State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, Institutes of Brain Science, Fudan University, Shanghai, 200032, China.
Neurosci Bull. 2024 Sep;40(9):1245-1260. doi: 10.1007/s12264-024-01242-x. Epub 2024 Jun 4.
Abnormal visual experience during the critical period can cause deficits in visual function, such as amblyopia. High magnesium (Mg) supplementary can restore ocular dominance (OD) plasticity, which promotes the recovery of amblyopic eye acuity in adults. However, it remains unsolved whether Mg could recover binocular vision in amblyopic adults and what the molecular mechanism is for the recovery. We found that in addition to the recovery of OD plasticity, binocular integration can be restored under the treatment of high Mg in amblyopic mice. Behaviorally, Mg-treated amblyopic mice showed better depth perception. Moreover, the effect of high Mg can be suppressed with transient receptor potential melastatin-like 7 (TRPM7) knockdown. Collectively, our results demonstrate that high Mg could restore binocular visual functions from amblyopia. TRPM7 is required for the restoration of plasticity in the visual cortex after high Mg treatment, which can provide possible clinical applications for future research and treatment of amblyopia.
在关键期异常的视觉体验会导致视觉功能缺陷,例如弱视。高镁(Mg)补充可以恢复眼优势(OD)可塑性,促进成年弱视眼视力的恢复。然而,高镁是否能恢复成年弱视者的双眼视觉,以及恢复的分子机制是什么,仍未解决。我们发现,除了 OD 可塑性的恢复外,高镁处理还可以恢复弱视小鼠的双眼整合。行为上,高镁处理的弱视小鼠表现出更好的深度知觉。此外,用瞬时受体电位 melastatin 样 7(TRPM7)敲低可以抑制高镁的作用。总之,我们的结果表明,高镁可以从弱视中恢复双眼视觉功能。TRPM7 是高镁处理后视觉皮层可塑性恢复所必需的,这为未来弱视的研究和治疗提供了可能的临床应用。