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May 2, 20261 citations

From necroptosis to neuroinflammation: Unraveling mechanisms and therapeutic targets in age-related cognitive decline.

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LBLeonardo BiscettiMGMaria Elsa GambuzzaMPMaria Princiotto

Key Points

  • This review explores the mechanisms linking necroptosis, inflammation, and cognitive decline with a focus on therapeutic strategies.
  • Discussed the mechanisms of necroptosis and its effectors in age-related cognitive decline.
  • Analyzed the role of inflammatory pathways and cytokine production in neurodegeneration.
  • Highlighted potential biomarkers and therapeutic interventions targeting necroptosis.
  • Necroptosis is upregulated in aging brains, correlating with neuronal loss and cognitive impairment.
  • Proinflammatory cytokines contribute to a chronic inflammatory state that exacerbates neurodegeneration.
  • Emerging biomarkers like phosphorylated MLKL may aid in early detection of cognitive decline.

Abstract

Aging is the major risk factor for several chronic conditions, including cognitive decline and dementia. It is accompanied by profound immune alterations characterized by a progressive decline in immune competence, a process known as immunosenescence. The resulting dysregulation of immune function leads to the overproduction of proinflammatory cytokines and fuels a persistent, low-grade inflammatory state termed inflammaging. This chronic inflammation contributes to dysfunction across the central and peripheral nervous systems, promoting neuronal damage and accelerating neurodegenerative processes such as Alzheimer's disease, Parkinson's disease, amyotrophic lateral sclerosis, and other age-related cognitive disorders. Within this framework, prolonged activation of inflammatory pathways can trigger regulated forms of cell death. Among these, necroptosis has recently emerged as a potential mediator linking inflammaging to neurodegeneration. Its core molecular effectors, including the receptor-interacting protein kinases RIPK1 and RIPK3 and the mixed-lineage kinase domain-like protein (MLKL), are increasingly expressed in aged neural tissues, promoting the release of damage-associated molecular patterns (DAMPs) that amplify glial activation, oxidative stress, and blood-brain barrier disruption. Growing evidence suggests that necroptotic signaling may be upregulated in the aging brain and in neurodegenerative disorders, where it could contribute to neuronal loss and cognitive impairment. This review discusses the potential role of necroptosis in the continuum between inflammation and neurodegeneration, highlighting emerging diagnostic and therapeutic perspectives. Epigenetic and circulating biomarkers, such as phosphorylated MLKL and specific microRNAs, may support early detection, while pharmacological and nutraceutical strategies targeting necroptosis show promising neuroprotective effects in preclinical studies.

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Cite This Study

Biscetti et al. (2026) studied this question.

synapsesocial.com/papers/69f5941871405d493affeecdhttps://doi.org/10.1016/j.biopha.2026.119326
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