Bronislaw Pytowski
Overview
Explore the profile of Bronislaw Pytowski including associated specialties, affiliations and a list of published articles.
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45
Citations
3200
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Recent Articles
11.
Quagliata L, Klusmeier S, Cremers N, Pytowski B, Harvey A, Pettis R, et al.
Clin Exp Metastasis
. 2014 Jan;
31(3):351-65.
PMID: 24379135
For many types of human cancer, the expression of vascular endothelial growth factor-C (VEGF-C) correlates with enhanced tumor-associated lymphatic vessel density, metastasis formation and poor prognosis. In experimental animals, VEGF-C...
12.
Benedito R, Rocha S, Woeste M, Zamykal M, Radtke F, Casanovas O, et al.
Nature
. 2012 Mar;
484(7392):110-4.
PMID: 22426001
Developing tissues and growing tumours produce vascular endothelial growth factors (VEGFs), leading to the activation of the corresponding receptors in endothelial cells. The resultant angiogenic expansion of the local vasculature...
13.
Yuen D, Wu X, Kwan A, LeDue J, Zhang H, Ecoiffier T, et al.
Cell Res
. 2011 Nov;
21(12):1745-9.
PMID: 22083511
No abstract available.
14.
Calvo C, Fontaine R, Soueid J, Tammela T, Makinen T, Alfaro-Cervello C, et al.
Genes Dev
. 2011 Apr;
25(8):831-44.
PMID: 21498572
Neural stem cells (NSCs) are slowly dividing astrocytes that are intimately associated with capillary endothelial cells in the subventricular zone (SVZ) of the brain. Functionally, members of the vascular endothelial...
15.
Huggenberger R, Ullmann S, Proulx S, Pytowski B, Alitalo K, Detmar M
J Exp Med
. 2010 Sep;
207(10):2255-69.
PMID: 20837699
The role of lymphangiogenesis in inflammation has remained unclear. To investigate the role of lymphatic versus blood vasculature in chronic skin inflammation, we inhibited vascular endothelial growth factor (VEGF) receptor...
16.
Nykanen A, Sandelin H, Krebs R, Keranen M, Tuuminen R, Karpanen T, et al.
Circulation
. 2010 Mar;
121(12):1413-22.
PMID: 20231530
Background: Lymphatic network and chemokine-mediated signals are essential for leukocyte traffic during the proximal steps of alloimmune response. We aimed to determine the role of lymphatic vessels and their principal...
17.
Nilsson I, Bahram F, Li X, Gualandi L, Koch S, Jarvius M, et al.
EMBO J
. 2010 Mar;
29(8):1377-88.
PMID: 20224550
The vascular endothelial growth factors VEGFA and VEGFC are crucial regulators of vascular development. They exert their effects by dimerization and activation of the cognate receptors VEGFR2 and VEGFR3. Here,...
18.
Schwartz J, Rowinsky E, Youssoufian H, Pytowski B, Wu Y
Cancer
. 2010 Feb;
116(4 Suppl):1027-32.
PMID: 20127948
The human vascular endothelial growth factor receptor-1 (VEGFR-1, or Flt-1) is widely expressed in normal and pathologic tissue and contributes to the pathogenesis of both neoplastic and inflammatory diseases. In...
19.
Guo R, Zhou Q, Proulx S, Wood R, Ji R, Ritchlin C, et al.
Arthritis Rheum
. 2009 Aug;
60(9):2666-76.
PMID: 19714652
Objective: This study was undertaken to investigate the effect of lymphatic inhibition on joint and draining lymph node (LN) pathology during the course of arthritis progression in mice. Methods: Tumor...
20.
Douglas N, Tang H, Gomez R, Pytowski B, Hicklin D, Sauer C, et al.
Endocrinology
. 2009 May;
150(8):3845-54.
PMID: 19406950
Implantation of an embryo induces rapid proliferation and differentiation of uterine stromal cells, forming a new structure, the decidua. One salient feature of decidua formation is a marked increase in...