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使用三维打印技术的新型复合气管移植物。

Novel composite trachea grafts using 3-dimensional printing.

作者信息

Weber Joanna F, Rehmani Sadiq S, Baig Mirza Zain, Lebovics Robert, Raad Wissam, Connery Cliff, Bhora Faiz Y

机构信息

Rudy L. Ruggles Biomedical Institute, Nuvance Health, Danbury, Conn.

Department of Thoracic Surgery, Nuvance Health, Poughkeepsie, NY.

出版信息

JTCVS Open. 2020 Nov 18;5:152-160. doi: 10.1016/j.xjon.2020.11.001. eCollection 2021 Mar.

Abstract

OBJECTIVE

Porcine-derived small intestine submucosa (SIS) extracellular matrix (ECM) surgical patches claim to have greater regenerative properties compared with dermal extracellular matrices. We hypothesized that using SIS-ECM in a bioengineered composite tracheal graft would allow better incorporation into the native tissue.

METHODS

Two types of size-matched polycaprolactone support scaffolds were designed: rigid and flexible. The SIS-ECM was wrapped around the polycaprolactone supports lining the inside and outside of the graft. The grafts were implanted in 4 Yorkshire pigs, replacing an ∼2 cm segment of native trachea. Airway patency was evaluated with computed tomography scans and explanted grafts were examined grossly and histologically.

RESULTS

All animals survived through the immediate postoperative period. Generally, extraluminal examination showed a smooth transition between native and graft without significant volumetric loss. Animals that received the flexible design survived ∼10 days longer than those that received the rigid design; however, severe perianastomotic intraluminal granulation tissue was observed. The rigid design had less significant intraluminal granulation tissue development at the distal anastomosis, but partial dehiscence had occurred at the proximal anastomosis interrupting graft incorporation.

CONCLUSIONS

The generally good extraluminal graft incorporation in our composite tracheal graft highlights some increased regenerative capabilities of SIS-ECM. However, the presence of intraluminal granulation tissue indicates that its use as an off-the-shelf, unaltered substrate in an airway graft is still not ideal. Further research must be conducted to determine whether a modification of the substrate is possible to enhance luminal airway incorporation and to exert control over the mechanisms responsible for granulation tissue development.

摘要

目的

猪源小肠黏膜下层(SIS)细胞外基质(ECM)手术补片据称与真皮细胞外基质相比具有更强的再生特性。我们假设在生物工程复合气管移植物中使用SIS-ECM能更好地与天然组织融合。

方法

设计了两种尺寸匹配的聚己内酯支撑支架:刚性和柔性的。将SIS-ECM包裹在聚己内酯支撑物周围,衬于移植物的内外侧。将移植物植入4只约克夏猪体内,替代约2厘米长的天然气管段。通过计算机断层扫描评估气道通畅情况,并对取出的移植物进行大体和组织学检查。

结果

所有动物均度过术后急性期存活下来。一般来说,腔外检查显示天然组织与移植物之间过渡平滑,无明显体积损失。接受柔性设计的动物比接受刚性设计的动物存活时间长约10天;然而,观察到吻合口周围严重的腔内肉芽组织。刚性设计在远端吻合处腔内肉芽组织发育不太明显,但近端吻合处出现部分裂开,中断了移植物的融合。

结论

我们的复合气管移植物中腔外移植物的良好融合总体上突出了SIS-ECM一些增强的再生能力。然而,腔内肉芽组织的存在表明,将其作为现成的、未改变的基质用于气道移植物仍不理想。必须进行进一步研究,以确定是否可以对基质进行改良,以增强气道腔内融合,并控制肉芽组织发育的相关机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18e3/9390405/6db03594eccf/fx1.jpg

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