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Deconstructing the Tissue Engineered Vascular Graft: Evaluating ScaffoldPre-Wetting Conditioned Media Incubation and Determining the Optimal Mononuclear CellSource

机译:解构组织工程化的血管移植物:评估支架预润湿条件培养基孵育并确定最佳单核细胞资源

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摘要

Stenosis limits widespread use of tissue-engineered vascular grafts (TEVGs), and bone marrow mononuclear cell (BM-MNC) seeding attenuates this complication. Yet seeding is a multistep process, and the singular effects of each component are unknown. We investigated which components of the clinical seeding protocol confer graft patency and sought to identify the optimal MNC source. Scaffolds composed of polyglycolic acid and ε-caprolactone/ι-lactic acid underwent conditioned media (CM) incubation (n = 25) and syngeneic BM-MNC (n = 9) or peripheral blood (PB)-MNC (n = 20) seeding. TEVGs were implanted for 2 weeks in the mouse IVC. CM incubation and PB-MNC seeding did not increase graft patency compared to control scaffolds prewet with PBS (n = 10), while BM-MNC seeding reduced stenosis by suppressing inflammation and smooth muscle cell, myofibroblast, and pericyte proliferation. IL-1β, IL-6, and TNFα were elevated in the seeded BM-MNC supernatant. Further, BM-MNC seeding reduced platelet activation in a dose-dependent manner, possibly contributing to TEVG patency.
机译:狭窄限制了组织工程血管移植物(TEVGs)的广泛使用,而骨髓单核细胞(BM-MNC)植入减轻了这种并发症。然而,播种是一个多步骤过程,每个组件的奇异效果都是未知的。我们调查了临床播种方案的哪些组成部分赋予了移植物通畅性,并试图确定最佳的MNC来源。由聚乙醇酸和ε-己内酯/α-乳酸组成的支架经过条件培养基(CM)孵育(n = 25)和同基因BM-MNC(n = 9)或外周血(PB)-MNC(n = 20)接种。将TEVGs植入小鼠IVC中2周。与用PBS预湿的对照支架(n = 10)相比,CM孵育和PB-MNC种植并没有增加移植的通畅性,而BM-MNC种植通过抑制炎症和平滑肌细胞,成肌纤维细胞和周细胞增殖来减少狭窄。接种的BM-MNC上清液中IL-1β,IL-6和TNFα升高。此外,BM-MNC接种以剂量依赖性方式降低血小板活化,可能有助于TEVG的通畅。

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