ArticleCancer research2024
mLumiOpto Is a Mitochondrial-Targeted Gene Therapy for Treating Cancer.
Article in Cancer research, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 15 papers.
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Who cites it
15 citing papers in PubMed.
- Combine antibody-drug conjugate with cmLumiOpto for triple-negative breast cancer treatment.Cell reports. Medicine · 2026Article
- SOX5 Orchestrates Malignant Evolution via Promoter-Centric Chromatin Remodeling in MYC-Driven B-Cell Lymphoma.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2026Article
- Humanized antibody-drug conjugates for Somatostatin receptor 2 (SSTR2)-positive tumor treatment.Molecular cancer therapeutics · 2026Article
- Advanced CD276-Targeting Dual-Payload Antibody-Drug Conjugates for Cancer Therapy.Cancer research communications · 2026Article
- Optogenetics for Investigating and Targeting Hallmark Traits of Cancer.Biomolecules · 2026Review
- Combine mitochondrial-targeted gene therapy and chemotherapy to treat triple-negative breast cancer.Journal of experimental & clinical cancer research : CR · 2025Article
- Optogenetic engineering for precision cancer immunotherapy.Trends in pharmacological sciences · 2025Review
- Mitochondrial metabolism and cancer therapeutic innovation.Signal transduction and targeted therapy · 2025Review
- Mitophagy's impacts on cancer and neurodegenerative diseases: implications for future therapies.Journal of hematology & oncology · 2025Review
- Optogenetic mitochondrial preconditioning enhances cardiomyocyte survival under stress.Journal of molecular and cellular cardiology · 2025Article
- Role of mitochondria in physiological activities, diseases, and therapy.Molecular biomedicine · 2025Review
- Probing aspects of extracellular vesicle associated AAV allows increased vector yield and insight into its transduction and immune-evasive properties.Molecular therapy. Methods & clinical development · 2025Article
- Anti-lipolysis-stimulated lipoprotein receptor antibody-drug conjugate to treat triple-negative breast cancer.Frontiers in oncology · 2025Article
- Advances of Drug-Loaded Microsphere Technology for Targeted Immunotherapy Against Prostate Cancer.International journal of nanomedicine · 2025Review
- TIMM8A-TIMM13 Complex Exerts Oncogenic Functions in Lung Cancer.Oncology research · 2025Article
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9 authors.
Funding
Abstract
Mitochondria are important in various aspects of cancer development and progression. Targeting mitochondria in cancer cells holds great therapeutic promise, yet current strategies to specifically and effectively destroy cancer mitochondria in vivo are limited. Here, we developed mitochondrial luminoptogenetics (mLumiOpto), an innovative mitochondrial-targeted luminoptogenetics gene therapy designed to directly disrupt the inner mitochondrial membrane potential and induce cancer cell death. The therapeutic approach included synthesis of a blue light-gated cationic channelrhodopsin in the inner mitochondrial membrane and coexpression of a blue bioluminescence-emitting nanoluciferase in the cytosol of the same cells. The mLumiOpto genes were selectively delivered to cancer cells in vivo by an adeno-associated virus carrying a cancer-specific promoter or cancer-targeted mAB-tagged exosome-associated adeno-associated virus. Induction with nanoluciferase luciferin elicited robust endogenous bioluminescence, which activated cationic channelrhodopsin, triggering cancer cell mitochondrial depolarization and subsequent cell death. Importantly, mLumiOpto demonstrated remarkable efficacy in reducing tumor burden and killing tumor cells in glioblastoma and triple-negative breast cancer xenograft mouse models. Furthermore, the approach induced an antitumor immune response, increasing infiltration of dendritic cells and CD8+ T cells in the tumor microenvironment. These findings establish mLumiOpto as a promising therapeutic strategy by targeting cancer cell mitochondria in vivo. Significance: mLumiOpto is a next generation optogenetic approach that employs selective delivery of genes to cancer cells to trigger mitochondrial depolarization, effectively inducing cell death and reducing tumor burden.
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