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Updated: Mar 9, 2026

Measurement of Fatty Acid β-Oxidation in a Suspension of Freshly Isolated Mouse Hepatocytes
Published on: September 9, 2021
Early PQQ supplementation has persistent long-term protective effects on developmental programming of hepatic
Karen R Jonscher1, Michael S Stewart2, Alba Alfonso-Garcia3
1Department of Anesthesiology, University of Colorado Anschutz Medical Campus, Aurora, Colorado, USA; karen.jonscher@ucdenver.edu.
Insights
Early PQQ supplementation protects offspring from diet-induced liver damage. This antioxidant shows lasting benefits against hepatic lipotoxicity and inflammation, even after withdrawal.
Area of Science:
- Nutritional Science
- Developmental Biology
- Hepatology
Background:
- Nonalcoholic fatty liver disease (NAFLD) is a growing global health concern.
- Maternal obesity and Western diets (WD) during pregnancy increase offspring's risk of NAFLD.
- Pyrroloquinoline quinone (PQQ) is a vital antioxidant found in breast milk with developmental benefits.
Purpose of the Study:
- To investigate PQQ's protective effects against NAFLD in offspring exposed to maternal obesity and WD.
- To determine if prenatal PQQ supplementation can mitigate diet-induced liver damage in mice.
Main Methods:
- Mice were fed a WD during pregnancy, with some receiving PQQ supplementation.
- Offspring were assessed for metabolic changes, liver lipids, oxidative stress, and gene expression.
- Long-term effects were evaluated after PQQ withdrawal post-weaning.
Main Results:
- PQQ supplementation reduced liver lipids, body fat, and hepatic inflammation markers (ceramides, oxidative stress, pro-inflammatory genes).
- Metabolic flexibility improved, and fatty acid oxidation genes were upregulated in PQQ-treated offspring.
- These protective effects persisted long-term, even after PQQ cessation.
Conclusions:
- Prenatal and early postnatal PQQ supplementation offers significant protection against developmental programming of NAFLD.
- PQQ may be a promising strategy to combat the epidemic of NAFLD in future generations.
- Long-term benefits highlight PQQ's potential in early life nutritional interventions.
Abstract:
Nonalcoholic fatty liver disease (NAFLD) is widespread in adults and children. Early exposure to maternal obesity or Western-style diet (WD) increases steatosis and oxidative stress in fetal liver and is associated with lifetime disease risk in the offspring. Pyrroloquinoline quinone (PQQ) is a natural antioxidant found in soil, enriched in human breast milk, and essential for development in mammals. We investigated whether a supplemental dose of PQQ, provided prenatally in a mouse model of diet-induced obesity during pregnancy, could protect obese offspring from progression of NAFLD. PQQ treatment given pre- and postnatally in WD-fed offspring had no effect on weight gain but increased metabolic flexibility while reducing body fat and liver lipids, compared with untreated obese offspring. Indices of NAFLD, including hepatic ceramide levels, oxidative stress, and expression of proinflammatory genes (Nos2, Nlrp3, Il6, and Ptgs2), were decreased in WD PQQ-fed mice, concomitant with increased expression of fatty acid oxidation genes and decreased Pparg expression. Notably, these changes persisted even after PQQ withdrawal at weaning. Our results suggest that supplementation with PQQ, particularly during pregnancy and lactation, protects offspring from WD-induced developmental programming of hepatic lipotoxicity and may help slow the advancing epidemic of NAFLD in the next generation.-Jonscher, K. R., Stewart, M. S., Alfonso-Garcia, A., DeFelice, B. C., Wang, X. X., Luo, Y., Levi, M., Heerwagen, M. J. R., Janssen, R. C., de la Houssaye, B. A., Wiitala, E., Florey, G., Jonscher, R. L., Potma, E. O., Fiehn, O. Friedman, J. E. Early PQQ supplementation has persistent long-term protective effects on developmental programming of hepatic lipotoxicity and inflammation in obese mice.
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