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使用去细胞生物工程移植物进行原位雪貂气管移植可产生功能性上皮。

Orthotopic Ferret Tracheal Transplantation Using a Recellularized Bioengineered Graft Produces Functional Epithelia.

作者信息

Pai Albert C, Swatek Anthony M, Lynch Thomas J, Ahlers Bethany A, Ievlev Vitaly, Engelhardt John F, Parekh Kalpaj R

机构信息

Department of Cardiothoracic Surgery, University of Iowa Hospitals and Clinics, Iowa City, IA 52242, USA.

Department of Anatomy and Cell Biology, University of Iowa, Iowa City, IA 52242, USA.

出版信息

Bioengineering (Basel). 2023 Jun 29;10(7):777. doi: 10.3390/bioengineering10070777.

Abstract

Tracheal grafts may be necessary to bridge long-segment defects after curative resection for airway obstructions. Bioengineered grafts have emerged as an appealing option, given the possibilities of altering the histologic and cellular profile of the conduit. We previously designed a bioreactor capable of luminally decellularizing and recellularizing a ferret trachea with surface airway epithelia (SAE) basal cells (BCs), and we sought to assess the fate of these grafts when transplanted in an orthotopic fashion. As adjuncts to the procedure, we investigated the use of a vascular endothelial growth factor (VEGF)-laden hydrogel and of immunosuppression (IS) in graft revascularization and viability. IS was shown to limit early graft revascularization, but this effect could be counteracted with VEGF supplementation. Submucosal gland (SMG) loss was shown to be inevitable regardless of the revascularization strategy. Lastly, the bioengineered tracheas survived one month after transplant with differentiation of our implanted BCs that then transitioned into a recipient-derived functional epithelium. The work presented in this manuscript has important implications for future cellular and regenerative therapies.

摘要

对于气道梗阻进行根治性切除后,可能需要气管移植物来桥接长节段缺损。鉴于生物工程移植物有可能改变管道的组织学和细胞特征,它已成为一种有吸引力的选择。我们之前设计了一种生物反应器,能够使雪貂气管腔内去细胞化,并将其重新接种表面气道上皮(SAE)基底细胞(BCs),我们试图评估这些移植物原位移植后的命运。作为该手术的辅助手段,我们研究了在移植物血管再生和存活过程中使用载有血管内皮生长因子(VEGF)的水凝胶和免疫抑制(IS)方法。结果表明,免疫抑制会限制早期移植物血管再生,但补充VEGF可以抵消这种影响。无论采用何种血管再生策略,粘膜下腺(SMG)的丧失都是不可避免的。最后,生物工程气管在移植后存活了一个月,植入的基底细胞发生分化,随后转变为受体来源的功能性上皮。本手稿中介绍的工作对未来的细胞和再生疗法具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e78/10376427/ba79836e6025/bioengineering-10-00777-g001.jpg

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