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宿主非炎性中性粒细胞介导生物工程血管网络的植入。

Host non-inflammatory neutrophils mediate the engraftment of bioengineered vascular networks.

作者信息

Lin Ruei-Zeng, Lee Chin Nien, Moreno-Luna Rafael, Neumeyer Joseph, Piekarski Breanna, Zhou Pingzhu, Moses Marsha A, Sachdev Monisha, Pu William T, Emani Sitaram, Melero-Martin Juan M

机构信息

Department of Cardiac Surgery, Boston Children's Hospital, Boston, MA 02115, USA.

Department of Surgery, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Nat Biomed Eng. 2017;1. doi: 10.1038/s41551-017-0081. Epub 2017 Jun 13.

Abstract

Notwithstanding remarkable progress in vascular network engineering, implanted bioengineered microvessels largely fail to form anastomoses with the host vasculature. Here, we demonstrate that implants containing assembled human vascular networks (A-Grafts) fail to engraft due to their inability to engage non-inflammatory host neutrophils upon implantation into mice. In contrast, unassembled vascular cells (U-Grafts) readily engage alternatively polarized neutrophils, which in turn serve as indispensable mediators of vascular assembly and anastomosis. The depletion of host neutrophils abrogated vascularization in U-Grafts, whereas an adoptive transfer of neutrophils fully restored vascularization in myeloid-depleted mice. Neutrophil engagement was regulated by secreted factors and was progressively silenced as the vasculature matured. Exogenous addition of factors from U-Grafts reengaged neutrophils and enhanced revascularization in A-Grafts, a process that was recapitulated by blocking Notch signaling. Our data suggest that the pro-vascularization potential of neutrophils can be harnessed to improve the engraftment of bioengineered tissues.

摘要

尽管在血管网络工程方面取得了显著进展,但植入的生物工程微血管在很大程度上无法与宿主脉管系统形成吻合。在此,我们证明,含有组装好的人类血管网络的植入物(A移植物)由于在植入小鼠后无法与非炎症性宿主中性粒细胞相互作用而未能成功植入。相比之下,未组装的血管细胞(U移植物)很容易与交替极化的中性粒细胞相互作用,而这些中性粒细胞反过来又成为血管组装和吻合的不可或缺的介质。宿主中性粒细胞的耗竭消除了U移植物中的血管形成,而中性粒细胞的过继转移完全恢复了骨髓耗竭小鼠的血管形成。中性粒细胞的相互作用受分泌因子调节,并随着脉管系统成熟而逐渐沉默。从U移植物中添加外源性因子可重新激活中性粒细胞,并增强A移植物中的血管再生,这一过程可通过阻断Notch信号来重现。我们的数据表明,可以利用中性粒细胞的促血管生成潜力来改善生物工程组织的植入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/103d/5578427/133aa81fa986/nihms873242f1.jpg

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