Target intelligence / Profile preview

Mitochondrial inner membrane (IMM) (IMM)

Target
IMM
Molecular classification
Other
01

Overview

The mitochondrial inner membrane (IMM) of tumor cells is a highly specialized lipid bilayer that serves as the primary site for oxidative phosphorylation and cellular energy production (Weinberg & Chandel, 2015, doi:10.1038/ncb3109). In cancer cells, the IMM often exhibits a higher negative membrane potential (hyperpolarization) compared to normal cells, which facilitates the selective accumulation of lipophilic cationic drugs known as mitocans (Neuzil et al., 2013, doi:10.1038/nrd3974). This structure contains the electron transport chain (ETC) complexes, ATP synthase, and various transporters that are vital for maintaining the metabolic flexibility required for tumor growth and survival (Fulda et al., 2010, doi:10.1038/nrd3259). Therapeutic strategies targeting the IMM focus on disrupting the ETC, increasing the production of reactive oxygen species (ROS), or permeabilizing the membrane to release pro-apoptotic factors like cytochrome c (Gorrini et al., 2013, doi:10.1038/nrd4002). Consequently, the IMM represents a strategic target for inducing selective apoptosis in malignant cells while potentially sparing healthy tissues with lower mitochondrial activity.

Other names
Inner mitochondrial membraneMitochondrial cristaeIMM
02

Mechanism of action

Inhibition of the electron transport chain, disruption of mitochondrial membrane potential, and induction of reactive oxygen species (ROS) to trigger apoptosis.

03

Biological functions

ApoptosisCell deathOther
04

Disease associations

Cancer
05

Safety considerations

Off-target toxicity to high-energy organs (heart, brain)Metabolic acidosisSystemic oxidative stress
06

Interacting drugs

Metformin

5 more in the full profile.

07

Biomarkers

Mitochondrial membrane potential (ΔΨm)Reactive oxygen species (ROS) levelsCytochrome c release

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