TY - JOUR
T1 - A multidimensional metabolomics workflow to image biodistribution and evaluate pharmacodynamics in adult zebrafish
AU - Jackstadt, Madelyn M.
AU - Chamberlain, Casey A.
AU - Doonan, Steven R.
AU - Shriver, Leah P.
AU - Patti, Gary J.
N1 - Publisher Copyright:
© 2022. Published by The Company of Biologists Ltd.
PY - 2022/8
Y1 - 2022/8
N2 - An integrated evaluation of the tissue distribution and pharmacodynamic properties of a therapeutic is essential for successful translation to the clinic. To date, however, cost-effective methods to measure these parameters at the systems level in model organisms are lacking. Here, we introduce a multidimensional workflow to evaluate drug activity that combines mass spectrometry-based imaging, absolute drug quantitation across different biological matrices, in vivo isotope tracing and global metabolome analysis in the adult zebrafish. As a proof of concept, we quantitatively determined the whole-body distribution of the anti-rheumatic agent hydroxychloroquine sulfate (HCQ) and measured the systemic metabolic impacts of drug treatment. We found that HCQ distributed to most organs in the adult zebrafish 24 h after addition of the drug to water, with the highest accumulation of both the drug and its metabolites being in the liver, intestine and kidney. Interestingly, HCQ treatment induced organ-specific alterations in metabolism. In the brain, for example, HCQ uniquely elevated pyruvate carboxylase activity to support increased synthesis of the neuronal metabolite, N-acetylaspartate. Taken together, this work validates a multidimensional metabolomics platform for evaluating the mode of action of a drug and its potential off-target effects in the adult zebrafish.
AB - An integrated evaluation of the tissue distribution and pharmacodynamic properties of a therapeutic is essential for successful translation to the clinic. To date, however, cost-effective methods to measure these parameters at the systems level in model organisms are lacking. Here, we introduce a multidimensional workflow to evaluate drug activity that combines mass spectrometry-based imaging, absolute drug quantitation across different biological matrices, in vivo isotope tracing and global metabolome analysis in the adult zebrafish. As a proof of concept, we quantitatively determined the whole-body distribution of the anti-rheumatic agent hydroxychloroquine sulfate (HCQ) and measured the systemic metabolic impacts of drug treatment. We found that HCQ distributed to most organs in the adult zebrafish 24 h after addition of the drug to water, with the highest accumulation of both the drug and its metabolites being in the liver, intestine and kidney. Interestingly, HCQ treatment induced organ-specific alterations in metabolism. In the brain, for example, HCQ uniquely elevated pyruvate carboxylase activity to support increased synthesis of the neuronal metabolite, N-acetylaspartate. Taken together, this work validates a multidimensional metabolomics platform for evaluating the mode of action of a drug and its potential off-target effects in the adult zebrafish.
KW - Drug discovery
KW - Mass spectrometry imaging
KW - Metabolomics
KW - Pharmacodynamics
KW - Zebrafish
UR - http://www.scopus.com/inward/record.url?scp=85136052916&partnerID=8YFLogxK
U2 - 10.1242/dmm.049550
DO - 10.1242/dmm.049550
M3 - Article
C2 - 35972155
AN - SCOPUS:85136052916
SN - 1754-8403
VL - 15
JO - DMM Disease Models and Mechanisms
JF - DMM Disease Models and Mechanisms
IS - 8
M1 - dmm049550
ER -