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Published on: May 30, 2025
Mitochondria orchestrated immune microenvironment and response in health and disease-clinically relevant outlook and
Kai Yang1, Junlong Bi2, Yu Cao1
1State Key Laboratory for Diagnosis and Treatment of Severe Zoonotic Infectious Diseases, Key Laboratory for Zoonosis Research of the Ministry of Education, Institute of Zoonosis, College of Veterinary Medicine, Jilin University, Changchun 130062, China.
Background:
The homeostatic balance of the immune microenvironment is key to maintaining bodily health, and its disorder is closely related to the occurrence and development of various major diseases such as cardiovascular diseases, autoimmune diseases, tumors, and aging. In recent years, mitochondria have gradually become a research hotspot, breaking the traditional perception of mitochondria solely as the cell's energy factory. Mitochondria precisely regulate the polarization, activation, proliferation, and functional fate of various immune cells through various means such as metabolic reprogramming, dynamics remodeling, autophagy regulation, and intercellular communication. Under pathological conditions, metabolic reprogramming abnormalities, abnormal release of mitochondrial damage-associated molecular patterns (mtDAMPs), and intercellular mitochondrial transfer (IMT) dysfunction can drive pathological remodeling of the immune microenvironment.
Aim Of Review:
This article provides a systematic review centered on the interaction between mitochondria and the immune microenvironment, comprehensively elaborating on aspects such as the regulatory patterns of mitochondria in immune cells, intercellular mitochondrial communication mechanisms, mitochondrial-immune remodeling pathological mechanisms in diseases, novel analytical technologies, and targeted therapeutic strategies. It analyzes the translational feasibility and challenges of mitochondria-targeted therapies, aiming to offer theoretical support and clinical reference for a deeper understanding of the immune regulatory functions of mitochondria and the development of new immunotherapeutic strategies.
Key Scientific Concepts Of Review:
The review highlights that immune cell function relies on cell-type-specific mitochondrial metabolism, alongside the balance of mitochondrial dynamics and mitophagy. Furthermore, IMT and extracellular vesicle (EV)-mediated mtDAMPs signaling form a crucial intercellular communication network that regulates the energy metabolism and immune phenotype of recipient cells. Across various diseases, mitochondrial-immune remodeling points to three conserved checkpoints, providing universal therapeutic targets. Driven by breakthroughs in single-cell sequencing and multi-omics analysis, the decoding of mitochondrial heterogeneity has facilitated a paradigm shift from reactive to predictive and proactive medicine. Finally, this review integrates extensive studies on mitochondria-targeted therapeutic strategies, providing highly translatable avenues for personalized immunotherapy.
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