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April 5, 2026Cancer Research0 citations

Abstract 3404: TR-107, a novel mitochondrial ClpP activator, exhibits potent antitumor activity in adrenocortical carcinoma models

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GKGeorge KaradimovNational Cancer InstituteSKSuresh KumarNational Cancer InstituteYKYoo Sun KimNational Cancer Institute

Key Points

  • Investigate the antitumor effects of TR-107, a mitochondrial ClpP activator, in adrenocortical carcinoma models.
  • Tested TR-107 in NCI-H295R cells and patient-derived organoids for cytotoxicity.
  • Conducted flow cytometry to assess cell cycle arrest and apoptosis.
  • Measured cell viability and apoptotic fractions through Annexin V/PI assays.
  • Evaluated the combinatorial effects of TR-107 with IGF-1R inhibitors.
  • TR-107 showed cytotoxicity with IC50 values of approximately 24 nM and 15 nM in different models.
  • Induced G1 and G2 phase cell cycle arrest and increased apoptosis in treated cells.
  • Significant viability reductions were observed in ACC patient-derived organoids and xenograft organoids when treated with TR-107.
  • TR-107 combined with IGF-1R inhibitors resulted in synergistic reductions in cell viability.

Abstract

Abstract Adrenocortical carcinoma (ACC) is a rare, aggressive malignancy arising from the adrenal cortex with limited effective treatment options. The pathophysiology of ACC is characterized by aberrant steroidogenesis and mitochondrial enrichment, reflecting the central role of mitochondria in adrenal steroid hormone synthesis and tumor metabolism. We hypothesized that therapeutically targeting mitochondrial function could yield enhanced antitumor activity in ACC. To test this, we evaluated TR-107, a novel small-molecule agonist of the mitochondrial protease ClpP, which disrupts mitochondrial proteostasis and bioenergetics. TR-107 exhibited potent cytotoxicity at low nanomolar concentrations in NCI-H295R cells (IC50 ≈ 24 nM) and in ACC patient-derived organoids (PDOs) (IC50 ≈ 15 nM), significantly reducing cell viability and confluency in vitro. EdU-based flow cytometry demonstrated reduced S-phase populations and cell size following 48-hour TR-107 treatment, consistent with G1 and G2 arrest. Annexin V/PI assays revealed increased early and late apoptotic fractions in treated ACC cells, confirming apoptotic cell death. Similarly, ACC PDOs and patient-derived xenograft organoids (PDXOs) exhibited substantial decreases in viability upon ClpP activation. Given the high expression of IGF-2 and IGF-1R signaling in ACC, we next examined the combinatorial potential of TR-107 with IGF-1R inhibition. Co-treatment produced synergistic reductions in viability across NCI-H295R cells and PDOs. Collectively, these findings identify mitochondrial ClpP activation as a promising therapeutic strategy for ACC and demonstrate that TR-107 exerts potent antitumor activity as a monotherapy or in combination with IGF-1R blockade. These results provide strong preclinical support for advancing ClpP agonists toward clinical development for the treatment of ACC. Citation Format: George Karadimov, Suresh Kumar, Yoo Sun Kim, Haiqing Fu, Edwin Iwanowicz, Lee M. Graves, Mirit Aladjem, Myriem Boufraqech, Jaydira Del Rivero. TR-107, a novel mitochondrial ClpP activator, exhibits potent antitumor activity in adrenocortical carcinoma models 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 3404.

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Karadimov et al. (2026) studied this question.

synapsesocial.com/papers/69d1fe07a79560c99a0a4876https://doi.org/10.1158/1538-7445.am2026-3404
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