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April 5, 2026Cancer Research0 citations

Abstract 475: A bioluminescent assay for detection of fatty acid oxidation.

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MBMaggie BachMVMichael P. ValleyHWHui Wang

Key Result

A new bioluminescent assay simplifies fatty acid oxidation measurement, generating strong signal-to-background ratios of 200 in HEK293 cells and 100 in primary human hepatocytes within one hour.

Key Points

  • This research aims to develop a straightforward bioluminescent assay for measuring fatty acid oxidation in various cell types.
  • Developed a bioluminescent assay using a fatty acid-linked pro-luciferin substrate.
  • Validated the assay with cancer cell lines and primary cells.
  • Assessed signal-to-background ratios and sensitivity to CPT1 inhibition.
  • Utilized a convenient add-and-read format for high-throughput screening.
  • Achieved a strong signal-to-background ratio of approximately 200 in HEK293 cells.
  • Attained a ratio of about 100 in primary human hepatocytes.
  • Demonstrated sensitivity to inhibition by etomoxir, confirming reliance on CPT1 activity.

Structured PICO

P
Population
Cancer cell lines (HEK293) and primary cells (primary human hepatocytes)
I
Intervention
Bioluminescent assay based on a fatty acid-linked pro-luciferin substrate
O
Outcome
Luminescence proportional to fatty acid oxidation (FAO) activitysurrogate

A newly developed bioluminescent assay enables convenient, high-throughput quantification of fatty acid oxidation in cells.

Abstract

Abstract Research scientists measure fatty acid oxidation (FAO) to assess how efficiently cells and tissues convert fats into energy and how this process shifts under different physiological or pathological conditions. Because FAO is central to mitochondrial energy metabolism, its measurement reveals insights into metabolic flexibility, mitochondrial health, and substrate preference. Altered FAO is implicated in many diseases including diabetes, obesity, heart failure, and cancer, making it an important marker for both mechanistic studies and drug screening. Additionally, FAO measurements help evaluate the effects of exercise, diet, or pharmacological interventions on energy balance and cellular metabolism. Radiolabeled fatty acids and oxygen consumption assays are the most common methods for measuring fatty acid oxidation (FAO), but these approaches can be labor-intensive and technically demanding. To simplify FAO measurement, we developed a bioluminescent assay based on a fatty acid-linked pro-luciferin substrate. The substrate readily enters cells, where FAO enzymes remove the fatty acid moiety, releasing a modified luciferin precursor. Addition of a detection reagent converts this intermediate to luciferin, generating luminescence proportional to FAO activity. The signal scales with cell number and incubation time and is compatible with both cancer cell lines and primary cells. With just 20,000 cells and a 1-hour incubation, the assay generates strong signal-to-background ratios - about 200 in HEK293 cells and 100 in primary human hepatocytes. The assay is sensitive to inhibition by etomoxir, confirming dependence on carnitine palmitoyltransferase (CPT1) activity, a key regulatory step in mitochondrial FAO. After media removal, all steps are performed in an add-and-read format suitable for 96- or 384-well plates, enabling convenient, high-throughput quantification of FAO. AI was used to help construct this abstract. Citation Format: Maggie Bach, Michael P. Valley, Hui Wang, Xavier Aguilar-Enriquez, Wenhui Zhou, Jolanta Vidugiriene. A bioluminescent assay for detection of fatty acid oxidation abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 475.

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Cite This Study

Bach et al. (2026) studied this question. A new bioluminescent assay simplifies fatty acid oxidation measurement, generating strong signal-to-background ratios of 200 in HEK293 cells and 100 in primary human hepatocytes within one hour.

synapsesocial.com/papers/69d1fdd4a79560c99a0a4199https://doi.org/10.1158/1538-7445.am2026-475
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