The effects of aging on rod bipolar cell ribbon synapses

Author:

Shrestha Abhishek PORCID,Rameshkumar Nirujan,Boff Johane Martins,Rajmanna Rhea,Chandrasegaran Thadshayini,Courtney Frederick E,Zenisek DavidORCID,Vaithianathan ThirumaliniORCID

Abstract

AbstractThe global health concern posed by age-related visual impairment highlights the need for further research focused on the visual changes that occur during the process of aging. To date, multiple sensory alterations related to aging have been identified, including morphological and functional changes in inner hair cochlear cells, photoreceptors, and retinal ganglion cells. While some age-related morphological changes are known to occur in rod bipolar cells in the retina, their effect on these cells and on their connection to other cells via ribbon synapses remain elusive. To investigate the effects of aging on rod bipolar cells and their ribbon synapses, we compared synaptic calcium currents, calcium dynamics, and exocytosis in zebrafish (Danio rerio) that were middle-aged (MA,18 months) or old-aged (OA, 36 months). The bipolar cell terminal in OA zebrafish exhibited a decreased number of synaptic ribbons, an increased ribbon length, and a decrease in local Ca2+signals at the tested ribbon location with little change in the overall magnitude of the calcium current or exocytosis in response to brief pulses. Staining of the synaptic ribbons with antibodies specific for PKCα revealed shortening of the inner nuclear and plexiform layers (INL and IPL). These findings shed light on age-related changes in the retina that are related to synaptic ribbons and calcium signals.

Publisher

Cold Spring Harbor Laboratory

Reference90 articles.

1. Ageing vision and falls: a review;Journal of Physiological Anthropology,2018

2. Aging and vision

3. Ageing changes in the eye

4. Sensory-specific impairment among older people. An investigation using both sensory thresholds and subjective measures across the five senses;PLoS One,2018

5. Pathophysiological changes in inner hair cell ribbon synapses in the ageing mammalian cochlea;J Physiol,2020

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