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An inducible model of chronic hyperglycemia

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posted on 2025-08-20, 05:45 authored by TR Tucker, CA Knitter, DM Khoury, S Eshghi, S Tran, Abigail SharrockAbigail Sharrock, TJ Wiles, David AckerleyDavid Ackerley, JS Mumm, MJ Parsons
Transgene driven expression of Escherichia coli nitroreductase (NTR1.0) renders animal cells susceptible to the antibiotic metronidazole (MTZ). Many NTR1.0/MTZ ablation tools have been reported in zebrafish, which have significantly impacted regeneration studies. However, NTR1.0-based tools are not appropriate for modeling chronic cell loss as prolonged application of the required MTZ dose (10 mM) is deleterious to zebrafish health. We established that this dose corresponds to the median lethal dose (LD50) of MTZ in larval and adult zebrafish and that it induced intestinal pathology. NTR2.0 is a more active nitroreductase engineered from Vibrio vulnificus NfsB that requires substantially less MTZ to induce cell ablation. Here, we report on the generation of two new NTR2.0-based zebrafish lines in which acute β-cell ablation can be achieved without MTZ-associated intestinal pathology. For the first time, we were able to sustain β-cell loss and maintain elevated glucose levels (chronic hyperglycemia) in larvae and adults. Adult fish showed significant weight loss, consistent with the induction of a diabetic state, indicating that this paradigm will allow the modeling of diabetes and associated pathologies.

Funding

Funder: NIH Office of the Director | Grant ID: R01OD020376

History

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Preferred citation

Tucker, T. R., Knitter, C. A., Khoury, D. M., Eshghi, S., Tran, S., Sharrock, A. V., Wiles, T. J., Ackerley, D. F., Mumm, J. S. & Parsons, M. J. (2023). An inducible model of chronic hyperglycemia. Dmm Disease Models and Mechanisms, 16(8), dmm050215-. https://doi.org/10.1242/dmm.050215

Journal title

Dmm Disease Models and Mechanisms

Volume

16

Issue

8

Publication date

2023-08-01

Pagination

dmm050215

Publisher

The Company of Biologists

Publication status

Published

Online publication date

2023-08-04

ISSN

1754-8403

eISSN

1754-8411

Article number

dmm050215

Language

en