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纳米技术靶向低温循环骤停诱导的犬脑损伤模型中的炎症和兴奋毒性的方法。

Nanotechnology Approaches to Targeting Inflammation and Excitotoxicity in a Canine Model of Hypothermic Circulatory Arrest-Induced Brain Injury.

作者信息

Grimm Joshua C, Magruder J Trent, Wilson Mary A, Blue Mary E, Crawford Todd C, Troncoso Juan C, Zhang Fan, Kannan Sujatha, Sciortino Christopher M, Johnston Michael V, Kannan Rangaramanujam M, Baumgartner William A

机构信息

Division of Cardiac Surgery, Department of Surgery, The Johns Hopkins Medical Institution, Baltimore, Maryland.

Kennedy Krieger Institute, The Johns Hopkins Hospital, Baltimore, Maryland.

出版信息

Ann Thorac Surg. 2016 Sep;102(3):743-750. doi: 10.1016/j.athoracsur.2016.02.077. Epub 2016 May 4.

Abstract

BACKGROUND

Neurocognitive dysfunction and injury remain problematic after cardiac procedures requiring hypothermic circulatory arrest (HCA). Due to poor blood-brain barrier penetrance and toxicities associated with systemic drug therapies, clinical success has been elusive. Accordingly, we explored targeted dendrimer (a nanoparticle) drug therapies in our well-established canine model of HCA to characterize the biodistribution and cellular localization of these nanoparticles in areas of known neuronal apoptosis and necrosis.

METHODS

Class A, 27- to 30-kg male hounds were administered an initial intravenous bolus (10% of the total dose [200 mg]) of generation-six polyamidoamine dendrimer (6.7 nm) labeled with cyanine 5, and cardiopulmonary bypass with peripheral cannulation was initiated. After 90 minutes of HCA, 70% of the total dose was infused over a 6-hour period. The final 20% of the total dose was given 24 hours post-HCA. The brain was harvested 48 hours later (72 hours post-HCA) and analyzed for dendrimer 6-cyanine 5 biodistribution.

RESULTS

The dorsal hippocampus demonstrated the highest brain accumulation of dendrimer 6-cyanine 5, which closely corresponds to the distribution of apoptotic neurons evident with histologic staining and on confocal imaging. In injured brain regions, dendrimer traversed the blood-brain barrier and localized within the target cells (injured neurons and microglia).

CONCLUSIONS

These findings have exciting implications for the future development of novel therapeutics to mitigate neurocognitive deficits in this group of patients.

摘要

背景

在需要低温循环骤停(HCA)的心脏手术后,神经认知功能障碍和损伤仍然是个问题。由于血脑屏障穿透性差以及全身药物治疗存在毒性,临床治疗一直难以取得成功。因此,我们在已建立的犬类HCA模型中探索了靶向树枝状大分子(一种纳米颗粒)药物治疗,以表征这些纳米颗粒在已知神经元凋亡和坏死区域的生物分布和细胞定位。

方法

对体重27至30千克的A类雄性猎犬静脉注射初始推注剂量(总剂量[200毫克]的10%)的用花青5标记的第六代聚酰胺-胺树枝状大分子(6.7纳米),并启动外周插管的体外循环。在HCA 90分钟后,在6小时内输注总剂量的70%。总剂量的最后20%在HCA后24小时给予。48小时后(HCA后72小时)取出大脑,分析树枝状大分子花青5的生物分布。

结果

背侧海马体显示花青5标记的树枝状大分子在大脑中的积累最高,这与组织学染色和共聚焦成像中明显的凋亡神经元分布密切对应。在受损脑区,树枝状大分子穿过血脑屏障并定位于靶细胞(受损神经元和小胶质细胞)内。

结论

这些发现对未来开发减轻这类患者神经认知缺陷的新型治疗方法具有令人兴奋的意义。

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The role of the microglia in acute CNS injury.小胶质细胞在急性中枢神经系统损伤中的作用。
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