Medaka Regeneration

Medaka regeneration is the biological ability of medaka fish to repair or replace damaged tissues, making this model valuable for studying how organisms restore form and function. After injury, rapid wound closure creates a specialized wound epidermis, while progenitor cells and neighboring tissues coordinate cell proliferation, migration, and differentiation to rebuild missing structures. Researchers use medaka to examine the cellular behaviors and molecular signals that connect injury responses with tissue patterning during development. These studies can reveal conserved principles of tissue repair, clarify why regenerative capacity differs among vertebrates, and inform research on improving healing and regeneration in other organisms.

Medaka Regeneration - Related Videos

Research

JoVE Journal - Developmental Biology

Salinity-dependent Toxicity Assay of Silver Nanocolloids Using Medaka Eggs

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Cited by 2 •

2016

Embryonic stages are the most susceptible to xenobiotics. Although chemical toxicity depends on salinity, no method exists to test the salinity dependence of toxicity to aquatic organisms. Here, we describe a new and high-throughput method for determining the salinity dependence of toxicity to aquatic embryos.

Drug Treatment and In Vivo Imaging of Osteoblast-Osteoclast Interactions in a Medaka Fish Osteoporosis Model

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Cited by 10 •

2017

Small laboratory fish have become popular models for bone research on the mechanisms underlying human bone disorders and for the screening of bone-modulating drugs. In this report, we describe a protocol to assess the effect of alendronate on bone cells in medaka larvae with osteoporotic lesions.

Education

JoVE Science Education - Advanced Biology

An Introduction to Aging and Regeneration

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2023

Tissues are maintained through a balance of cellular aging and regeneration. Aging refers to the gradual loss of cellular function, and regeneration is the repair of damaged tissue generally mediated by preexisting adult or somatic stem cells. Scientists are interested in understanding the biological mechanisms behind these two complex processes. By doing so, researchers may be able to use somatic stem cells to treat degenerative diseases and develop therapies that could delay the effects of...

Research

JoVE Journal - Biology
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A System for Culturing Iris Pigment Epithelial Cells to Study Lens Regeneration in Newt

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Cited by 7 •

2011

In newt, the lens regenerates always from the dorsal iris by transdifferentiation of the iris pigmented epithelial cells (IPEs). Here we describe a procedure to culture dorsal and ventral newt IPE cells and their implantation to the newt eye. The implanted cells are then studied by tissue sectioning and immunohistochemistry.

An Assay for Lateral Line Regeneration in Adult Zebrafish

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Cited by 11 •

2014

Because many zebrafish models of neurological and non-neurological diseases are studied in the adult fish rather than the embryo/larvae, we developed a quantitative lateral line regenerative assay that can be applied to adult zebrafish disease models. The assay involved resolution at the 1) neuromast and 2) individual hair cell levels.

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