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Senomorphics in Neurodegeneration

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Senomorphics in Neurodegeneration

Overview

Senomorphics (also known as senostatics) are pharmacological agents that suppress the harmful effects of cellular senescence without necessarily eliminating senescent cells. This distinguishes them from senolytics, which actively kill senescent cells. Senomorphics work by inhibiting the senescence-associated secretory phenotype (SASP), which is the primary mechanism through which senescent cells contribute to chronic inflammation and tissue dysfunction.

The therapeutic potential of senomorphics in neurodegenerative diseases has gained significant attention because:

  • They can be administered chronically without the risks associated with cell depletion
  • They target the inflammatory pathway that drives neurodegeneration
  • They preserve the cell cycle arrest benefits of senescence (tumor suppression)
  • They may be more suitable for age-related diseases requiring long-term treatment

Cellular Senescence Biology

Definition and Characteristics

Cellular senescence is a state of irreversible cell cycle arrest that cells enter in response to various stresses:

  • DNA damage: Telomere shortening, double-strand breaks, oxidative lesions
  • Oncogenic stress: Activation of Ras, BRAF, or other oncogenes
  • Replication stress: Exhaustion of replicative capacity (replicative senescence)
  • Epigenetic changes: Chromatin remodeling, DNA methylation changes
  • Mitochondrial dysfunction: Accumulation of damaged mitochondria

Hallmarks of Senescent Cells

Senescent cells exhibit distinctive characteristics:

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