首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >A Cost-Effective Culture System for the In Vitro Assembly, Maturation, and Stimulation of Advanced Multilayered Multiculture Tubular Tissue Models
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A Cost-Effective Culture System for the In Vitro Assembly, Maturation, and Stimulation of Advanced Multilayered Multiculture Tubular Tissue Models

机译:一种成本效益的培养系统,适用于先进的多层多层多元文化管组织模型的体外组装,成熟和刺激

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摘要

The development of tubular engineered tissues is a challenging research area aiming to provide tissue substitutes but also in vitro models to test drugs, medical devices, and even to study physiological and pathological processes. In this work, the design, fabrication, and validation of an original cost-effective tubular multilayered-tissue culture system (TMCS) are reported. By exploiting cellularized collagen gel as scaffold, a simple moulding technique and an endothelialization step on a rotating system, TMCS allowed to easily prepare in 48h, trilayered arterial wall models with finely organized cellular composition and to mature them for 2 weeks without any need of manipulation. Multilayered constructs incorporating different combinations of vascular cells are compared in terms of cell organization and viscoelastic mechanical properties demonstrating that cells always progressively aligned parallel to the longitudinal direction. Also, fibroblast compacted less the collagen matrix and appeared crucial in term of maturation/deposition of elastic extracellular matrix. Preliminary studies under shear stress stimulation upon connection with a flow bioreactor are successfully conducted without damaging the endothelial monolayer. Altogether, the TMCS herein developed, thanks to its versatility and multiple functionalities, holds great promise for vascular tissue engineering applications, but also for other tubular tissues such as trachea or oesophagus.
机译:管状工程组织的发展是一个具有挑战性的研究领域,其旨在提供组织替代物,还可以在体外模型中测试药物,医疗器械,甚至研究生理和病理过程。在这项工作中,报道了原始成本有效的管状多层组织培养系统(TMC)的设计,制造和验证。通过将细胞化胶原凝胶作为支架,简单的模塑技术和旋转系统上的内皮化步骤,TMC允许在48h中容易地制备,其中具有细化细胞组合物的三层动脉壁模型,并在没有任何操纵的情况下成熟2周。在细胞组织方面比较包含不同组合的多层构建体,并且粘弹性机械性能证明细胞总是平行于纵向对齐的。此外,成纤维细胞压实了胶原基质的较少,并且在弹性细胞外基质的成熟/沉积期间出现至关重要。在与流动生物反应器连接时,在剪切应力刺激下进行初步研究,而不会损坏内皮单层。完全,由于其多功能性和多种功能,因此,在此开发的TMC对血管组织工程应用具有很大的希望,而且对其他管状组织如气管或食道等。

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