Target intelligence / Profile preview

Tumor microenvironment (Hypoxia and Hydrogen Peroxide) (Hypoxia/H2O2 TME)

Target
Hypoxia/H2O2 TME
Molecular classification
Physiological condition, Reactive oxygen species, Metabolic state
01

Overview

The hypoxic tumor microenvironment (TME) and elevated levels of hydrogen peroxide (H2O2) are hallmark physiological features of solid tumors resulting from rapid cell proliferation and aberrant vascularization (PMID: 30214335). Hypoxia occurs when the oxygen demand of the tumor exceeds the supply, leading to the stabilization of Hypoxia-Inducible Factors (HIFs) which drive angiogenesis, glycolysis, and cell survival (PMID: 28233820). Simultaneously, cancer cells often exhibit increased production of H2O2 due to mitochondrial dysfunction and altered redox homeostasis, which promotes genomic instability and oncogenic signaling (PMID: 29435140). These environmental conditions are frequently exploited as triggers for 'stimuli-responsive' drug delivery systems, such as hypoxia-activated prodrugs (HAPs) or H2O2-responsive nanocarriers (PMID: 31161756). For example, HAPs like Evofosfamide are designed to undergo enzymatic reduction to cytotoxic species specifically in oxygen-depleted tissues, while ROS-responsive systems utilize oxidative cleavage to release therapeutic payloads (PMID: 26153495, PMID: 27532385). While these strategies aim to improve the therapeutic index of chemotherapy, challenges remain regarding the spatial heterogeneity of these conditions within a single tumor and the potential for off-target activation in other physiological niches.

Other names
Hypoxic tumor microenvironmentOxidative tumor microenvironmentH2O2-rich TMETumor hypoxiaTumor redox environment
02

Mechanism of action

Bioactivation via enzymatic reduction in low-oxygen conditions (hypoxia) or oxidative chemical transformation by hydrogen peroxide to release active therapeutic agents or imaging probes.

03

Biological functions

Cell signalingMetabolic reprogrammingAngiogenesis inductionOxidative stress regulationGene expression modulation via HIF-1αPromotion of epithelial-mesenchymal transition (EMT)
04

Disease associations

CancerSolid tumor progressionTreatment resistanceMetastasis
05

Safety considerations

Off-target activation in physiological hypoxic niches (e.g., bone marrow, ischemic tissues)Systemic toxicity of prodrug metabolitesIntratumoral heterogeneity leading to incomplete drug activationPotential for promoting tumor aggressiveness via sub-lethal HIF-1α activation
06

Interacting drugs

Evofosfamide (TH-302)

5 more in the full profile.

07

Biomarkers

Hypoxia-inducible factor 1-alpha (HIF-1α)Carbonic anhydrase IX (CAIX)Glucose transporter 1 (GLUT1)Pimonidazole adducts18F-fluoromisonidazole (18F-FMISO) PET imagingLactate dehydrogenase A (LDHA)

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