Molecular Profiling of Lymphatic Endothelial Cell Activation In Vitro

被引:0
作者
Turati, Marta [1 ]
Mattei, Gianluca [2 ]
Boaretto, Alessia [3 ]
Magi, Alberto [2 ]
Calvani, Maura [3 ]
Ronca, Roberto [1 ]
机构
[1] Univ Brescia, Dept Mol & Translat Med, I-25123 Brescia, Italy
[2] Univ Florence, Dept Informat Engn, I-50139 Florence, Italy
[3] A Meyer Childrens Hosp, Sci Inst Res Hosp & Hlth Care IRCCS, Dept Pediat Hematol Oncol, I-50139 Florence, Italy
关键词
lymphangiogenesis; lymphatic endothelial cells; lymphatic activation; RNA sequencing; molecular profile; GROWTH-FACTOR-C; LYMPHANGIOGENESIS; MECHANISMS; VESSELS;
D O I
10.3390/ijms242316587
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The lymphatic vascular system plays a key role in cancer progression. Indeed, the activation of lymphatic endothelial cells (LECs) through the lymphangiogenic process allows for the formation of new lymphatic vessels (LVs) that represent the major route for the dissemination of solid tumors. This process is governed by a plethora of cancer-derived and microevironmental mediators that strictly activate and control specific molecular pathways in LECs. In this work we used an in vitro model of LEC activation to trigger lymphangiogenesis using a mix of recombinant pro-lymphangiogenic factors (VFS) and a co-culture system with human melanoma cells. Both systems efficiently activated LECs, and under these experimental conditions, RNA sequencing was exploited to unveil the transcriptional profile of activated LECs. Our data demonstrate that both recombinant and tumor cell-mediated activation trigger significant molecular pathways associated with endothelial activation, morphogenesis, and cytokine-mediated signaling. In addition, this system provides information on new genes to be further investigated in the lymphangiogenesis process and open the possibility for further exploitation in other tumor contexts where lymphatic dissemination plays a relevant role.
引用
收藏
页数:11
相关论文
共 22 条
[1]   Interaction of tumor cells and lymphatic vessels in cancer progression [J].
Alitalo, A. ;
Detmar, M. .
ONCOGENE, 2012, 31 (42) :4499-4508
[2]   Dendritic cells in inflammatory angiogenesis and lymphangiogenesis [J].
Bosisio, Daniela ;
Ronca, Roberto ;
Salvi, Valentina ;
Presta, Marco ;
Sozzani, Silvano .
CURRENT OPINION IN IMMUNOLOGY, 2018, 53 :180-186
[3]   The Pathogenesis and Clinical Management of Cutaneous Melanoma: An Evidence-Based Review [J].
Burns, Deanna ;
George, Jessica ;
Aucoin, Danielle ;
Bower, Jonathan ;
Burrell, Steven ;
Gilbert, Robert ;
Bower, Nichole .
JOURNAL OF MEDICAL IMAGING AND RADIATION SCIENCES, 2019, 50 (03) :460-+
[4]  
Christiansen Ailsa, 2011, Genes Cancer, V2, P1146, DOI 10.1177/1947601911423028
[5]   Mechanisms of Tumor-Induced Lymphovascular Niche Formation in Draining Lymph Nodes [J].
Commerford, Catharina D. ;
Dieterich, Lothar C. ;
He, Yuliang ;
Hell, Tanja ;
Montoya-Zegarra, Javier A. ;
Noerrelykke, Simon F. ;
Russo, Erica ;
Roecken, Martin ;
Detmar, Michael .
CELL REPORTS, 2018, 25 (13) :3554-+
[6]   Lymphatic changes in cancer and drug delivery to the lymphatics in solid tumors [J].
Cote, Brianna ;
Rao, Deepa ;
Alany, Raid G. ;
Kwon, Glen S. ;
Alani, Adam W. G. .
ADVANCED DRUG DELIVERY REVIEWS, 2019, 144 :16-34
[7]   Lymphatic vessel activation in cancer [J].
Das, Suvendu ;
Skobe, Mihaela .
LYMPHATIC CONTINUUM REVISITED, 2008, 1131 :235-241
[8]  
Dudley AC, 2023, ANGIOGENESIS, V26, P313, DOI 10.1007/s10456-023-09876-7
[9]   Vascular Endothelial Growth Factor-C and C-C Chemokine Receptor 7 in Tumor Cell-Lymphatic Cross-talk Promote Invasive Phenotype [J].
Issa, Arnine ;
Le, Thomas X. ;
Shoushtari, Alexander N. ;
Shields, Jacqueline D. ;
Swartz, Melody A. .
CANCER RESEARCH, 2009, 69 (01) :349-357
[10]   Mechanisms of lymphatic metastasis [J].
Karaman, Sinem ;
Detmar, Michael .
JOURNAL OF CLINICAL INVESTIGATION, 2014, 124 (03) :922-928