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The antiaging protein Klotho is a key factor in susceptibility to cerebral ischemia
Penélope Aguilera1, Arturo Hernández Cruz2, Javier Franco-Pérez1
1Laboratorio Patología Vascular Cerebral, Instituto Nacional de Neurología y Neurocirugía Manuel Velasco Suárez, Ciudad de México, Mexico.
Insights
Klotho protein, declining with age, protects the brain from stroke by reducing inflammation, oxidative stress, and excitotoxicity, while promoting neural repair and recovery.
Area of Science:
- Neuroscience
- Gerontology
- Vascular Biology
Background:
- Ischemic cerebrovascular events are a major cause of death and disability, particularly in the elderly.
- Aging exacerbates stroke risk through vascular aging, oxidative stress, and inflammation.
- Cerebral ischemia triggers detrimental pathways like excitotoxicity, mitochondrial dysfunction, and neuroinflammation.
Purpose of the Study:
- To comprehensively review the neuroprotective mechanisms of Klotho in ischemic cerebrovascular injury.
- To elucidate Klotho's role in linking brain aging to stroke vulnerability and repair capacity.
Main Methods:
- Review of experimental studies investigating Klotho's effects on cellular and molecular pathways relevant to ischemic stroke.
- Analysis of Klotho's impact on excitotoxicity, oxidative stress, blood-brain barrier integrity, and neuroinflammation.
- Examination of Klotho's influence on neurogenesis and synaptic plasticity.
Main Results:
- Klotho attenuates excitotoxicity by regulating GluN2B and excitatory amino acid transporters.
- It combats oxidative stress via NADPH oxidase inhibition and SOD2/FOXO3 activation.
- Klotho preserves blood-brain barrier integrity, suppresses inflammation (NF-κB, NLRP3), and enhances anti-inflammatory pathways (PPAR-γ).
- Klotho promotes neurogenesis and synaptic plasticity, aiding functional recovery.
Conclusions:
- Klotho acts as a key regulator of neuronal homeostasis and post-ischemic repair.
- Declining Klotho levels with aging increase stroke susceptibility and impair recovery.
- Klotho represents a potential therapeutic target for mitigating ischemic brain injury and enhancing regenerative capacity.
Abstract:
Ischemic cerebrovascular events are among the leading causes of death and disability worldwide, disproportionately affecting the elderly due to vascular aging, oxidative stress, and chronic inflammation. During cerebral ischemia, oxygen and glucose deprivation trigger a cascade of pathological events, including excitotoxicity, mitochondrial dysfunction, blood-brain barrier disruption, and neuroinflammation. Emerging evidence identifies Klotho as a multifunctional protein with anti-aging, antioxidant, and anti-inflammatory properties that may confer neuroprotection against ischemic injury. Aging is associated with a progressive decline in Klotho expression, correlating with increased stroke susceptibility and poorer recovery outcomes. Experimental studies demonstrate that Klotho attenuates glutamatergic excitotoxicity by regulating the GluN2B subunit and excitatory amino acid transporters. It reduces oxidative stress through inhibition of NADPH oxidase and activation of SOD2 and FOXO3 pathways, while preserving blood-brain barrier integrity by downregulating aquaporin-4 and matrix metalloproteinase-9. Moreover, Klotho suppresses pro-inflammatory signaling by inhibiting NF-κB, RelA, and NLRP3 inflammasome activation, and enhances anti-inflammatory responses via PPAR-γ modulation. Beyond limiting neuronal death, Klotho promotes neurogenesis and synaptic plasticity by regulating neurotrophic factors and Wnt signaling, thereby supporting neural stem cell survival and functional recovery after ischemia. Collectively, these findings position Klotho as a central regulator of neuronal homeostasis and post-ischemic repair. This review provides the first comprehensive mechanistic integration of Klotho's neuroprotective role in ischemic cerebrovascular injury, proposing it as a unifying molecular axis linking brain aging to ischemic vulnerability and regenerative capacity.
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