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Jeltsch, Michael
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2012
Critical role of VEGF-C/VEGFR-3 signaling in innate and adaptive immune responses in experimental obliterative bronchiolitis.
Am J Pathol. 2012;181(5):1607-20.
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2013
The basis for the distinct biological activities of vascular endothelial growth factor receptor-1 ligands
. Sci Signal. 2013;6(282):ra52.
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Anisimov 2013 Science Signaling
(1.92 MB)
Anisimov 2013 Science Signaling Supplement
(2.09 MB)
Krebs R
,
Jeltsch M
.
Die lymphangiogenen Wachstumsfaktoren VEGF-C und VEGF-D
. Lymphologie in Forschung und Praxis. 2013;17(1):30-37.
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Krebs R
,
Jeltsch M
.
Die lymphangiogenic growth factors VEGF-C and VEGF-D. Part 2: The role of VEGF-C and VEGF-D in diseases of the lymphatic system. [bilingual: English, German].
Lymphologie in Forschung und Praxis [Internet]. 2013;17(2):96 - 104.
http://jeltsch.org/sites/jeltsch.org/files/JeltschMichael_Lymphforsch2013_96.pdf
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Krebs & Jeltsch (2013): The lymphangiogenic growth factors VEGF-C and VEGF-D. Part 2: The role of VEGF-C and VEGF-D in diseas...
(3.88 MB)
Krebs & Jeltsch (2013): Die lymphangiogenen Wachstumsfaktoren VEGF-C und VEGF-D. Teil 2. Die Rolle von VEGF-C und VEGF-D bei ...
(2.6 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)
Receptor Tyrosine Kinase-Mediated Angiogenesis
. Cold Spring Harbor Perspectives in Biology [Internet]. 2013;5(9).
http://cshperspectives.cshlp.org/content/5/9/a009183
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Jeltsch et al. (2013): Tyrosine Kinase-Mediated Angiogenesis. CSH Persp Biol
(934.46 KB)
Structural and mechanistic insights into VEGF receptor 3 ligand binding and activation
. Proceedings of the National Academy of Sciences of the United States of America [Internet]. 2013;110(32):12960 - 12965.
http://www.pnas.org/content/110/32/12960.long
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A truncation allele in vascular endothelial growth factor c reveals distinct modes of signaling during lymphatic and vascular development.
Development. 2013;140(7):1497-506.
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Villefranc 2013
(7.86 MB)
2014
CCBE1 enhances lymphangiogenesis via ADAMTS3-mediated VEGF-C activation
. Circulation [Internet]. 2014;129(19).
http://circ.ahajournals.org/content/early/2014/02/19/CIRCULATIONAHA.113.002779.abstract
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Postprint of Jeltsch et al. 2014 (Circulation): CCBE1 enhances lymphangiogenesis via ADAMTS3-mediated VEGF-C activation
(6.6 MB)
Postprint of Jeltsch et al. 2014 (Circulation): CCBE1 enhances lymphangiogenesis via ADAMTS3-mediated VEGF-C activation (Suppl.)
(2.38 MB)
Published version of Jeltsch et al. 2014 (Circulation): CCBE1 enhances lymphangiogenesis via ADAMTS3-mediated... (incl. suppl.)
(23.21 MB)
2015
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
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The genetic causes of primary lymphedema.
In Erkrankungen des Lymphgefäßsystems. 6. Aufl. Cologne: Viavital Verlag; 2015. S. 210-229.
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Mattonet et al. 2015: The genetic causes of primary lymphedema. [English]
(3.8 MB)
Mattonet et al. 2015: The genetic causes of primary lymphedema. [German]
(676.52 KB)
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)
Lymphangiogenesis in Health and Disease
[Internet]. 41st European Societry of Lymphology (ESL) Congress. Lausanne, Switzerland: European Group of Lymphology; 2015.
http://www.eurolymphology.org/JOURNAL/VOL26-N72-2015/#p=10
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Abstract of the Presentation (Michael Jeltsch)
(75.34 KB)
Substrate efflux propensity is the key determinant of iPLA-β-mediated glycerophospholipid hydrolysised
. Journal of Biological Chemistry [Internet]. 2015;.
http://www.jbc.org/content/early/2015/02/23/jbc.M115.642835.abstract
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J. Biol. Chem.-2015-Batchu-jbc.M115.642835.pdf
(786.13 KB)
The TIE Receptor Family
. In Receptor Tyrosine Kinases: Family and Subfamilies [Internet]. Springer International Publishing; 2015. S. 743-775.
https://link.springer.com/content/pdf/10.1007%2F978-3-319-11888-8_16.pdf
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2016
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)
From Molecular Genetics and Biology to Effective Treatments of Lymphatic Disorders
[Internet]. 42nd Congress of the European Society of Lymphology. Mulhouse, France; 2016.
http://www.eurolymphology.org/JOURNAL/VOL28-N74-2016/#p=14
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Jeltsch 2016: From Molecular Genetics and Biology to Effective Treatments of Lymphatic Disorders
(683.85 KB)
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)
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)
2017
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 [Internet]. 2017;7(1):4916.
https://www.nature.com/articles/s41598-017-04982-1
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Jeltsch M
.
What you should know about VEGF-C when working with lymphatics [German]
. In Lymphologie 2017 [Internet]. Bad Soden (Frankfurt), Germany; 2017.
https://jeltsch.org/Abstrakt-BadSoden2017
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Extended Abstract (published in Vasomed, 2018)
(226.5 KB)
2019
Jha SKumar
,
Rauniyar K
,
Chronowska E
,
Mattonet K
,
Maina EWairimu
,
Koistinen H
, u. a.
.
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)
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)
2020
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)
Gucciardo E
,
Lehti TA
,
Korhonen A
,
Salvén P
,
Lehti K
,
Jeltsch M
, u. a.
.
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)
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