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April 13, 2026APOPTOSIS2 citationsOpen Access

Targeting VDAC1 to protect against mitochondria-linked cell death pathways: apoptosis, pyroptosis, ferroptosis, and associated diseases

ASAnna Shteinfer-KuzmineANA. Karunanithi NiveditaMSM. Santhanam

Key Points

  • The aim is to explore the role of VDAC1 in various programmed cell death pathways and its potential as a therapeutic target.
  • Examined VDAC1 overexpression and oligomerization in different cell lines.
  • Investigated the effects of VDAC1 inhibitors VBIT-4 and VBIT-12 on programmed cell death.
  • Evaluated mitochondrial function and reactive oxygen species production.
  • Used mouse models for Alzheimer's disease and inflammatory bowel disease.
  • VDAC1 oligomerization is linked to apoptosis, pyroptosis, and ferroptosis.
  • VBIT-4 and VBIT-12 inhibited multiple forms of programmed cell death.
  • Specific inhibitors reduced mitochondrial dysfunction and reactive oxygen species levels.
  • In disease models, VBIT-4 and VBIT-12 protected against cell death and associated pathologies.

Abstract

Abstract The pathways of programmed cell death (PCD), including apoptosis, pyroptosis, and ferroptosis, are interconnected. They can be activated simultaneously within tissues or cell lines and are often associated with various diseases. Thus, identifying a common player and inhibitor targeting several PCD types is essential. Here, we show that overexpression and oligomerization of the mitochondrial gatekeeper voltage-dependent anion channel 1 (VDAC1) is involved in apoptosis, pyroptosis, and ferroptosis, and specific VDAC1 oligomerization inhibitors, VBIT-4 and VBIT-12, prevented multiple forms of PCD triggered by various stimuli. In addition, they mitigated mitochondrial dysfunction, reduced reactive oxygen species production and intracellular Ca 2 ⁺ levels, preserved mitochondrial-associated hexokinase, and inhibited assembly/activation of the NLRP3 inflammasome. In Alzheimer’s disease and inflammatory bowel disease mouse models, VBIT-4 and VBIT-12, respectively, protected against apoptosis, pyroptosis, ferroptosis, and disease-associated pathologies. Thus, we show that VDAC1 oligomerization represents a prime target for VBIT-4 and VBIT-12 that can simultaneously inhibit various PCD forms and diseases associated with enhanced PCD and/or inflammation.

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Cite This Study

Shteinfer-Kuzmine et al. (2026) studied this question.

synapsesocial.com/papers/69dc874a3afacbeac03e9ad6https://doi.org/10.1007/s10495-025-02217-7
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