Perineuronal Nets in the CNS: Architects of Memory and Potential Therapeutic Target in Neuropsychiatric Disorders.
Xue LiXianwen WuTangsheng LuChenyan KuangYue SiWei ZhengZhonghao LiYanxue XuePublished in: International journal of molecular sciences (2024)
The extracellular matrix (ECM) within the brain possesses a distinctive composition and functionality, influencing a spectrum of physiological and pathological states. Among its constituents, perineuronal nets (PNNs) are unique ECM structures that wrap around the cell body of many neurons and extend along their dendrites within the central nervous system (CNS). PNNs are pivotal regulators of plasticity in CNS, both during development and adulthood stages. Characterized by their condensed glycosaminoglycan-rich structures and heterogeneous molecular composition, PNNs not only offer neuroprotection but also participate in signal transduction, orchestrating neuronal activity and plasticity. Interfering with the PNNs in adult animals induces the reactivation of critical period plasticity, permitting modifications in neuronal connections and promoting the recovery of neuroplasticity following spinal cord damage. Interestingly, in the adult brain, PNN expression is dynamic, potentially modulating plasticity-associated states. Given their multifaceted roles, PNNs have emerged as regulators in the domains of learning, memory, addiction behaviors, and other neuropsychiatric disorders. In this review, we aimed to address how PNNs contribute to the memory processes in physiological and pathological conditions.
Keyphrases
- extracellular matrix
- cerebral ischemia
- spinal cord
- blood brain barrier
- working memory
- white matter
- resting state
- high resolution
- transcription factor
- brain injury
- oxidative stress
- subarachnoid hemorrhage
- depressive symptoms
- functional connectivity
- signaling pathway
- cell therapy
- young adults
- childhood cancer
- early life
- essential oil