Sandra W van der Kooij
Overview
Explore the profile of Sandra W van der Kooij including associated specialties, affiliations and a list of published articles.
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11
Citations
341
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Recent Articles
1.
van Schaik M, Arends E, Wetzels M, Kraaij T, Verbruggen S, van der Kooij S, et al.
Lupus Sci Med
. 2025 Feb;
12(1).
PMID: 39939125
Objective: Combination therapy with rituximab and belimumab is a novel treatment strategy for severe SLE and lupus nephritis. Phase II studies have shown promising results, although long-term data are currently...
2.
Bank J, van der Pol P, Vreeken D, Monge-Chaubo C, Bajema I, Schlagwein N, et al.
Nephrol Dial Transplant
. 2017 Oct;
32(12):2132-2141.
PMID: 29045706
Background: Kidney injury molecule-1 (KIM-1) and neutrophil gelatinase-associated lipocalin (NGAL) are promising biomarkers for monitoring delayed graft function (DGF) after kidney transplantation. Here we investigated localization and distribution of KIM-1...
3.
Dixon K, van der Kooij S, Vignali D, van Kooten C
Eur J Immunol
. 2015 Mar;
45(6):1736-47.
PMID: 25820702
IL-35 is a cytokine of the IL-12 family, existing as a heterodimer of IL-12p35 and Ebi3. IL-35 has anti-inflammatory properties and is produced by regulatory T cells in humans and...
4.
Dixon K, OFlynn J, van der Kooij S, van Kooten C
J Leukoc Biol
. 2014 May;
96(2):313-24.
PMID: 24782489
Uptake of apoptotic cells by DCs is considered to contribute to induction and maintenance of immunological tolerance. TolDCs are sought after as cellular therapy in transplantation and autoimmunity and can...
5.
Kraaij M, Koekkoek K, van der Kooij S, Gelderman K, van Kooten C
Cell Immunol
. 2013 Aug;
284(1-2):1-8.
PMID: 23916683
Reactive oxygen species (ROS) produced by macrophages have recently been shown to have immunosuppressive properties and induce regulatory T cells. Here we investigated the ROS producing capacity of well-defined human...
6.
Kraaij M, van der Kooij S, Reinders M, Koekkoek K, Rabelink T, van Kooten C, et al.
Mol Immunol
. 2011 Nov;
49(3):549-57.
PMID: 22047959
Macrophages have been demonstrated to suppress T cell responses by producing reactive oxygen species (ROS) leading to the subsequent induction of T regulatory cells in a ROS-dependent manner. Macrophages may...
7.
van de Laar L, van den Bosch A, van der Kooij S, Janssen H, Coffer P, van Kooten C, et al.
J Immunol
. 2010 Nov;
185(12):7252-61.
PMID: 21076069
The plastic role of dendritic cells (DCs) in the regulation of immune responses has made them interesting targets for immunotherapy, but also for pathogens or tumors to evade immunity. Functional...
8.
Induction of regulatory T cells by macrophages is dependent on production of reactive oxygen species
Kraaij M, Savage N, van der Kooij S, Koekkoek K, Wang J, van den Berg J, et al.
Proc Natl Acad Sci U S A
. 2010 Sep;
107(41):17686-91.
PMID: 20861446
The phagocyte NAPDH-oxidase complex consists of several phagocyte oxidase (phox) proteins, generating reactive oxygen species (ROS) upon activation. ROS are involved in the defense against microorganisms and also in immune...
9.
de Haij S, Woltman A, Trouw L, Bakker A, Kamerling S, van der Kooij S, et al.
Kidney Int
. 2005 Oct;
68(5):2091-102.
PMID: 16221208
Background: Renal tubular epithelial cells (TECs) play an active role in renal inflammation. Previous studies have demonstrated the capacity of TECs to modulate T-cell responses both positively and negatively. Recently,...
10.
Woltman A, De Fijter J, van der Kooij S, Jie K, Massacrier C, Caux C, et al.
Am J Transplant
. 2005 Aug;
5(9):2114-25.
PMID: 16095490
Graft-infiltrating dendritic cells (DC) and alloreactive T lymphocytes play a critical role in renal allograft rejection. Renal proximal tubular epithelial cells (TEC) are considered as active players in the attraction...