David van Zessen
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Explore the profile of David van Zessen including associated specialties, affiliations and a list of published articles.
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10
Citations
171
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Recent Articles
1.
van Schouwenburg P, Unger S, Payne K, Kaiser F, Pico-Knijnenburg I, Pfeiffer J, et al.
Front Immunol
. 2022 Oct;
13:959002.
PMID: 36275744
Common variable immunodeficiency (CVID), characterized by recurrent infections, low serum class-switched immunoglobulin isotypes, and poor antigen-specific antibody responses, comprises a heterogeneous patient population in terms of clinical presentation and underlying...
2.
van Schouwenburg P, IJspeert H, Pico-Knijnenburg I, Dalm V, van Hagen P, van Zessen D, et al.
Front Immunol
. 2018 Dec;
9:2545.
PMID: 30532750
Common variable immune deficiency disorder (CVID) is the most clinically relevant cause of antibody failure. It is a highly heterogeneous disease with different underlying etiologies. CVID has been associated with...
3.
Theunissen P, de Bie M, van Zessen D, de Haas V, Stubbs A, van der Velden V
Leuk Res
. 2018 Nov;
76:98-104.
PMID: 30389174
Antigen receptor gene rearrangements are frequently applied as molecular targets for detection of minimal residual disease (MRD) in B-cell precursor acute lymphoblastic leukemia patients. Since such targets may be lost...
4.
Theunissen P, van Zessen D, Stubbs A, Faham M, Zwaan C, van Dongen J, et al.
Haematologica
. 2017 Sep;
102(11):1869-1877.
PMID: 28860343
In B-cell precursor acute lymphoblastic leukemia, the initial leukemic cells share the same antigen receptor gene rearrangements. However, due to ongoing rearrangement processes, leukemic cells with different gene rearrangement patterns...
5.
IJspeert H, van Schouwenburg P, van Zessen D, Pico-Knijnenburg I, Stubbs A, van der Burg M
J Immunol
. 2017 Apr;
198(10):4156-4165.
PMID: 28416602
Antigen Receptor Galaxy (ARGalaxy) is a Web-based tool for analyses and visualization of TCR and BCR sequencing data of 13 species. ARGalaxy consists of four parts: the demultiplex tool, the...
6.
IJspeert H, van Schouwenburg P, van Zessen D, Pico-Knijnenburg I, Driessen G, Stubbs A, et al.
Front Immunol
. 2016 Nov;
7:410.
PMID: 27799928
Upon antigen recognition via their B cell receptor (BR), B cells migrate to the germinal center where they undergo somatic hypermutation (SHM) to increase their affinity for the antigen, and...
7.
IJspeert H, Rozmus J, Schwarz K, Warren R, van Zessen D, Holt R, et al.
Blood
. 2016 Jun;
128(5):650-9.
PMID: 27281794
Repair of DNA double-strand breaks (DSBs) by the nonhomologous end-joining pathway (NHEJ) is important not only for repair of spontaneous breaks but also for breaks induced in developing lymphocytes during...
8.
IJspeert H, Wentink M, van Zessen D, Driessen G, Dalm V, van Hagen M, et al.
Front Immunol
. 2015 Apr;
6:157.
PMID: 25904919
The antigen receptor repertoires of B- and T-cells form the basis of the adaptive immune response. The repertoires should be sufficiently diverse to recognize all possible pathogens. However, careful selection...
9.
Moorhouse M, van Zessen D, IJspeert H, Hiltemann S, Horsman S, van der Spek P, et al.
BMC Immunol
. 2014 Dec;
15:59.
PMID: 25495099
Background: Sequence analysis of immunoglobulin heavy chain (IGH) gene rearrangements and frequency analysis is a powerful tool for studying the immune repertoire, immune responses and immune dysregulation in health and...
10.
Lu H, Papathomas T, van Zessen D, Palli I, de Krijger R, van der Spek P, et al.
Diagn Pathol
. 2014 Nov;
9:216.
PMID: 25421287
Background: In prognosis and therapeutics of adrenal cortical carcinoma (ACC), the selection of the most active areas in proliferative rate (hotspots) within a slide and objective quantification of immunohistochemical Ki67...