RMIT University
Browse

A homeostatic, chip-based platform for zebrafish larvae immobilization and long-term imaging

conference contribution
posted on 2024-10-31, 20:05 authored by Timo Friedrich, Feng Zhu, Donald WlodkowicDonald Wlodkowic, Jan Kaslin
Zebrafish larvae are ideal for toxicology and drug screens due to their transparency, small size and similarity to humans on the genetic level. Using modern imaging techniques, cells and tissues can be dynamically visualised and followed over days in multiple zebrafish. Yet continued imaging experiments require specialized conditions such as: moisture and heat control to maintain specimen homeostasis. Chambers that control the environment are generally very expensive and are not always available for all imaging platforms. A highly customizable mounting configuration with built-in means of controlling temperature and media flow would therefore be a valuable tool for long term imaging experiments. Rapid prototyping using 3D printing is particularly suitable as a production method as it offers high flexibility in design, is widely available and allows a high degree of customizing. We study neural regeneration in zebrafish. Regeneration is limited in humans, but zebrafish recover from neural damage within days. Yet, the underlying regenerative mechanisms remain unclear. We developed an agarose based mounting system that holds the embryos in defined positions along removable strips. Homeostasis and temperature control is ensured by channels circulating buffer and heated water. This allows to image up to 120 larvae simultaneously for more than two days. Its flexibility and the low-volume, high larvae ratio will allow screening of small compound libraries. Taken together, we offer a low cost, highly adaptable solution for long term in-vivo imaging.

Funding

Ecotoxicology-on-a-chip: towards smart devices in environmental biomonitoring

Australian Research Council

Find out more...

History

Related Materials

  1. 1.
    DOI - Is published in 10.1117/12.2202390

Start page

1

End page

10

Total pages

10

Outlet

Proceedings SPIE 9668, Micro+Nano Materials, Devices, and Systems

Name of conference

Micro+Nano Materials, Devices, and Systems

Publisher

International Society for Optics and Photonics

Place published

Sydney, Australia

Start date

2015-12-06

End date

2015-12-06

Language

English

Former Identifier

2006071652

Esploro creation date

2020-06-22

Fedora creation date

2017-03-21

Usage metrics

    Scholarly Works

    Keywords

    Exports

    RefWorks
    BibTeX
    Ref. manager
    Endnote
    DataCite
    NLM
    DC