK-3 have been used to validate and confirm GSK-3 as a pharmacological target for RP. Moreover, this medicinal chemistry approach has provided new leads for the future disease-modifying treatment of RP.Entities:
Keywords: GSK-3 inhibitors; glaucoma; retinal diseases; retinitis pigmentosa
Mesh:
Substances:
Year: 2017 PMID: 28114834 PMCID: PMC6009897 DOI: 10.1080/14756366.2016.1265522
Source DB: PubMed Journal: J Enzyme Inhib Med Chem ISSN: 1475-6366 Impact factor: 5.051
Figure 2.Organotypic culture design. (A) The retinas were mounted with the photoreceptors in direct contact to the Teflon disc. (B) After extraction from the eyeball, four cuts were made in the retina to facilitate attachment. Two retinas were cultured in each well.
Figure 1.Chemical structures of the selected candidates and their GSK-3 inhibition features.
Figure 3.GSK-3 inhibitors decreased photoreceptor cell death in rd10 mouse retinal explants. Representative images of groups (A) vehicle, (B) treatment with compound 1 and (C) treatment with compound 2. D–E. Graphic representation of data: (D) mean ± standard error is represented for each experimental group. The number in brackets corresponds to the number of retinas; (E) Individual retinal values are depicted. Significances were calculated with t student test **: p < 0.01, ***: p < 0.001.
Figure 4.GSK-3 inhibitors decreased NMDA-induced retinal ganglion cell death. Representative images of groups (A) NMDA, (B) NMDA + compound 1 and (C) NMDA + compound 2. D–E. Graphic representation of data: (D) mean ± standard error is represented for each experimental group. The number in brackets corresponds to the number of retinas; (E) Individual retinal values are depicted. Significances were calculated with t student test *: p < 0.05, **: p < 0.01.
Figure 5.Tideglusib decreased photoreceptor cell death in rd10 mouse retinal explants. Representative images of groups (A) vehicle, (B) tideglusib. C–D. Graphic representation of data: (C) mean ± standard error is represented for each experimental group. The number in brackets corresponds to the number of retinas; (D) Individual retinal values are depicted. Significances were calculated with t student test *: p < 0.05.