首页> 美国卫生研究院文献>Journal of Leukocyte Biology >Technical Advance: Novel ex vivo culture method for human monocytes uses shear flow to prevent total loss of transendothelial diapedesis function
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Technical Advance: Novel ex vivo culture method for human monocytes uses shear flow to prevent total loss of transendothelial diapedesis function

机译:技术进步:用于人体单核细胞的新型离体培养方法利用剪切流来防止跨内皮渗尿功能完全丧失

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摘要

Monocyte recruitment to inflammatory sites and their transendothelial migration into tissues are critical to homeostasis and pathogenesis of chronic inflammatory diseases. However, even short-term suspension culture of primary human monocytes leads to phenotypic changes. In this study, we characterize the functional effects of ex vivo monocyte culture on the steps involved in monocyte transendothelial migration. Our data demonstrate that monocyte diapedesis is impaired by as little as 4 h culture, and the locomotion step is subsequently compromised. After 16 h in culture, monocyte diapedesis is irreversibly reduced by ∼90%. However, maintenance of monocytes under conditions mimicking physiological flow (5–7.5 dyn/cm2) is sufficient to reduce diapedesis impairment significantly. Thus, through the application of shear during ex vivo culture of monocytes, our study establishes a novel protocol, allowing functional analyses of monocytes not currently possible under static culture conditions. These data further suggest that monocyte-based therapeutic applications may be measurably improved by alteration of ex vivo conditions before their use in patients.
机译:单核细胞募集到炎性部位及其跨内皮迁移到组织中对于慢性炎性疾病的稳态和发病机理至关重要。然而,即使是初级人类单核细胞的短期悬浮培养也会导致表型改变。在这项研究中,我们表征了离体单核细胞培养对涉及单核细胞跨内皮迁移的步骤的功能作用。我们的数据表明,仅4 h的培养就会损害单核细胞的渗尿,并且其运动步骤随后受到损害。培养16小时后,单核细胞的尿布分解不可逆地减少了约90%。然而,维持单核细胞在模拟生理流量(5-7.5 dyn / cm 2 )的条件下,足以显着减少尿布障碍。因此,通过在单核细胞的离体培养过程中施加剪切力,我们的研究建立了一种新的方案,允许在静态培养条件下对单核细胞进行功能分析。这些数据进一步表明,基于单核细胞的治疗应用可通过在患者使用前改变体外条件来显着改善。

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