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TGF-β receptor 1 inhibition prevents stenosis of tissue-engineered vascular grafts by reducing host mononuclear phagocyte activation

机译:TGF-β1受体的抑制通过减少宿主单核吞噬细胞的活化来防止组织工程化血管移植的狭窄

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摘要

Stenosis is a critical problem in the long-term efficacy of tissue-engineered vascular grafts (TEVGs). We previously showed that host monocyte infiltration and activation within the graft drives stenosis and that TGF-β receptor 1 (TGF-βR1) inhibition can prevent it, but the latter effect was attributed primarily to inhibition of mesenchymal cell expansion. In this study, we assessed the effects of TGF-βR1 inhibition on the host monocytes. Biodegradable TEVGs were implanted as inferior vena cava interposition conduits in 2 groups of C57BL/6 mice (n = 25/group): unseeded grafts and unseeded grafts with TGF-βR1 inhibitor systemic treatment for the first 2 wk. The TGF-βR1 inhibitor treatment effectively improved TEVG patency at 6 mo compared to the untreated control group (91.7 vs. 48%, P < 0.001), which is associated with a reduction in classic activation of mononuclear phagocytes. Consistent with these findings, the addition of rTGF-β to LPS/IFN-γ–stimulated monocytes enhanced secretion of inflammatory cytokines TNF-α, IL-12, and IL-6; this effect was blocked by TGF-βR1 inhibition (P < 0.0001). These findings suggest that the TGF-β signaling pathway contributes to TEVG stenosis by inducing classic activation of host monocytes. Furthermore, blocking monocyte activation by TGF-βR1 inhibition provides a viable strategy for preventing TEVG stenosis while maintaining neotissue formation.—Lee, Y.-U., de Dios Ruiz-Rosado, J., Mahler, N., Best, C. A., Tara, S., Yi, T., Shoji, T., Sugiura, T., Lee, A. Y., Robledo-Avila, F., Hibino, N., Pober, J. S., Shinoka, T., Partida-Sanchez, S., Breuer, C. K. TGF-β receptor 1 inhibition prevents stenosis of tissue-engineered vascular grafts by reducing host mononuclear phagocyte activation.
机译:狭窄是组织工程血管移植物(TEVG)长期疗效的关键问题。我们先前显示,移植物中的宿主单核细胞浸润和激活会导致狭窄,而TGF-β受体1(TGF-βR1)的抑制作用可以阻止其发生,但后者的作用主要归因于间充质细胞扩张的抑制。在这项研究中,我们评估了TGF-βR1抑制对宿主单核细胞的影响。将可生物降解的TEVG作为下腔静脉插入导管植入2组C57BL / 6小鼠(n = 25 /组)中:前2周未接种的移植物和接受TGF-βR1抑制剂全身治疗的未接种的移植物。与未治疗的对照组相比,TGF-βR1抑制剂治疗在6个月时有效改善了TEVG的通畅性(91.7对48%,P <0.001),这与单核吞噬细胞经典激活的减少有关。与这些发现一致的是,在LPS /IFN-γ刺激的单核细胞中添加rTGF-β可增强炎性细胞因子TNF-α,IL-12和IL-6的分泌。这种作用被TGF-βR1抑制所阻断(P <0.0001)。这些发现表明,TGF-β信号传导途径通过诱导宿主单核细胞的经典活化而有助于TEVG狭窄。此外,通过TGF-βR1抑制作用阻断单核细胞活化为预防TEVG狭窄同时维持新组织形成提供了可行的策略。-Lee,Y.-U.,de Dios Ruiz-Rosado,J.,Mahler,N.,Best,CA,塔拉·S·伊·T·肖吉·T·杉浦·T·李·AY·罗伯莱多·阿维拉·F·日比野·北·鲍伯·JS·筱冈·T·帕迪达·桑切斯,Breuer,CKTGF-β受体1的抑制通过减少宿主单核吞噬细胞的活化来防止组织工程化血管移植物的狭窄。

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