Regulation of lymphangiogenesis in the diaphragm by macrophages and VEGFR-3 signaling

被引:26
|
作者
Ochsenbein, Alexandra M. [1 ]
Karaman, Sinem [1 ]
Proulx, Steven T. [1 ]
Goldmann, Rhea [1 ]
Chittazhathu, Jyothi [1 ]
Dasargyri, Athanasia [1 ]
Chong, Chloe [1 ]
Leroux, Jean-Christophe [1 ]
Stanley, E. Richard [2 ]
Detmar, Michael [1 ]
机构
[1] ETH, Inst Pharmaceut Sci, Swiss Fed Inst Technol, Vladimir Prelog Weg 3,HCI H303, CH-8093 Zurich, Switzerland
[2] Yeshiva Univ, Dept Dev & Mol Biol, Albert Einstein Coll Med, New York, NY 10461 USA
基金
瑞士国家科学基金会; 欧洲研究理事会; 美国国家卫生研究院;
关键词
Lymphatic vessels; Development; Macrophages; VEGFR-3; LYMPHATIC VASCULAR MORPHOGENESIS; TUMOR LYMPHANGIOGENESIS; TARGETED DISRUPTION; PERITONEAL-CAVITY; ENDOTHELIAL-CELL; PROGENITOR CELLS; VESSELS; INFLAMMATION; MOUSE; PU.1;
D O I
10.1007/s10456-016-9523-8
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
Lymphatic vessels play important roles in fluid drainage and in immune responses, as well as in pathological processes including cancer progression and inflammation. While the molecular regulation of the earliest lymphatic vessel differentiation and development has been investigated in much detail, less is known about the control and timing of lymphatic vessel maturation in different organs, which often occurs postnatally. We investigated the time course of lymphatic vessel development on the pleural side of the diaphragmatic muscle in mice, the so-called submesothelial initial diaphragmatic lymphatic plexus. We found that this lymphatic network develops largely after birth and that it can serve as a reliable and easily quantifiable model to study physiological lymphangiogenesis in vivo. Lymphangiogenic growth in this tissue was highly dependent on vascular endothelial growth factor receptor (VEGFR)-3 signaling, whereas VEGFR-1 and -2 signaling was dispensable. During diaphragm development, macrophages appeared first in a linearly arranged pattern, followed by ingrowth of lymphatic vessels along these patterned lines. Surprisingly, ablation of macrophages in colony-stimulating factor-1 receptor (Csf1r)-deficient mice and by treatment with a CSF-1R-blocking antibody did not inhibit the general lymphatic vessel development in the diaphragm but specifically promoted branch formation of lymphatic sprouts. In agreement with these findings, incubation of cultured lymphatic endothelial cells with conditioned medium from P7 diaphragmatic macrophages significantly reduced LEC sprouting. These results indicate that the postnatal diaphragm provides a suitable model for studies of physiological lymphangiogenic growth and maturation, and for the identification of modulators of lymphatic vessel growth.
引用
收藏
页码:513 / 524
页数:12
相关论文
共 50 条
  • [41] VEGF-C signaling pathways through VEGFR-2 and VEGFR-3 in vasculoangiogenesis and hematopoiesis
    Hamada, K
    Oike, Y
    Takakura, N
    Ito, Y
    Jussila, L
    Dumont, DJ
    Alitalo, K
    Suda, T
    [J]. BLOOD, 2000, 96 (12) : 3793 - 3800
  • [42] Babao Dan inhibits lymphangiogenesis of gastric cancer in vitro and in vivo via lncRNA-ANRIL/VEGF-C/VEGFR-3 signaling axis
    Guan, Jianhua
    Guan, Bin
    Shang, Haixia
    Peng, Jun
    Yang, Hong
    Lin, Jiumao
    [J]. BIOMEDICINE & PHARMACOTHERAPY, 2022, 154
  • [43] VEGF-C/VEGFR-3 signalling in macrophages ameliorates acute lung injury
    Yamashita, Masahiro
    Niisato, Miyuki
    Kawasaki, Yasushi
    Karaman, Sinem
    Robciuc, Marius R.
    Shibata, Yuji
    Ishida, Yoji
    Nishio, Ryosuke
    Masuda, Tomoyuki
    Sugai, Tamotsu
    Ono, Masao
    Tuder, Rubin M.
    Alitalo, Kari
    Yamauchi, Kohei
    [J]. EUROPEAN RESPIRATORY JOURNAL, 2022, 59 (04)
  • [44] Novel application assigned to toluquinol: inhibition of lymphangiogenesis by interfering with VEGF-C/VEGFR-3 signalling pathway
    Garcia-Caballero, M.
    Blacher, S.
    Paupert, J.
    Quesada, A. R.
    Medina, M. A.
    Noel, A.
    [J]. BRITISH JOURNAL OF PHARMACOLOGY, 2016, 173 (12) : 1966 - 1987
  • [45] Relationship Status Update on Astrocytic VEGFR-3 and mTOR Signaling: It's Complicated
    Brewster, Amy L.
    [J]. EPILEPSY CURRENTS, 2021, 21 (02) : 117 - 119
  • [46] Suppression of VEGFR-3 signaling inhibits lymph node metastasis in gastric cancer
    Shimizu, K
    Kubo, H
    Yamaguchi, K
    Kawashima, K
    Ueda, Y
    Matsuo, K
    Awane, M
    Shimahara, Y
    Takabayashi, A
    Yamaoka, Y
    Satoh, S
    [J]. CANCER SCIENCE, 2004, 95 (04) : 328 - 333
  • [47] Chronic VEGFR-3 signaling preserves dendritic arborization and sensitization under stress
    Chakraborty, Adri
    Upadhya, Raghavendra
    Usman, Timaj A.
    Shetty, Ashok K.
    Rutkowski, Joseph M.
    [J]. BRAIN BEHAVIOR AND IMMUNITY, 2021, 98 : 219 - 233
  • [48] VEGFR1 for lymphangiogenesis - An alternative signaling pathway?
    Sato, Yasufumi
    [J]. ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2008, 28 (04) : 604 - 605
  • [49] Pathological lymphangiogenesis is modulated by galectin-8-dependent crosstalk between podoplanin and integrin-associated VEGFR-3
    Chen, Wei-Sheng
    Cao, Zhiyi
    Sugaya, Satoshi
    Lopez, Maria J.
    Sendra, Victor G.
    Laver, Nora
    Leffler, Hakon
    Nilsson, Ulf J.
    Fu, Jianxin
    Song, Jianhua
    Xia, Lijun
    Hamrah, Pedram
    Panjwani, Noorjahan
    [J]. NATURE COMMUNICATIONS, 2016, 7
  • [50] VEGF-C/VEGFR-3 SIGNALING PROMOTES POSTNATAL DEVELOPMENT OF CEREBRAL INTERNEURONS
    Fontaine, R. H.
    Calvo, C. F.
    Soueid, J.
    Tammela, T.
    Mouktine, I
    Jaskowiak, A. L.
    Miguez, A.
    Zalc, B.
    Alitalo, K.
    Eichmann, A.
    Thomas, J. L.
    [J]. GLIA, 2009, 57 (13) : S90 - S90