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一种用于研究肾脏炎症和免疫介导损伤的具有免疫活性的人体肾脏芯片模型。

An immunocompetent human kidney on-a-chip model to study renal inflammation and immune-mediated injury.

作者信息

Gijzen Linda, Bokkers Marleen, Hanamsagar Richa, Olivier Thomas, Burton Todd, Tool Laura Marlisa, Rahman Mouly Fahrin, Lowman John, Savova Virginia, Means Terry K, Lanz Henriette L

机构信息

Model Development, MIMETAS BV, De Limes 7, Oegstgeest, 2342DH, NETHERLANDS.

Sanofi Research and Development Center Cambridge, 350 Water Street, Cambridge, Massachusetts, 02141, UNITED STATES.

出版信息

Biofabrication. 2024 Dec 16. doi: 10.1088/1758-5090/ad9fdf.

Abstract

Kidney damage and dysfunction is an emerging health issue worldwide resulting in high morbidity and mortality rates. Numerous renal diseases are recognized to be driven by the immune system. Despite this recognition, the development of targeted therapies has been challenging as knowledge of the underlying mechanism and complex interactions remains insufficient. Recent advancements in the field offer promising avenues for exploring the interplay between renal cells and immune cells and their role in the development of renal inflammation and diseases. This study describes the establishment of a human immunocompetent 3D in vitro co-culture model of the proximal tubule in a high-throughput microfluidic platform that can be used to study renal functionality and inflammatory processes. The model incorporated RPTEC in the top compartment and HUVECs in the bottom compartment cultured under flow and in direct contact with a collagen-I ECM gel resulting in the formation of polarized tubular structures. As an immune component, human primary monocytes of different donors were added to the lumen of the endothelium. Renal inflammation was successfully induced using complement activated serum (CAS) as evident by epithelial morphological changes, increased expression of adhesion molecules, release of pro-inflammatory cytokines, and reduced epithelial viability. Realtime migratory behavior of monocytes showed increased extravasation and migration towards the ECM and Renal compartment upon exposure to CAS with donor-to-donor differences observed. Finally, immune modulatory compounds showed efficacious inhibition of monocyte migration under inflammatory conditions in the microfluidic co-culture model. A successful co-culture model was established and can be applied to study renal functionality in health and disease but also for drug screening due to the compatibility of the platform with automation and relatively high throughput. Overall, the described proximal tubule model has high potential to fill the gap that currently exists to study renal inflammation preclinically.&#xD.

摘要

肾损伤和功能障碍是一个在全球范围内日益凸显的健康问题,导致了高发病率和死亡率。许多肾脏疾病被认为是由免疫系统驱动的。尽管有此认识,但由于对潜在机制和复杂相互作用的了解仍然不足,靶向治疗的发展一直具有挑战性。该领域的最新进展为探索肾细胞与免疫细胞之间的相互作用及其在肾脏炎症和疾病发展中的作用提供了有前景的途径。本研究描述了在高通量微流控平台上建立人免疫活性近端小管的三维体外共培养模型,该模型可用于研究肾脏功能和炎症过程。

该模型在顶部隔室中包含人近端肾小管上皮细胞(RPTEC),在底部隔室中包含人脐静脉内皮细胞(HUVEC),在流动条件下培养并与I型胶原细胞外基质(ECM)凝胶直接接触,从而形成极化的管状结构。作为免疫成分,将来自不同供体的人原代单核细胞添加到内皮腔中。使用补体激活血清(CAS)成功诱导了肾脏炎症,上皮形态变化、黏附分子表达增加、促炎细胞因子释放以及上皮活力降低均证明了这一点。单核细胞的实时迁移行为显示,在暴露于CAS后,单核细胞向ECM和肾脏隔室的外渗和迁移增加,且存在供体间差异。最后,免疫调节化合物在微流控共培养模型的炎症条件下显示出对单核细胞迁移的有效抑制作用。

成功建立了一种共培养模型,该模型不仅可用于研究健康和疾病状态下的肾脏功能,还因其与自动化的兼容性和相对较高的通量而可用于药物筛选。总体而言,所描述的近端小管模型具有很大潜力,可填补目前临床前研究肾脏炎症方面存在的空白。

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