Lens Cortex

The lens cortex is the outer, softer region of the eye’s crystalline lens, surrounding its compact nucleus and supporting transparency and visual focusing. During development, epithelial cells near the lens equator differentiate into elongated fiber cells that accumulate crystallin proteins, align in concentric layers, and progressively lose their nuclei and organelles. These cellular changes give the cortex its optical properties and allow lens shape to adjust during accommodation. In developmental biology, the lens cortex provides a model for studying epithelial-to-fiber differentiation, tissue organization, organelle degradation, and the cellular defects that can compromise transparency and contribute to cataract formation.

Lens Cortex - 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.

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.

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.

Lens Transplantation in Zebrafish and its Application in the Analysis of Eye Mutants

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Cited by 4 •

2009

Lens development involves interactions with other tissues. Several zebrafish eye mutants are characterized by an abnormally small lens size. Here we demonstrate a lens transplantation experiment to determine whether this phenotype is due to intrinsic causes or defective interactions with tissues that surround the lens.

Recording of Local Field Potential in Mouse Hippocampal-Entorhinal Cortex Slices

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2025

The video demonstrates a procedure to record the local field potential (LFP) in mouse hippocampal-entorhinal cortex slices. Electrical stimulation is provided at the CA3 stratum radiatum of the hippocampus, which causes changes in the postsynaptic potential at the CA1 stratum pyramidale. The combined change in the membrane potential of CA1 neurons, termed the local field potential, is recorded.

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