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双层丝素蛋白移植物用于猪输尿管缺损模型管状输尿管成形术的评估

Evaluation of Bi-Layer Silk Fibroin Grafts for Tubular Ureteroplasty in a Porcine Defect Model.

作者信息

Gundogdu Gokhan, Okhunov Zhamshid, Cristofaro Vivian, Starek Stephanie, Veneri Faith, Orabi Hazem, Jiang Pengbo, Sullivan Maryrose P, Mauney Joshua R

机构信息

Department of Urology, University of California, Irvine, Irvine, CA, United States.

Division of Urology, Veterans Affairs Boston Healthcare System, Boston, MA, United States.

出版信息

Front Bioeng Biotechnol. 2021 Sep 17;9:723559. doi: 10.3389/fbioe.2021.723559. eCollection 2021.

Abstract

Ureteral reconstruction with autologous tissue grafts is often limited by tissue availability and donor site morbidity. This study investigates the performance of acellular, bi-layer silk fibroin (BLSF) scaffolds in a porcine model of ureteroplasty. Tubular ureteroplasty with BLSF grafts in combination with transient stenting for 8 weeks was performed in adult female, Yucatan, mini-swine ( = 5). Animals were maintained for 12 weeks post-op with imaging of neoconduits using ultrasonography and retrograde ureteropyelography carried out at 2 and 4 weeks intervals. End-point analyses of ureteral neotissues and unoperated controls included histological, immunohistochemical (IHC), histomorphometric evaluations as well as functional assessments of contraction/relaxation. All animals survived until scheduled euthanasia and displayed mild hydronephrosis (Grades 1-2) in reconstructed collecting systems during the 8 weeks stenting period with one animal presenting with a persistent subcutaneous fistula at 2 weeks post-op. By 12 weeks of scaffold implantation, unstented neoconduits led to severe hydronephrosis (Grade 4) and stricture formation in the interior of graft sites in 80% of swine. Bulk scaffold extrusion into the distal ureter was also apparent in 60% of swine contributing to ureteral obstruction. However, histological and IHC analyses revealed the formation of innervated, vascularized neotissues with -smooth muscle actin+ and SM22α+ smooth muscle bundles as well as uroplakin 3A+ and pan-cytokeratin + urothelium. contractility and relaxation responses of neotissues were similar to unoperated control segments. BLSF biomaterials represent emerging platforms for tubular ureteroplasty, however further optimization is needed to improve degradation kinetics and mitigate stricture formation.

摘要

自体组织移植进行输尿管重建常常受到组织可用性和供体部位并发症的限制。本研究在猪输尿管成形术模型中研究了脱细胞双层丝素蛋白(BLSF)支架的性能。在成年雌性尤卡坦小型猪(n = 5)中,采用BLSF移植物进行管状输尿管成形术并临时支架置入8周。术后动物饲养12周,使用超声对新形成的管道进行成像,并每隔2周和4周进行逆行输尿管肾盂造影。对输尿管新组织和未手术对照进行终点分析,包括组织学、免疫组织化学(IHC)、组织形态计量学评估以及收缩/舒张功能评估。所有动物均存活至预定安乐死,在8周支架置入期内,重建的集合系统中均出现轻度肾积水(1-2级),其中1只动物在术后2周出现持续的皮下瘘。到支架植入12周时,80%的猪中未放置支架的新形成管道导致严重肾积水(4级)和移植部位内部形成狭窄。60%的猪中还明显出现大块支架向远端输尿管挤出,导致输尿管梗阻。然而,组织学和IHC分析显示形成了有神经支配、血管化的新组织,有α-平滑肌肌动蛋白+和SM22α+平滑肌束以及尿路上皮抗原3A+和全细胞角蛋白+尿路上皮。新组织的收缩和舒张反应与未手术对照段相似。BLSF生物材料是管状输尿管成形术的新兴平台,然而需要进一步优化以改善降解动力学并减轻狭窄形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6642/8484785/bd2b5a05ccd5/fbioe-09-723559-g001.jpg

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