Melatonin enhances neurogenesis and neuroplasticity in long-term recovery following cerebral ischemia in mice

被引:1
作者
Beker, Merve [1 ]
Beker, Mustafa Caglar [2 ,3 ]
Elibol, Birsen [4 ]
Caglayan, Ahmet Burak [5 ]
Altug, Burcugul [6 ,7 ]
Kilic, Ertugrul [2 ,3 ]
Yilmaz, Bayram [8 ]
Celik, Ulkan [9 ]
机构
[1] Univ Hlth Sci Turkey, Int Sch Med, Dept Med Biol, Istanbul, Turkiye
[2] Istanbul Medeniyet Univ, Sch Med, Dept Physiol, Istanbul, Turkiye
[3] Istanbul Medipol Univ, Res Inst Hlth Sci & Technol SABITA, Regenerat & Restorat Med Res Ctr REMER, Istanbul, Turkiye
[4] Istanbul Medeniyet Univ, Fac Med, Dept Med Biol, Istanbul, Turkiye
[5] Istanbul Medipol Univ, Int Sch Med, Dept Physiol, Istanbul, Turkiye
[6] Eskisehir Osmangazi Univ, Cellular Therapy & Stem Cell Prod Applicat Res Ctr, Eskisehir, Turkiye
[7] Dokuz Eylul Univ, Fac Vet Med, Dept Genet, Izmir, Turkiye
[8] Yeditepe Univ, Fac Med, Dept Physiol, Istanbul, Turkiye
[9] Univ Hlth Sci Turkey, Sch Med, Dept Med Biol, Istanbul, Turkiye
来源
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR BASIS OF DISEASE | 2025年 / 1871卷 / 04期
关键词
Atrophy; Axonal projections; Cell proliferation; Locomotor activity; Neuronal survival; Stroke; NEUROLOGICAL RECOVERY; PLASTICITY; MECHANISMS; RECEPTORS; DELIVERY; INJURY;
D O I
10.1016/j.bbadis.2025.167738
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The important therapeutic role of melatonin in neuropathological conditions is underscored by a broad array of studies, many of which elucidated its neuroprotective properties. Yet, our scientific knowledge still needs several approaches to uncover molecular mechanisms. In this study, we contextually modelled cerebral ischemia through transient intraluminal middle cerebral artery occlusion. Melatonin was administered via an intraperitoneally placed mini osmotic pump, and released periodically from 3 days post-ischemia (dpi) to 56 dpi. We conferred several lines of evidence to address the fundamental questions about melatonin's cytoprotective functions after cerebral ischemia. We demonstrated that melatonin assisted post-ischemic neuro-restoration and micro-vascularization. In addition, it restricted glial scar formation, which interferes with neuronal interactions and stands as a barrier against plasticity. Even more interestingly, axonal plasticity, which was studied on the pyramidal tract using an anterograde tract tracer, proved the role of melatonin in remodeling across the injury site. In addition, plasticity-associated membrane-localized proteins, ephrin b1, ephrin b2, brevican, and versican were also modulated by melatonin. These findings suggested that melatonin orchestrated neurological recovery which was accompanied by molecular alterations resulting in cellular and extracellular structural changes. Based on the molecular signatures, ipsilesional and contralesional brain tissues were finely tuned by melatonin to compensate the loss after ischemia. Accordingly, neurological improvements correlated with the brain's molecular changes over time. It was suggested that melatonin enabled neuronal recovery by regulating neurogenesis and neuroplasticity in long term.
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页数:12
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