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April 5, 2026Cancer Research0 citations

Abstract 3271: Integrated metabolic and cell-health profiling as a framework for defining cellular state

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KSKayla SylvesterALAnthony LauerGVGediminas Vidugiris

Key Points

  • The research aims to define cellular states by integrating multiple metabolic and cell-health indicators.
  • Developed an integrated bioluminescent profiling strategy
  • Measured ATP, NAD, and total NADP(H) from low-input samples
  • Assessed metabolic activity and nutrient utilization (glucose, lactate, malate)
  • Applied the approach in primary T cells and cancer-cell models
  • Identified early glycolytic states linked to rapid T cell expansion
  • Distinguished metabolic patterns within 72 hours of T cell activation
  • Resolved nutrient-dependent shifts in cancer cell metabolic balance
  • Connected early metabolic signatures to later proliferation outcomes

Abstract

Abstract Defining cellular state requires understanding how multiple metabolic features change together, yet most assays capture only single parameters. We developed an integrated bioluminescent profiling strategy that measures coordinated metabolic and cell-health indicators from the same low-input sample, providing a practical way to resolve early pathway activity and cellular condition across immune and cancer systems. The approach uses a suite of luminescent assays to quantify ATP, NAD, total NADP(H), metabolic activity, and nutrient utilization including glucose consumption, lactate secretion, and malate accumulation. Together, these features report on glycolytic engagement, mitochondrial contribution, and redox balance, generating compact multiparametric profiles not achievable with isolated assays. In primary T cells, the integrated profiles distinguished early glycolytic, NAD-rich states linked to rapid expansion from more oxidative states associated with memory-biased phenotypes. These early metabolic patterns emerged within the first 72 hours of activation and aligned with later differences in proliferation and T cell-subset composition, demonstrating that early metabolic signatures capture functional trajectories beyond initial activation markers. In cancer-cell models, the same measurements resolved nutrient-dependent shifts in metabolic balance and stress adaptation, illustrating how environmental composition shapes pathway use and overall cellular fitness. The workflow uses standard luminescent instrumentation, minimal material, and is adaptable to additional metabolic markers as the platform evolves. By capturing coordinated metabolic and cell-health features within a scalable framework, this approach provides a practical way to define cellular state and relate early metabolic patterns to later functional behavior across diverse experimental contexts. Citation Format: Kayla Sylvester, Anthony C. Lauer, Gediminas Vidugiris, Donna Leippe, Jolanta Vidugiriene. Integrated metabolic and cell-health profiling as a framework for defining cellular state 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 3271.

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Cite This Study

Sylvester et al. (2026) studied this question.

synapsesocial.com/papers/69d1fcd4a79560c99a0a27c3https://doi.org/10.1158/1538-7445.am2026-3271
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