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一个多细胞器在芯片上的模型揭示了血小板在炎症和炎症静血中的上下文依赖的作用
Rebecca B Riddle1, Karin Jennbacken2, Kenny M Hansson2
1Department of Pharmacology, University of Cambridge, Cambridge, United Kingdom.
血小板在控制炎症和预防受伤期间的血液泄漏方面发挥着至关重要的作用. 这项研究使用了一种新的器官芯片模型来揭示它们在炎症血液静止中的复杂功能.
科学领域:
- 生物医学工程 生物医学工程
- 免疫学 免疫学 免疫学
- 血管生物学 血管生物学
背景情况:
- 免疫系统的控制对于预防慢性炎症和组织损伤至关重要.
- 目前的体外和体内模型很难准确地表示复杂的免疫细胞相互作用.
- 器官在芯片技术为先进的临床前建模提供了一个有前途的解决方案.
研究的目的:
- 为了研究血小板在炎症和炎症性血液静止中的作用.
- 开发和验证用于研究这些过程的容器芯片模型.
- 在动态的微环境中探索血小板相互作用.
主要方法:
- 使用OrganoPlate.开发了一个芯片上的容器模型.
- 内皮血管的培养和屏障功能的评估.
- 用细胞因子刺激诱导炎症和中性粒细胞转移.
- 在不同条件下评估红细胞泄漏和血小板效应.
主要成果:
- 工程船体表现出生理障碍功能,由血小板增强.
- 细胞因子刺激增加了透性和中性粒细胞迁移.
- 血小板可以防止红细胞在炎症部位的泄漏,同时增加透性和中性粒细胞转移.
- 血小板保护血管新生血管免受小分子和红细胞的泄漏.
结论:
- 血管在芯片模型成功地重复了细胞内膜屏障功能和炎症的血小板调节.
- 血小板在炎症性血液静止中表现出多方面的作用.
- 这项技术使得复杂的细胞相互作用能够在体外进行研究.
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