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2025
Iqbal S
,
Andersson S
,
Nesta E
,
Pentinmikko N
,
Kumar A
,
Jha SK
, et al.
.
Fetal-like reversion in the regenerating intestine is regulated by mesenchymal asporin
. Cell Stem Cell [Internet]. 2025;32(4):613 - 626.e8.
https://www.sciencedirect.com/science/article/pii/S1934590925000487
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2024
Niemelä A
,
Giorgi L
,
Nouri S
,
Yurttaş B
,
Rauniyar K
,
Jeltsch M
, et al.
.
Gliflozins, sucrose and flavonoids are allosteric activators of lecithin-cholesterol acyltransferase
. Scientific Reports [Internet]. 2024;14(1):26085.
https://www.nature.com/articles/s41598-024-77104-3
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Niemelä A
,
Giorgi L
,
Nouri S
,
Yurttaş B
,
Rauniyar K
,
Jeltsch M
, et al.
.
Gliflozins, sucrose and flavonoids are allosteric activators of lecithin-cholesterol acyltransferase
. Scientific Reports [Internet]. 2024;14(1):26085.
https://www.nature.com/articles/s41598-024-77104-3
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2020
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)
Fang S
,
Chen S
,
Nurmi H
,
Leppänen V-M
,
Jeltsch M
,
Scadden DT
, et al.
.
VEGF-C Protects the Integrity of Bone Marrow Perivascular Niche
. Blood [Internet]. 2020;:accepted - for publication.
https://ashpublications.org/blood/article/doi/10.1182/blood.2020005699/463465/VEGF-C-Protects-the-Integrity-of-Bone-Marrow
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Fang et al. 2020 - VEGF-C protects the integrity of bone marrow perivascular niche
(6 MB)
2015
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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2013
Villefranc JA
,
Nicoli S
,
Bentley K
,
Jeltsch M
,
Zarkada G
,
Moore JC
, et al.
.
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.
PubMed
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Villefranc 2013
(7.86 MB)
2012
Krebs R
,
Tikkanen JM
,
Ropponen JO
,
Jeltsch M
,
Jokinen JJ
,
Ylä-Herttuala S
, et al.
.
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.
PubMed
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2011
Krebs R
,
Tikkanen JM
,
Ropponen JO
,
Jeltsch M
,
Jokinen JJ
,
Ylä-Herttuala S
, et al.
.
VEGF-C/VEGFR-3 Signaling Regulates Inflammatory Response in Development of Obliterative Airway Disease
. Journal of Heart and Lung Transplantation. 2011;30:S118 - S118.
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2010
Saharinen P
,
Helotera H
,
Miettinen J
,
Norrmen C
,
D'Amico G
,
Jeltsch M
, et al.
.
Claudin-like protein 24 interacts with the VEGFR-2 and VEGFR-3 pathways and regulates lymphatic vessel development
. Genes Dev [Internet]. 2010;24(9):875 - 80.
http://view.ncbi.nlm.nih.gov/pubmed/20439428
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Pipsa Saharinen et al., Genes & Development 2010
(1.2 MB)
Pipsa Saharinen et al., Genes & Development 2010, supplement
(9.15 MB)
Saharinen P
,
Helotera H
,
Miettinen J
,
Norrmen C
,
D'Amico G
,
Jeltsch M
, et al.
.
Claudin-like protein 24 interacts with the VEGFR-2 and VEGFR-3 pathways and regulates lymphatic vessel development
. Genes Dev [Internet]. 2010;24(9):875 - 80.
http://view.ncbi.nlm.nih.gov/pubmed/20439428
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Pipsa Saharinen et al., Genes & Development 2010
(1.2 MB)
Pipsa Saharinen et al., Genes & Development 2010, supplement
(9.15 MB)
2008
Li X
,
Tjwa M
,
Van Hove I
,
Enholm B
,
Neven E
,
Paavonen K
, et al.
.
Reevaluation of the role of VEGF-B suggests a restricted role in the revascularization of the ischemic myocardium
. Arterioscler Thromb Vasc Biol [Internet]. 2008;28(9):1614 - 20.
http://view.ncbi.nlm.nih.gov/pubmed/18511699
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Xuri Li et al., Arteriosclerosis, Thrombosis, and Vascular Biology 2008
(738.26 KB)
Xuri Li et al., Arteriosclerosis, Thrombosis, and Vascular Biology 2008, data supplement
(1012.6 KB)
Li X
,
Tjwa M
,
Van Hove I
,
Enholm B
,
Neven E
,
Paavonen K
, et al.
.
Reevaluation of the role of VEGF-B suggests a restricted role in the revascularization of the ischemic myocardium
. Arterioscler Thromb Vasc Biol [Internet]. 2008;28(9):1614 - 20.
http://view.ncbi.nlm.nih.gov/pubmed/18511699
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Xuri Li et al., Arteriosclerosis, Thrombosis, and Vascular Biology 2008
(738.26 KB)
Xuri Li et al., Arteriosclerosis, Thrombosis, and Vascular Biology 2008, data supplement
(1012.6 KB)
2006
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)
2000
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)