Astrocytic monoamine oxidase B (MAOB)-gamma-aminobutyric acid (GABA) axis as a molecular brake on repair following spinal cord injury.

星形胶质细胞单胺氧化酶 B (MAOB)-γ-氨基丁酸 (GABA) 轴作为脊髓损伤后修复的分子刹车

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作者:Lee Hye Yeong, Lee Jung Moo, Lee Hye-Lan, Park Jiyeon, An Heeyoung, Park Eun Kyung, Hwang Sae Yeon, Yoon Sol Lip, Hwang Gwang Yong, Kim Keung Nyun, Nam Min-Ho, Lee Seung Eun, Kang Hyunji, Won Joungha, Jang Bo Ko, Lee Elijah Hwejin, Choi SunYeong, Park Mingu Gordon, Kim Sang Wook, Park Ki Duk, Lee SeungHwan, Lee C Justin, Ha Yoon
Neuroregeneration and remyelination rarely occur in the adult mammalian brain and spinal cord following central nervous system (CNS) injury. The glial scar has been proposed as a major contributor to this failure in the regenerative process. However, its underlying molecular and cellular mechanisms remain unclear. Here, we report that monoamine oxidase B (MAOB)-dependent excessive γ-aminobutyric acid (GABA) release from reactive astrocytes suppresses the CNS repair system by reducing brain‒derived neurotrophic factor (BDNF) and tropomyosin receptor kinase B (TrkB) expression in severe spinal cord injury (SCI) animal models. Genetic deletion of MAOB in a mouse SCI model promotes both functional and tissue recovery. Notably, the selective MAOB inhibitor, KDS2010, facilitates recovery and regeneration by disinhibiting the BDNF-TrkB axis in a rat SCI model. Its dose-dependent effects were further validated in a monkey SCI model. Moreover, KDS2010 demonstrated a tolerable safety profile and dose-proportional pharmacokinetics in healthy humans during a phase 1 clinical trial. This pathway therefore represents a pivotal target for overcoming the intrinsic barriers to CNS repair after injury. Our findings identify the astrocytic MAOB‒GABA axis as a crucial molecular and cellular brake on the CNS repair system following SCI and highlight the translational potential of KDS2010 as a promising therapeutic candidate for SCI treatment.

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