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使用双流生物反应器开发神经心血管系统串扰简化模型:初步评估。

Use of dual-flow bioreactor to develop a simplified model of nervous-cardiovascular systems crosstalk: A preliminary assessment.

机构信息

Department of Drug Sciences, Pharmacology Section, University of Pavia, Pavia, Italy.

Center for Cardiac Arrhythmias of Genetic Origin, Istituto Auxologico Italiano, IRCCS, Milan, Italy.

出版信息

PLoS One. 2020 Nov 30;15(11):e0242627. doi: 10.1371/journal.pone.0242627. eCollection 2020.

Abstract

Chronic conditions requiring long-term rehabilitation therapies, such as hypertension, stroke, or cancer, involve complex interactions between various systems/organs of the body and mutual influences, thus implicating a multiorgan approach. The dual-flow IVTech LiveBox2 bioreactor is a recently developed inter-connected dynamic cell culture model able to mimic organ crosstalk, since cells belonging to different organs can be connected and grown under flow conditions in a more physiological environment. This study aims to setup for the first time a 2-way connected culture of human neuroblastoma cells, SH-SY5Y, and Human Coronary Artery Smooth Muscle Cells, HCASMC through a dual-flow IVTech LiveBox2 bioreactor, in order to represent a simplified model of nervous-cardiovascular systems crosstalk, possibly relevant for the above-mentioned diseases. The system was tested by treating the cells with 10nM angiotensin II (AngII) inducing PKCβII/HuR/VEGF pathway activation, since AngII and PKCβII/HuR/VEGF pathway are relevant in cardiovascular and neuroscience research. Three different conditions were applied: 1- HCASMC and SH-SY5Y separately seeded in petri dishes (static condition); 2- the two cell lines separately seeded under flow (dynamic condition); 3- the two lines, seeded in dynamic conditions, connected, each maintaining its own medium, with a membrane as interface for biohumoral changes between the two mediums, and then treated. We detected that only in condition 3 there was a synergic AngII-dependent VEGF production in SH-SY5Y cells coupled to an AngII-dependent PKCβII/HuR/VEGF pathway activation in HCASMC, consistent with the observed physiological response in vivo. HCASMC response to AngII seems therefore to be generated by/derived from the reciprocal cell crosstalk under the dynamic inter-connection ensured by the dual flow LiveBox 2 bioreactor. This system can represent a useful tool for studying the crosstalk between organs, helpful for instance in rehabilitation research or when investigating chronic diseases; further, it offers the advantageous opportunity of cultivating each cell line in its own medium, thus mimicking, at least in part, distinct tissue milieu.

摘要

需要长期康复治疗的慢性疾病,如高血压、中风或癌症,涉及身体各系统/器官之间的复杂相互作用和相互影响,因此需要采用多器官方法。双液流 IVTech LiveBox2 生物反应器是一种最近开发的互联动态细胞培养模型,能够模拟器官串扰,因为不同器官的细胞可以在更接近生理环境的流动条件下连接和生长。本研究旨在首次通过双液流 IVTech LiveBox2 生物反应器建立人类神经母细胞瘤细胞 SH-SY5Y 和人冠状动脉平滑肌细胞 HCASMC 的双向连接培养,以代表神经心血管系统串扰的简化模型,可能与上述疾病相关。该系统通过用 10nM 血管紧张素 II(AngII)处理细胞来测试,因为 AngII 和 PKCβII/HuR/VEGF 通路在心血管和神经科学研究中很重要。应用了三种不同的条件:1-HCASMC 和 SH-SY5Y 分别在培养皿中接种(静态条件);2-两种细胞系分别在流动条件下接种(动态条件);3-两种细胞系在流动条件下接种,连接起来,各自保持自己的培养基,通过膜作为两种培养基之间生物体液变化的界面,然后进行处理。我们发现,只有在条件 3 中,SH-SY5Y 细胞中才会出现协同的 AngII 依赖性 VEGF 产生,同时 HCASMC 中会出现 AngII 依赖性 PKCβII/HuR/VEGF 通路激活,与体内观察到的生理反应一致。因此,HCASMC 对 AngII 的反应似乎是由双液流 LiveBox2 生物反应器动态连接所保证的细胞相互作用产生的/源自于细胞相互作用。该系统可作为研究器官间串扰的有用工具,有助于康复研究或慢性疾病研究;此外,它还提供了一个培养每种细胞系在自己的培养基中的有利机会,从而至少部分模拟了不同的组织环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbdc/7703955/193ca04fb310/pone.0242627.g001.jpg

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