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Updated: Jul 31, 2025

Lipid Supplementation for Longevity and Gene Transcriptional Analysis in Caenorhabditis elegans
Published on: December 9, 2022
Unraveling effects of anti-aging drugs on C. elegans using liposomes
Aihan Zhang1, Kuei Ching Hsiung1, Carina C Kern1
1Institute of Healthy Ageing, and Research Department of Genetics, Evolution and Environment, University College London, London, WC1E 6BT, UK.
Abstract:
Liposome-mediated delivery is a possible means to overcome several shortcomings with C. elegans as a model for identifying and testing drugs that retard aging. These include confounding interactions between drugs and the nematodes' bacterial food source and failure of drugs to be taken up into nematode tissues. To explore this, we have tested liposome-mediated delivery of a range of fluorescent dyes and drugs in C. elegans. Liposome encapsulation led to enhanced effects on lifespan, requiring smaller quantities of compounds, and enhanced uptake of several dyes into the gut lumen. However, one dye (Texas red) did not cross into nematode tissues, showing that liposomes cannot ensure the uptake of all compounds. Of six compounds previously reported to extend lifespan (vitamin C, N-acetylcysteine, glutathione (GSH), trimethadione, thioflavin T (ThT), and rapamycin), this effect was reproduced for the latter four in a condition-dependent manner. For GSH and ThT, antibiotics abrogated life extension, implying a bacterially mediated effect. With GSH, this was attributable to reduced early death from pharyngeal infection and associated with alterations of mitochondrial morphology in a manner suggesting a possible innate immune training effect. By contrast, ThT itself exhibited antibiotic effects. For rapamycin, significant increases in lifespan were only seen when bacterial proliferation was prevented. These results document the utility and limitations of liposome-mediated drug delivery for C. elegans. They also illustrate how nematode-bacteria interactions can determine the effects of compounds on C. elegans lifespan in a variety of ways.
Insights
Liposome delivery enhances drug effects and uptake in C. elegans aging studies, but limitations exist. Nematode-bacteria interactions significantly influence compound efficacy and lifespan extension.
Area of Science:
- Gerontology
- Biotechnology
- Molecular Biology
Background:
- C. elegans aging research faces challenges with drug delivery and nematode-bacteria interactions.
- Liposome-mediated delivery offers a potential solution to improve drug efficacy and uptake.
Purpose of the Study:
- To evaluate liposome-mediated delivery of drugs and dyes in C. elegans for aging studies.
- To investigate the impact of liposomes on compound uptake, efficacy, and nematode-bacteria interactions.
Main Methods:
- Liposome encapsulation of fluorescent dyes and known lifespan-extending compounds.
- Administration to C. elegans and assessment of lifespan, compound uptake, and effects in the presence/absence of antibiotics.
Main Results:
- Liposomes enhanced lifespan effects and compound uptake in C. elegans, but not for all compounds (e.g., Texas red).
- Antibiotics abrogated lifespan extension for glutathione (GSH) and thioflavin T (ThT), indicating bacterial mediation.
- Rapamycin showed lifespan benefits only when bacterial proliferation was inhibited, highlighting nematode-bacteria interactions.
Conclusions:
- Liposome delivery is a valuable tool for C. elegans aging research, with demonstrated utility and limitations.
- Nematode-bacteria interactions play a crucial role in determining the observed effects of compounds on C. elegans lifespan.

