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Healthspan extension, slow appearance aging and improved muscle function in mice by pyrroloquinoline quinone (PQQ) and imidazopyrroloquinoline (IPQ) supplementation

07.27.26 | Toho University
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Maintaining and improving quality of life (QOL) and extending a healthy lifespan are among the most important objectives for an aging society. A research group led by Dr. Keiko Odera and Dr. Ryoya Takahashi (former professor) from the Department of Biochemistry, Faculty of Pharmaceutical Sciences has reveal that lifelong supplementation of PQQ (BioPQQ, Mitsubishi Gas Chemical Company, Inc.) and its derivative IPQ in senescence accelerated mouse (SAM) P8 reduces mortality risk during midlife and delays the progression of aging and age-related decline in muscular function. Furthermore, PQQ and IPQ supplementations in middle age improve age‑related declines in muscular function. This study was published in the Food & Function on May 11, 2026 (Open Access Article).

PQQ and IPQ supplementation, whether initiated early or middle age, is effective in ameliorating age-related alterations and extending healthy lifespan.

Key Findings

LIFELONG SUPPLEMENTATION:

MIDLIFE SUPPLEMENTATION:

SIGNIFICANT RESEARCH CONTRIBUTION IN HEALTHSPAN EXTENSION

To evaluate the lifespan-extending effects of candidate geroprotectors, yeast and nematodes ( Caenorhabditis elegans ) are often used because of their short

lifespans and relatively easy maintenance. Various compounds have been reported to extend the lifespan of nematodes, including plant compounds (e.g., resveratrol, curcumin, quercetin, astragalus polysaccharide, and ginsenosides), microbial products (e.g., rapamycin), and metabolic intermediates and drugs (e.g., nicotinamide mononucleotide, alpha ketoglutarate, and metformin). In contrast, compounds that extend the lifespan of mice maintained under normal conditions are limited to metformin and rapamycin, while resveratrol and curcumin have not shown promising effects. Even if some candidate geroprotectors are effective in invertebrates such as insects, they may not be effective in mammals such as mice. To the best of our knowledge, this is the first study to demonstrate that PQQ and IPQ supplementation, whether initiated early or in middle age, is effective in ameliorating age-related alterations, such as neuromuscular function, and extending healthy lifespan in mammals.

Food & Function

10.1039/d6fo00788k

Experimental study

Animals

Pyrroloquinoline quinone and imidazopyrroloquinoline intake diminish mortality risk during midlife and improve muscular dysfunctions with age in mice

11-May-2026

Authors K. I. and M. T. are employed by Mitsubishi Gas Chemical Company Inc. (MGC) (Tokyo Japan). Toho University's joint research is sponsored by MGC. This study was sponsored only by MGC.

Keywords

Article Information

Contact Information

Akira Muto
Toho University
akira.muto@med.toho-u.ac.jp

How to Cite This Article

APA:
Toho University. (2026, July 27). Healthspan extension, slow appearance aging and improved muscle function in mice by pyrroloquinoline quinone (PQQ) and imidazopyrroloquinoline (IPQ) supplementation. Brightsurf News. https://www.brightsurf.com/news/LKNOPW3L/healthspan-extension-slow-appearance-aging-and-improved-muscle-function-in-mice-by-pyrroloquinoline-quinone-pqq-and-imidazopyrroloquinoline-ipq-supplementation.html
MLA:
"Healthspan extension, slow appearance aging and improved muscle function in mice by pyrroloquinoline quinone (PQQ) and imidazopyrroloquinoline (IPQ) supplementation." Brightsurf News, Jul. 27 2026, https://www.brightsurf.com/news/LKNOPW3L/healthspan-extension-slow-appearance-aging-and-improved-muscle-function-in-mice-by-pyrroloquinoline-quinone-pqq-and-imidazopyrroloquinoline-ipq-supplementation.html.