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载多治疗活性硒纳米点防治脑出血后脑损伤和神经行为功能障碍

Multi-therapeutic-activity selenium nanodot toward preventing brain injury and restoring neurobehavioral functions following hemorrhagic stroke.

机构信息

Department of Neurosurgery, Neurosurgery Research Institute, The First Affiliated Hospital, Fujian Medical University, Fuzhou, Fujian, 350005, China.

Fujian Provincial Institutes of Brain Disorders and Brain Sciences, The First Affiliated Hospital, Fujian Medical University, Fuzhou, Fujian, 350005, China.

出版信息

J Nanobiotechnology. 2024 Sep 14;22(1):564. doi: 10.1186/s12951-024-02847-0.

DOI:10.1186/s12951-024-02847-0
PMID:39272097
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11401260/
Abstract

Intracerebral hemorrhage is a lethal cerebrovascular disease, and the inevitable secondary brain injury (SBI) is responsible for serious disability and death. Perfect therapeutic goal is to minimize SBI and restore neurobehavioral functions. Recently, neuroprotection is highlighted to reduce SBI, but it still faces "Neuronal survival but impaired functions" dilemma. Herein, this work further proposes a novel combinational therapeutic strategy of neuroprotection and neurogenesis toward this goal. However, appropriate therapeutic agents are rarely reported, and their discovery and development are urgently needed. Selenium participates in various physiological/pathological processes, which is hypothesized as a potential targeting molecule. To explore this effect, this work formulates an ultra-small selenium nanodot with a seleno-amino acid derived carbon dot domain and a hydrophilic PEG layer, surprisingly finding that it increases various selenoproteins levels at perihematomal region, to not only exert multiple neuroprotective roles at acute phase but promote neurogenesis and inhibit glial scar formation at recovery phase. At a safe dose, this combinational strategy effectively prevents SBI and recovers neurobehavioral functions to a normal level. Furthermore, its molecular mechanisms are revealed to broaden application scopes in other complex diseases.

摘要

脑出血是一种致命的脑血管病,不可避免的继发性脑损伤(SBI)是导致严重残疾和死亡的主要原因。理想的治疗目标是最大限度地减少 SBI 并恢复神经行为功能。最近,神经保护被强调以减少 SBI,但它仍然面临“神经元存活但功能受损”的困境。在此基础上,本工作进一步提出了一种新的神经保护和神经发生联合治疗策略来实现这一目标。然而,合适的治疗药物很少报道,因此迫切需要发现和开发这些药物。硒参与各种生理/病理过程,被假设为一种潜在的靶向分子。为了探索这种作用,本工作制备了一种超小硒纳米点,其具有由硒氨基酸衍生的碳点结构域和亲水性的 PEG 层,令人惊讶的是,它增加了血肿周围区域的多种硒蛋白水平,不仅在急性期发挥多种神经保护作用,而且在恢复期促进神经发生和抑制神经胶质瘢痕形成。在安全剂量下,这种联合策略能有效预防 SBI 并恢复神经行为功能至正常水平。此外,还揭示了其分子机制,拓宽了其在其他复杂疾病中的应用范围。

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