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利用热喷墨打印技术构建人体微血管

Human microvasculature fabrication using thermal inkjet printing technology.

作者信息

Cui Xiaofeng, Boland Thomas

机构信息

Department of Bioengineering, Clemson University, Clemson, SC 29634, USA.

出版信息

Biomaterials. 2009 Oct;30(31):6221-7. doi: 10.1016/j.biomaterials.2009.07.056. Epub 2009 Aug 19.

Abstract

The current tissue engineering paradigm is that successfully engineered thick tissues must include vasculature. As biological approaches alone, such as VEGF, have fallen short of their promises, one may look for an engineering approach to build microvasculature. Layer-by-layer approaches for customized fabrication of cell/scaffold constructs have shown some potential in building complex 3D structures. With the advent of cell printing, one may be able to build precise human microvasculature with suitable bio-ink. Human microvascular endothelial cells (HMVEC) and fibrin were studied as bio-ink for microvasculature construction. Endothelial cells are the only cells to compose the human capillaries and also form the entire inner lining of cardiovascular system. Fibrin has been already widely recognized as tissue engineering scaffold for vasculature and other cells, including skeleton/smooth muscle cells and chondrocytes. In our study, we precisely fabricated micron-sized fibrin channels using a drop-on-demand polymerization. This printing technique uses aqueous processes that have been shown to induce little, if any, damage to cells. When printing HMVEC cells in conjunction with the fibrin, we found the cells aligned themselves inside the channels and proliferated to form confluent linings. The 3D tubular structure was also found in the printed patterns. We conclude that a combined simultaneous cell and scaffold printing can promote HMVEC proliferation and microvasculature formation.

摘要

当前的组织工程范例是,成功构建的厚组织必须包含脉管系统。由于仅靠生物方法(如血管内皮生长因子)未能兑现其承诺,人们可能会寻求一种工程方法来构建微血管。用于定制制造细胞/支架构建体的逐层方法在构建复杂的三维结构方面已显示出一定潜力。随着细胞打印技术的出现,人们或许能够用合适的生物墨水构建精确的人体微血管。研究了人微血管内皮细胞(HMVEC)和纤维蛋白作为构建微血管的生物墨水。内皮细胞是构成人体毛细血管的唯一细胞,也是心血管系统整个内膜的组成部分。纤维蛋白已被广泛认可为用于脉管系统及其他细胞(包括骨骼/平滑肌细胞和软骨细胞)的组织工程支架。在我们的研究中,我们通过按需滴聚合法精确制造了微米级的纤维蛋白通道。这种打印技术采用水性工艺,已证明对细胞几乎没有损伤,即便有损伤也极小。当将HMVEC细胞与纤维蛋白一起打印时,我们发现细胞在通道内排列并增殖形成汇合的内衬。在打印图案中也发现了三维管状结构。我们得出结论,细胞和支架联合同步打印可促进HMVEC增殖和微血管形成。

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