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Journal Article
Rauniyar K
,
Bokharaie H
,
Jeltsch M
.
Expansion and collapse of VEGF diversity in major clades of the animal kingdom
. Angiogenesis [Internet]. 2023;26(3):437 - 461.
https://link.springer.com/10.1007/s10456-023-09874-9
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Rauniyar et al. - 2023 - Expansion and collapse of VEGF diversity in major clades of the animal kingdom
(3.59 MB)
Batchu KC
,
Hänninen S
,
Jha SK
,
Jeltsch M
,
Somerharju P
.
Factors regulating the substrate specificity of cytosolic phospholipase A2-alpha in vitro
. Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids. 2016;1861(11):1597.
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Batchu et al. - 2016 - Factors regulating the substrate specificity of cy.pdf
(986.25 KB)
M Roukens G
,
Peterson-Maduro J
,
Padberg Y
,
Jeltsch M
,
Leppänen V-M
,
Bos FL
, et al.
.
Functional Dissection of the CCBE1 Protein: A Crucial Requirement for the Collagen Repeat Domain.
Circ Res [Internet]. 2015;116(10):1660-1669.
http://circres.ahajournals.org/content/116/10/1660.long
PubMed
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Johns SC
,
Yin X
,
Jeltsch M
,
Bishop JR
,
Schuksz M
,
Ghazal REl
, et al.
.
Functional Importance of a Proteoglycan Co-Receptor in Pathologic Lymphangiogenesis
. Circulation Research [Internet]. 2016;119(2):210-221.
http://circres.ahajournals.org/content/early/2016/05/25/CIRCRESAHA.116.308504
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Johns et al. 2016: Functional Importance of a Proteoglycan Co-Receptor in Pathologic Lymphangiogenesis
(3.69 MB)
Johns et al. 2016: Functional Importance of a Proteoglycan Co-Receptor in Pathologic Lymphangiogenesis: Supplemental Data
(3.3 MB)
Kärpänen T
,
Heckman CA
,
Keskitalo S
,
Jeltsch M
,
Ollila H
,
Neufeld G
, et al.
.
Functional interaction of VEGF-C and VEGF-D with neuropilin receptors
. FASEB J [Internet]. 2006;20(9):1462 - 72.
http://view.ncbi.nlm.nih.gov/pubmed/16816121
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Terhi Kärpänen et al., FASEB Journal 2006
(2.51 MB)
Jeltsch M
,
Tammela T
,
Alitalo K
,
Wilting J
.
Genesis and pathogenesis of lymphatic vessels
. Cell Tissue Res [Internet]. 2003;314(1):69 - 84.
http://view.ncbi.nlm.nih.gov/pubmed/12942362
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Michael Jeltsch et al., Cell and Tissue Research 2003
(562.33 KB)
Chilov D
,
Kukk E
,
Taira S
,
Jeltsch M
,
Kaukonen J
,
Palotie A
, et al.
.
Genomic organization of human and mouse genes for vascular endothelial growth factor C
. J Biol Chem [Internet]. 1997;272(40):25176 - 83.
http://view.ncbi.nlm.nih.gov/pubmed/9312130
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Dmitry Chilov et al., The Journal of Biological Chemistry 1997
(517.68 KB)
Mattonet K
,
Jeltsch M
.
Heterogeneity of the origin of the lymphatic system. [German].
Lymphologie in Forschung und Praxis [Internet]. 2015;19(2):84-88.
http://www.dglymph.de/fileadmin/global/pdfs/LymphForsch_2-15.pdf
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Mattonet & Jeltsch 2015: Heterogeneity of the origin of the lymphatic system.
(3.58 MB)
Mattonet & Jeltsch 2015: Über die heterogene Herkunft des Lymphgefäßsystems.
(288.77 KB)
Jeltsch M
,
Kaipainen A
,
Joukov V
,
Meng X
,
Lakso M
,
Rauvala H
, et al.
.
Hyperplasia of lymphatic vessels in VEGF-C transgenic mice
. Science (80- ) [Internet]. 1997;276(5317):1423 - 5.
http://view.ncbi.nlm.nih.gov/pubmed/9162011
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Michael Jeltsch et al., Science 1997
(293.65 KB)
Hiltunen MO
,
Laitinen M
,
Turunen MP
,
Jeltsch M
,
Hartikainen J
,
Rissanen TT
, et al.
.
Intravascular adenovirus-mediated VEGF-C gene transfer reduces neointima formation in balloon-denuded rabbit aorta
. Circulation [Internet]. 2000;102(18):2262 - 8.
http://view.ncbi.nlm.nih.gov/pubmed/11056103
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Mikko Hiltunen et al., Circulation 2000
(1.44 MB)
Veikkola T
,
Lohela M
,
Ikenberg K
,
Mäkinen T
,
Korff T
,
Saaristo A
, et al.
.
Intrinsic versus microenvironmental regulation of lymphatic endothelial cell phenotype and function
. FASEB J [Internet]. 2003;17(14):2006 - 13.
http://view.ncbi.nlm.nih.gov/pubmed/14597670
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Tanja Veikkola et al., FASEB Journal 2006
(598.77 KB)
Mukenge S
,
Jha SK
,
Catena M
,
Manara E
,
Leppänen V‐M
,
Lenti E
, et al.
.
Investigation on the role of biallelic variants in VEGF‐C found in a patient affected by Milroy‐like lymphedema
. Molecular Genetics & Genomic Medicine [Internet]. 2020;00:e1389.
https://onlinelibrary.wiley.com/doi/abs/10.1002/mgg3.1389
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Mukenge et al. 2020
(1.06 MB)
Dashkevich A
,
Raissadati A
,
Syrjälä SO
,
Zarkada G
,
Keränen MAI
,
Tuuminen R
, et al.
.
Ischemia-Reperfusion Injury Enhances Lymphatic Endothelial VEGFR3 and Rejection in Cardiac Allografts
. American Journal of Transplantation [Internet]. 2015;16(4):1160-1172.
http://onlinelibrary.wiley.com/doi/10.1111/ajt.13564/abstract
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Jha SK
,
Rauniyar K
,
Jeltsch M
.
Key molecules in lymphatic development, function, and identification
. Annals of Anatomy - Anatomischer Anzeiger [Internet]. 2018;219:25 - 34.
http://linkinghub.elsevier.com/retrieve/pii/S0940960218300712
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1-s2.0-S0940960218300712-main.pdf
(2.19 MB)
Koistinen H
,
Künnapuu J
,
Jeltsch M
.
KLK3 in the Regulation of Angiogenesis—Tumorigenic or Not?
. International Journal of Molecular Sciences [Internet]. 2021;22(24):13545.
https://www.mdpi.com/1422-0067/22/24/13545
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Koistinen et al. - 2021 - KLK3 in the Regulation of Angiogenesis—Tumorigenic or Not?
(1.28 MB)
Jha SK
,
Rauniyar K
,
Chronowska E
,
Mattonet K
,
Maina EW
,
Koistinen H
, et al.
.
KLK3/PSA and cathepsin D activate VEGF-C and VEGF-D
. eLife [Internet]. 2019;8:e44478.
https://elifesciences.org/articles/44478
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Jha & Rauniyar et al. 2019
(3.84 MB)
Krebs R
,
Jeltsch M
.
The lymphangiogenic growth factors VEGF-C and VEGF-D. Part 1: Basic principles and embryonic development. [bilingual: English, German].
Lymphologie in Forschung und Praxis [Internet]. 2013;17(1):30 - 37.
http://jeltsch.org/sites/jeltsch.org/files/JeltschMichael_Lymphforsch2013_30.pdf
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Krebs & Jeltsch (2013): The lymphangiogenic growth factors VEGF-C and VEGF-D. Part 1: Fundamentals and embryonic development.
(2.08 MB)
Krebs & Jeltsch (2013): Die lymphangiogenen Wachstumsfaktoren VEGF-C und VEGF-D. Teil 1. Grundlagen und Embryonalentwicklung.
(1.82 MB)
Schaupper MV
,
Jeltsch M
,
Rohringer S
,
Redl H
,
Holnthoner W
.
Lymphatic Vessels in Regenerative Medicine and Tissue Engineering
. Tissue Engineering Part B [Internet]. 2016;22(5):1-13.
http://online.liebertpub.com/doi/10.1089/ten.TEB.2016.0034
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Schaupper et al. Tissue Engineering Part B. Review (postprint manuscript = accepted version after peer review).
(697.3 KB)
Gucciardo E
,
Lehti TA
,
Korhonen A
,
Salvén P
,
Lehti K
,
Jeltsch M
, et al.
.
Lymphatics and the eye. [Finnish]
. Duodecim Lääketieteellinen Aikakauskirja [Internet]. 2020;136(16):1777-1788.
https://www.duodecimlehti.fi/lehti/2020/16/duo15739
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Gucciardo et al. Lymphatics and the Eye (English version).
(3.31 MB)
Jeltsch M
,
Alitalo K
.
Lymphatic-to-blood vessel transdifferentiation in zebrafish
. Nature Cardiovascular Research [Internet]. 2022;1(6):539 - 541.
https://rdcu.be/cOjJ0
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Künnapuu J
,
Jeltsch M
.
Outside in and brakes off for lymphatic growth
. Science Signaling [Internet]. 2021;14(695).
https://www.science.org/doi/10.1126/scisignal.abj5058
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Künnapuu and Jeltsch - 2021 - Outside in and brakes off for lymphatic growth
(268.05 KB)
Karpanen T
,
Bry M
,
Ollila HM
,
Seppänen-Laakso T
,
Liimatta E
,
Leskinen H
, et al.
.
Overexpression of vascular endothelial growth factor-B in mouse heart alters cardiac lipid metabolism and induces myocardial hypertrophy
. Circ Res [Internet]. 2008;103(9):1018 - 26.
http://view.ncbi.nlm.nih.gov/pubmed/18757827
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Terhi Kärpänen et al., Circulation Research 2008
(898.27 KB)
Terhi Kärpänen et al., Circulation Research 2008, supplement
(1.56 MB)
Baluk P
,
Tammela T
,
Ator E
,
Lyubynska N
,
Achen MG
,
Hicklin DJ
, et al.
.
Pathogenesis of persistent lymphatic vessel hyperplasia in chronic airway inflammation
. J Clin Invest [Internet]. 2005;115(2):247 - 57.
http://view.ncbi.nlm.nih.gov/pubmed/15668734
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Peter Baluk et al., Journal of Clinical Investigation 2005
(1.89 MB)
Lackner M
,
Schmotz C
,
Jeltsch M
.
The Proteolytic Activation of Vascular Endothelial Growth Factor-C
. Lymphologie in Forschung und Praxis [Internet]. 2019;23(2):88 - 98.
https://doi.org/10.5281/zenodo.3629263
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English version: Lackner et al. 2019
(2.94 MB)
German version: Lackner et al. 2019
(673.37 KB)
Künnapuu J
,
Bokharaie H
,
Jeltsch M
.
Proteolytic Cleavages in the VEGF Family: Generating Diversity among Angiogenic VEGFs, Essential for the Activation of Lymphangiogenic VEGFs
. Biology [Internet]. 2021;10(2):167.
https://www.mdpi.com/2079-7737/10/2/167
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Künnapuu et al. - 2021 - Proteolytic Cleavages in the VEGF Family: Generating Diversity among Angiogenic VEGFs, Essential [...]
(3.44 MB)
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