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壳聚糖膜包裹 3D 打印气管的保护性气管设计可提高软骨生成性能。

Improved chondrogenic performance with protective tracheal design of Chitosan membrane surrounding 3D-printed trachea.

机构信息

Department of Mechanical Engineering, Pohang University of Science and Technology (POSTECH), 37673, Pohang, Gyeongbuk, South Korea.

Department of Companion Animal Health, Daegu Haany University, 38610, Gyeongsan, Gyeongbuk, South Korea.

出版信息

Sci Rep. 2021 Apr 29;11(1):9258. doi: 10.1038/s41598-021-88830-3.

Abstract

In recent tracheal tissue engineering, limitations in cartilage reconstruction, caused by immature delivery of chondrocyte-laden components, have been reported beyond the complete epithelialization and integration of the tracheal substitutes with the host tissue. In an attempt to overcome such limitations, this article introduces a protective design of tissue-engineered trachea (TraCHIM) composed of a chitosan-based nanofiber membrane (CHIM) and a 3D-printed biotracheal construct. The CHIM was created from chitosan and polycaprolactone (PCL) using an electrospinning process. Upon addition of chitosan to PCL, the diameter of electrospun fibers became thinner, allowing them to be stacked more closely, thereby improving its mechanical properties. Chitosan also enhances the hydrophilicity of the membranes, preventing them from slipping and delaminating over the cell-laden bioink of the biotracheal graft, as well as protecting the construct. Two weeks after implantation in Sprague-Dawley male rats, the group with the TraCHIM exhibited a higher number of chondrocytes, with enhanced chondrogenic performance, than the control group without the membrane. This study successfully demonstrates enhanced chondrogenic performance of TraCHIM in vivo. The protective design of TraCHIM opens a new avenue in engineered tissue research, which requires faster tissue formation from 3D biodegradable materials, to achieve complete replacement of diseased tissue.

摘要

在最近的气管组织工程中,已经报道了由于软骨细胞负载成分不成熟的传递,导致在气管替代物与宿主组织的完全上皮化和整合之外存在软骨重建的局限性。为了克服这些局限性,本文介绍了一种由壳聚糖基纳米纤维膜(CHIM)和 3D 打印生物气管构建体组成的组织工程气管(TraCHIM)的保护设计。CHIM 是通过静电纺丝工艺由壳聚糖和聚己内酯(PCL)制成的。在壳聚糖添加到 PCL 中后,电纺纤维的直径变细,使其能够更紧密地堆叠,从而提高了其机械性能。壳聚糖还增强了膜的亲水性,防止它们在细胞负载的生物墨水滑出和分层,以及保护构建体。在 Sprague-Dawley 雄性大鼠中植入两周后,与没有膜的对照组相比,具有 TraCHIM 的组表现出更高数量的软骨细胞,具有增强的软骨生成性能。本研究成功地证明了 TraCHIM 在体内的增强软骨生成性能。TraCHIM 的保护设计为工程组织研究开辟了新途径,需要更快地从 3D 可生物降解材料形成组织,以实现对患病组织的完全替代。

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