Literature list for Poster #XX:
Last modified on July 24, 2026 • 3 min read • 431 words@page { }table { border-collapse:collapse; border-spacing:0; empty-cells:show }td, th { vertical-align:top; font-size:12pt;}h1, h2, h3, h4, h5, h6 { clear:both }ol, ul { margin:0; padding:0;}li { list-style: none; margin:0; padding:0;}li span. { clear: both; line-height:0; width:0; height:0; margin:0; padding:0; }span.footnodeNumber { padding-right:1em; }span.annotation_style_by_filter { font-size:95%; font-family:Arial; background-color:#fff000; margin:0; border:0; padding:0; }* { margin:0;}.P1 { font-size:12pt; font-family:Liberation Serif; writing-mode:page; }.P2 { font-size:12pt; margin-bottom:4.23mm; margin-left:0mm; margin-right:0mm; margin-top:0mm; text-indent:0mm; font-family:Liberation Serif; writing-mode:page; }.P3 { font-size:12pt; margin-bottom:4.23mm; margin-left:0mm; margin-right:0mm; margin-top:0mm; text-indent:0mm; font-family:Liberation Serif; writing-mode:page; text-align:center ! important; }.P4 { font-size:20pt; margin-bottom:4.23mm; margin-left:0mm; margin-right:0mm; margin-top:0mm; text-indent:0mm; font-family:Liberation Serif; writing-mode:page; text-align:center ! important; font-weight:bold; }.P5 { font-size:11pt; margin-bottom:4.23mm; margin-left:0mm; margin-right:0mm; margin-top:0mm; text-indent:0mm; font-family:Liberation Serif; writing-mode:page; text-align:center ! important; }.Internet_20_link { color:#000080; text-decoration:underline; }.T10 { vertical-align:super; font-size:58%;}.T6 { font-style:italic; }.T7 { font-style:italic; }.T8 { font-weight:bold; }.T1 .T2 .T3 .T4 .T5 { }Novel activating proteases uncover new roles for VEGF-C
Sawan Kumar Jha1*, Khushbu Rauniyar1*, Ewa Chronowska3, Hannu Koistinen4, Ulf-Håkan Stenman4, Michael Jeltsch1,2,**
1Translational Cancer Biology Research Program; 2Wihuri Research Institute, Biomedicum Helsinki, University of Helsinki, Finland; 3Jagiellonian University Medical College, Cracow, Poland; 4Department of Clinical Chemistry, University of Helsinki, Finland; *equal contribution; **corrresponding author ( http://lab.jeltsch.org - michael@jeltsch.org )
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Iyibozkurt AC, Balcik P, Bulgurcuoglu S, Arslan BK, Attar R, Attar E. Effect of vascular endothelial growth factor on sperm motility and survival. Reproductive Biomedicine Online. 2009; 19: 784–8. https://doi.org/10.1016/j.rbmo.2009.09.019
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Jeltsch M, Jha SK, Tvorogov D, Anisimov A, Leppänen V-M, Holopainen T, et al. CCBE1 Enhances Lymphangiogenesis via A Disintegrin and Metalloprotease With Thrombospondin Motifs-3–Mediated Vascular Endothelial Growth Factor-C Activation. Circulation. 2014; 129: 1962–71. https://doi.org/10.1161/CIRCULATIONAHA.113.002779
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Jha SK, Rauniyar K, Karpanen T, Leppänen V-M, Brouillard P, Vikkula M, et al. Efficient activation of the lymphangiogenic growth factor VEGF-C requires the C-terminal domain of VEGF-C and the N-terminal domain of CCBE1. Scientific Reports. 2017; 7: 4916. https://doi.org/10.1038/s41598-017-04982-1
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Karkkainen MJ, Valtola, Reija, Korpelainen, Eija I., Alitalo K. VEGF, VEGF-C and their receptors in tumor angiogenesis and metastasis. Extended Abstracts of the 29th International Symposium of The Princess Takamatsu Cancer Research Fund - Molecular Basis for Invasion and Metastasis. Tokyo: Princess Takamatsu Cancer Research Fund; 1999. p. 94–104.
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Matsumura M, Bhatt AS, Andress D, Clegg N, Takayama TK, Craik CS, et al. Substrates of the prostate-specific serine protease prostase/KLK4 defined by positional-scanning peptide libraries. The Prostate. 2005; 62: 1–13. https://doi.org/10.1002/pros.20101
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Rauniyar K, Jha SK, Jeltsch M. Biology of Vascular Endothelial Growth Factor C in the Morphogenesis of Lymphatic Vessels. Frontiers in Bioengineering and Biotechnology. 2018; 6. https://doi.org/10.3389/fbioe.2018.00007
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Torry DS, Leavenworth J, Chang M, Maheshwari V, Groesch K, Ball ER, et al. Angiogenesis in implantation. Journal of Assisted Reproduction and Genetics. 2007; 24: 303–15. https://doi.org/10.1007/s10815-007-9152-7