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January 21, 2026Biomolecules1 citationsOpen Access

Development of Mitochondria-Targeted PARP Inhibitors

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PDPāvels DimitrijevsMMMarina MilićPAPavel Arsenyan

Key Points

  • The study aims to create PARP inhibitors that specifically target mitochondria to improve cancer treatment efficacy.
  • Synthesis of trialkyl(aryl)phosphonium conjugates of olaparib and rucaparib.
  • Evaluation of PARP1 inhibition, cardiolipin binding affinity, and cytotoxicity.
  • Testing in BRCA1-deficient HCC1937 breast cancer cells and non-malignant H9C2 cardiomyocytes.
  • All conjugates demonstrated potent PARP1 inhibition comparable to parent drugs (IC50 = 3.4–17 nM).
  • Compounds 2d and 6c showed strong cardiolipin binding and significantly enhanced cytotoxicity in HCC1937 cells.
  • Cytotoxicity toward H9C2 cells was lower, indicating improved selectivity.

Abstract

PARP inhibitors are a clinically validated class of anticancer therapeutics that exploit synthetic lethality to target homologous recombination-deficient tumors, such as those carrying BRCA1/2 mutations. Nevertheless, the rational design of mitochondria-targeted PARP inhibitors capable of selective mitochondrial accumulation and organelle-specific PARP modulation remains an unresolved objective. To enable organelle-specific modulation of PARP activity, we synthesized a series of trialkyl(aryl)phosphonium conjugates of olaparib and rucaparib designed to target mitochondria by cardiolipin binding. Their activity was evaluated by PARP1 inhibition, cardiolipin affinity, and cytotoxicity in BRCA1-deficient HCC1937 breast cancer cells and non-malignant H9C2 cardiomyocytes. All conjugates retained potent PARP1 inhibition (IC50 = 3.4–17 nM), comparable to the parent drugs. Several derivatives, particularly compounds 2d and 6c, exhibited strong cardiolipin binding (EC50 = 12.99 µM and 6.77 µM, respectively) and significantly enhanced cytotoxicity in HCC1937 cells (IC50 = 0.93 and 2.01 µM), outperforming olaparib and rucaparib. Notably, cytotoxicity toward H9C2 cells was lower, indicating a favorable selectivity profile. Phosphonium conjugation preserves PARP1 inhibitory activity while conferring mitochondrial targeting and enhanced anticancer potency. These findings support the development of mitochondria-targeted PARP inhibitors as a next-generation therapeutic strategy with the potential to improve efficacy and overcome resistance in HR-deficient tumors.

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Cite This Study

Dimitrijevs et al. (2026) studied this question.

synapsesocial.com/papers/69706d13b6488063ad5c1cdchttps://doi.org/10.3390/biom16010165
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