Target intelligence / Profile preview

Mitochondrial inner membrane potential (ΔΨm) and lipid bilayer (ΔΨm/IMM)

Target
ΔΨm/IMM
Molecular classification
Organelle component, Lipid bilayer, Electrochemical gradient, Other
01

Overview

The mitochondrial inner membrane potential (ΔΨm) and the lipid bilayer are essential for cellular bioenergetics and homeostasis. The ΔΨm is an electrochemical gradient generated by the electron transport chain, which drives the synthesis of ATP through oxidative phosphorylation (StatPearls, 2023). The inner mitochondrial membrane (IMM) lipid bilayer is uniquely composed of cardiolipin, a phospholipid that organizes respiratory complexes into supercomplexes and maintains membrane curvature (PubMed, PMID: 28213318). Dysregulation of the ΔΨm or damage to the lipid bilayer is a hallmark of various conditions, including neurodegenerative diseases, cardiovascular disorders, and cancer, often leading to the release of pro-apoptotic factors like cytochrome c (NIH, 2021). Therapeutic interventions include mitochondrial uncouplers like 2,4-dinitrophenol, which reduce the ΔΨm to increase metabolic rate, and membrane-stabilizing agents like elamipretide, which bind to cardiolipin to restore mitochondrial efficiency (Journal of Clinical Investigation, 2018). Additionally, the negative charge of the ΔΨm is frequently exploited to deliver mitochondria-targeted antioxidants, such as MitoQ, directly into the matrix.

Other names
Inner mitochondrial membraneMitochondrial membrane potentialΔΨmIMMMitochondrial lipid bilayer
02

Mechanism of action

Pharmacological modulation involves the dissipation of the proton gradient via uncoupling, stabilization of cardiolipin-rich membrane domains, or the use of the electrochemical gradient for the sequestration of mitochondria-targeted molecules.

03

Biological functions

ATP synthesisOxidative phosphorylationApoptosis regulationIon homeostasisMitochondrial protein importOther
04

Disease associations

CancerNeurodegenerative diseaseCardiovascular diseaseIschemia-reperfusion injuryMetabolic syndromeOther
05

Safety considerations

HyperthermiaSystemic mitochondrial toxicityNarrow therapeutic windowOff-target effects on non-mitochondrial membranesLactic acidosis
06

Interacting drugs

2,4-Dinitrophenol

5 more in the full profile.

07

Biomarkers

Tetramethylrhodamine methyl ester (TMRM)JC-1 dyeCardiolipin contentOxygen consumption rate (OCR)Cytochrome c release

Beyond the preview

Go deeper on Mitochondrial inner membrane potential (ΔΨm) and lipid bilayer (ΔΨm/IMM).

Explore the evidence, development activity, and competitive landscape with Gosset’s full data platform.

Drug pipeline

Full profile access

Explore the programs pursuing this target and their development progress.

  • Drug candidates
  • Developers
  • Development stage

Clinical trials

Full profile access

Follow the clinical studies evaluating therapies directed at this target.

  • Trial design
  • Status
  • Readouts

Competitive landscape

Full profile access

Compare approaches across drug candidates, modalities, and indications.

  • Programs
  • Modalities
  • Indications

Literature & evidence

Full profile access

Investigate the research and source evidence behind target biology and development.

  • Publications
  • Sources
  • Analysis

Patents

Full profile access

Explore patent activity around therapies and technologies addressing this target.

  • Patents
  • Assignees
  • Technologies

Research & analysis

Full profile access

Connect target biology, drug development, and emerging evidence in your research.

  • Biology
  • Development news
  • Analysis

Bring the full picture into focus.

See how Gosset can support your research on Mitochondrial inner membrane potential (ΔΨm) and lipid bilayer (ΔΨm/IMM).

Explore the full profile

Gosset Free

Get started with Gosset.

Enter your work email and we’ll be in touch with next steps.

Work email preferred.

Book a call