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February 8, 2026Experimental & Molecular Medicine0 citationsOpen Access

The rise of astrocytes: are they guardians or troublemakers of the brain disorder?

HKHee Yeon KimSKSeungchan KimAAAsli Nur Akaydin

Key Points

  • The study investigates the dual roles of astrocytes in maintaining neuronal health and contributing to brain disorders, especially during reactive astrogliosis.
  • Review of literature on astrocytic functions and their role in neurodegenerative diseases
  • Analysis of the characteristics of reactive astrocytes and their impact on neuronal health
  • Discussion of the mechanisms driving the transformation of astrocytes from supportive to potentially harmful states.
  • Astrocytes support neurons by providing metabolic support and modulating neurotransmitter release.
  • During brain disorders, astrocytes undergo reactive astrogliosis, changing in function and morphology.
  • Reactive astrocytes can adopt characteristics that may worsen brain disorders, revealing a complex role in neuroprotection and pathology.

Abstract

Abstract The brain is a highly complex, multicellular organ composed of diverse neuronal and nonneuronal cell types that function in concert to maintain central nervous system homeostasis. Among the glial populations, astrocytes are critical regulators of neuronal function. Under physiological conditions, astrocytes provide essential metabolic support, modulate neurotransmitter release and maintain neuronal health. Traditionally viewed as passive and supporting cells, astrocytes are now recognized as dynamic and responsive elements within the central nervous system. In response to pathological insults, astrocytes undergo significant changes in function, morphology and gene expression—a process known as reactive astrogliosis. Reactive astrocytes acquire heterogeneous characteristics that can contribute to brain disorders via the non-cell-autonomous mechanisms. However, the drivers of this transformation—and their shift from neuronal guardians to potential contributors to pathology—remain incompletely understood. Here we explore the complex, multidimensional roles of astrocytes and how reactive states alter their primary functions. We focus on the dual protective and pathological roles of astrocytes, particularly the transition from healthy to heterogeneous reactive forms, with the aim of understanding their overall impact on the progression of neurodegenerative diseases.

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Cite This Study

Kim et al. (2026) studied this question.

synapsesocial.com/papers/6988277b0fc35cd7a8846453https://doi.org/10.1038/s12276-025-01627-6
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