Lens Nucleus

The lens nucleus is the dense, central region of the vertebrate eye lens that helps focus light onto the retina and contributes to visual clarity. It forms as lens epithelial cells differentiate into elongated fiber cells, lose their nuclei and other organelles, and become tightly packed with crystallin proteins; progressive compression and biochemical changes make the nucleus relatively compact and optically distinct from surrounding lens regions. Studying the lens nucleus helps explain accommodation, age-related changes in lens stiffness, and the development of nuclear cataracts, in which protein aggregation and reduced transparency impair vision. Its organization also informs research on lens development and ocular disease.

Lens Nucleus - Related Videos

Research

JoVE Journal - Developmental Biology

Preparation and Immunofluorescence Staining of Bundles and Single Fiber Cells from the Cortex and Nucleus of the Eye Lens

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Cited by 7 •

2023

This protocol describes methods to prepare peripheral, mature, and nuclear eye lens fiber cells for immunofluorescence staining to study complex cell-to-cell interdigitations and the membrane architecture.

Assessment of Zebrafish Lens Nucleus Localization and Sutural Integrity

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Cited by 7 •

2019

These protocols were developed to analyze cortical lens morphology, structural integrity of the zebrafish lens sutures in fixed and live lenses and to measure the position of the zebrafish lens nucleus along the anterior-posterior axis.

Eye Lens Dissection: A Technique to Observe Zebrafish Lens Morphology

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2023

This video describes the protocol which is developed to dissect adult and larval zebrafish lenses to analyze cortical lens morphology and structural integrity of the lens sutures.

Co-culturing of Ventral Hippocampal and Nucleus Accumbens

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2025

This video demonstrates the process of preparing ventral hippocampal and nucleus accumbens tissues from mouse brains for co-culture. Neurons extend projections to form synaptic connections between the ventral hippocampal and nucleus accumbens tissues. This method allows studying neuronal interactions between these two brain regions, offering insights into cognition, behavior, and neurological disorders.

Simulating the Mechanics of Lens Accommodation via a Manual Lens Stretcher

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Cited by 9 •

2018

We present an efficient method of studying lens accommodation by using a manual lens stretcher. The protocol mimics physiological accommodation by pulling the zonules connected around the lens capsule, thereby, stretching the lens.

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