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Fabrication of 3D tissue equivalent: an in vitro platform for understanding collagen evolution in healthy and diseased models

机译:3D组织等效物的制造:了解健康和患病模型中胶原蛋白进化的体外平台

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In this study we realized a three-dimensional human dermis equivalent (3D-HDE) and, by exploiting multi-photon microscopy (MPM) we validated its use as an in vitro model to study collagen network re-arrangement under simulated solar exposure. The realization of 3D-HDE has been pursed by means of a bottom-up tissue engineering strategy that comprises firstly the fabrication of micron sized tissue building blocks and then their assembly in a 3D tissue construct. The building blocks injected in a maturation chamber, and cultured under optimized culture condition, were able to fuse due to the establishment of cell-cell and cell-extra cellular matrix (ECM) interactions that induced a biological sintering process resulting in 3D-HDE production. The final 3D tissue was made-up by fibroblasts embedded in their own ECM rich in endogenous collagen type I, resembling the composition and the architecture of native human dermis. Second Harmonic Generation (SHG) and Two-Photon Excited Fluorescence (TPEF) imaging have been exploited to assess modification in collagen assembly before and after UV irradiation. Textural features and SHG to TPFE ratio of the endogenous ECM within 3D-HDE have been shown to vary after UVA irradiation, proving the hypothesis that the 3D-HDE realized can be used as biological platform in vitro to study ECM modifications induced by photo-damage.
机译:在这项研究中,我们实现了三维人体真皮等效物(3D-HDE),并通过利用多光子显微镜(MPM)验证了其作为体外模型的用途,以研究模拟的日光照射下的胶原网络重排。 3D-HDE的实现已通过自下而上的组织工程策略进行了追求,该策略包括首先制造微米级的组织构造块,然后将其组装成3D组织构造。注入成熟室并在优化的培养条件下进行培养的构建基能够融合,原因是建立了细胞-细胞和细胞外细胞基质(ECM)相互作用,从而诱导了生物烧结过程,从而产生了3D-HDE 。最终的3D组织是由成纤维细胞组成的,该成纤维细胞嵌入其自身的富含内源性I型胶原的ECM中,类似于天然人真皮的组成和结构。已开发出第二谐波产生(SHG)和双光子激发荧光(TPEF)成像来评估紫外线照射前后胶原蛋白组装的修饰。研究表明,UVA照射后3D-HDE中内源性ECM的质地特征和SHG / TPFE比会发生变化,从而证明以下假设:实现的3D-HDE可以用作体外生物平台来研究光损伤引起的ECM修饰。

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