Neuroprotection beyond neurons: integrated biomarker-based and astroglia- or microglia-targeted approaches to combat neurodegenerative diseases

神经保护 神经科学 神经退行性变 肌萎缩侧索硬化 神经营养因子 医学 疾病 亨廷顿病 生物 神经营养素 神经可塑性 机制(生物学) 诱导多能干细胞 再生(生物学) 生物标志物 星形胶质增生 多细胞生物
作者
Cinzia Volonté,Guoku Hu,Christopher A. Shaw,Viegas Junior Claudio,Joyce Alves dos Santos,Sandra H. Vaz,Ana Sebastião,Vladimír J. Balcar,P. David Mozley,Federico Verde,Vincenzo Silani,Fernanda Tibolla Viero,Yong Tang,Henning Ulrich,Rafael Franco
标识
DOI:10.37349/ent.2026.1004136
摘要

Neurodegenerative diseases, including Alzheimer’s, Parkinson’s, Huntington’s, and Amyotrophic Lateral Sclerosis, are characterized by multifactorial pathologies that extend beyond neuronal loss to include neuroinflammation, oxidative stress, mitochondrial dysfunction, and glial dysregulation. Despite extensive research, disease-modifying therapies remain elusive, hindered by late diagnosis, limited availability of specific biomarkers, and the persistent dominance of reductionist, single-target strategies. This comprehensive and informative review provides a critical synthesis of integrated neuroprotective strategies, with particular focus on glial mechanisms and biomarker-guided interventions. Therapeutic emphasis is placed on coordinated mechanisms targeting both neurons and non-neuronal cells, such as astrocytes, microglia, and oligodendrocytes. Emerging strategies are reported to include modulation of synaptic plasticity and neurotransmission, delivery of neurotrophic factors, activation of intrinsic cytoprotective pathways (e.g., Nrf2 signaling), restoration of proteostasis, and induction of regeneration via cellular reprogramming. Glial cells are discussed as therapeutic targets involved in inflammation, metabolism, myelination, and neuronal survival. Advances in predictive, preventive, personalized, and participatory (P4) medicine, supported by genomics, multi-omics, imaging, and real-world data, are presented as accelerating biomarker discovery and enabling earlier and more precise stage-specific interventions. Future success in combating neurodegeneration will depend on integrated approaches that combine protective, supportive, and regenerative strategies, appropriate for disease stage and patient profile. By reframing neuroprotection as a systemic, multicellular endeavor, this review highlights the potential to not only extend life expectancy, but also preserve meaningful quality of life in individuals affected by neurodegenerative diseases.
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