The Effect of Lymphangiogenesis in Transplant Arteriosclerosis

淋巴管新生 淋巴系统 医学 移植 淋巴管内皮 血管内皮生长因子C 病理 淋巴管 新生内膜 癌症研究 免疫学 血管内皮生长因子 内科学 血管内皮生长因子A 癌症 转移 血管内皮生长因子受体 再狭窄 支架
作者
Kai Chen,Rong Mou,Pengwei Zhu,Xiaodong Xu,Han Wang,Liujun Jiang,Yanhua Hu,Xiaosheng Hu,Liang Ma,Qingzhong Xiao,Qingbo Xu
出处
期刊:Circulation [Lippincott Williams & Wilkins]
卷期号:147 (6): 482-497 被引量:13
标识
DOI:10.1161/circulationaha.122.060799
摘要

Transplant arteriosclerosis is a major complication in long-term survivors of heart transplantation. Increased lymph flow from donor heart to host lymph nodes has been reported to play a role in transplant arteriosclerosis, but how lymphangiogenesis affects this process is unknown.Vascular allografts were transplanted among various combinations of mice, including wild-type, Lyve1-CreERT2;R26-tdTomato, CAG-Cre-tdTomato, severe combined immune deficiency, Ccr2KO, Foxn1KO, and lghm/lghdKO mice. Whole-mount staining and 3-dimensional reconstruction identified lymphatic vessels within the grafted arteries. Lineage tracing strategies delineated the cellular origin of lymphatic endothelial cells. Adeno-associated viral vectors and a selective inhibitor were used to regulate lymphangiogenesis.Lymphangiogenesis within allograft vessels began at the anastomotic sites and extended from preexisting lymphatic vessels in the host. Tertiary lymphatic organs were identified in transplanted arteries at the anastomotic site and lymphatic vessels expressing CCL21 (chemokine [C-C motif] ligand 21) were associated with these immune structures. Fibroblasts in the vascular allografts released VEGF-C (vascular endothelial growth factor C), which stimulated lymphangiogenesis into the grafts. Inhibition of VEGF-C signaling inhibited lymphangiogenesis, neointima formation, and adventitial fibrosis of vascular allografts. These studies identified VEGF-C released from fibroblasts as a signal stimulating lymphangiogenesis extending from the host into the vascular allografts.Formation of lymphatic vessels plays a key role in the immune response to vascular transplantation. The inhibition of lymphangiogenesis may be a novel approach to prevent transplant arteriosclerosis.
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