Manon C Slot
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Explore the profile of Manon C Slot including associated specialties, affiliations and a list of published articles.
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Articles
11
Citations
91
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Recent Articles
1.
King L, Toffoli E, Veth M, Iglesias-Guimarais V, Slot M, Amsen D, et al.
Cancer Immunol Res
. 2023 Jun;
11(9):1237-1252.
PMID: 37368791
Vγ9Vδ2 T cells are effector cells with proven antitumor efficacy against a broad range of cancers. This study aimed to assess the antitumor activity and safety of a bispecific antibody...
2.
Morgana F, Opstelten R, Slot M, Scott A, van Lier R, Blom B, et al.
J Immunol
. 2021 Dec;
208(2):384-395.
PMID: 34937744
CD4CD25FOXP3 regulatory T (Treg) cells control immunological tolerance. Treg cells are generated in the thymus (tTreg) or in the periphery. Their superior lineage fidelity makes tTregs the preferred cell type...
3.
Opstelten R, Suwandi J, Slot M, Morgana F, Scott A, Laban S, et al.
Eur J Immunol
. 2021 Mar;
51(6):1377-1389.
PMID: 33728639
The Ig superfamily protein glycoprotein A33 (GPA33) has been implicated in immune dysregulation, but little is known about its expression in the immune compartment. Here, we comprehensively determined GPA33 expression...
4.
Opstelten R, de Kivit S, Slot M, van den Biggelaar M, Iwaszkiewicz-Grzes D, Gliwinski M, et al.
J Immunol
. 2020 May;
204(12):3139-3148.
PMID: 32366581
FOXP3-expressing regulatory T (Treg) cells safeguard immunological tolerance. Treg cells can be generated during thymic development (called thymic Treg [tTreg] cells) or derived from mature conventional CD4 T cells that...
5.
Opstelten R, Slot M, Lardy N, Lankester A, Mulder A, Claas F, et al.
Sci Rep
. 2019 Mar;
9(1):5247.
PMID: 30918307
During pregnancy, maternal T cells can enter the foetus, leading to maternal-foetal chimerism. This phenomenon may affect how leukaemia patients respond to transplantation therapy using stem cells from cord blood...
6.
van der Garde M, van Pel M, Millan Rivero J, De Graaf-Dijkstra A, Slot M, Kleinveld Y, et al.
Stem Cells Dev
. 2015 Sep;
24(22):2649-59.
PMID: 26414086
Cotransplantation of CD34(+) hematopoietic stem and progenitor cells (HSPCs) with mesenchymal stromal cells (MSCs) enhances HSPC engraftment. For these applications, MSCs are mostly obtained from bone marrow (BM). However, MSCs...
7.
van Hensbergen Y, van der Garde M, Brand A, Slot M, De Graaf-Dijkstra A, Watt S, et al.
Transfusion
. 2015 Mar;
55(7):1772-81.
PMID: 25727805
Background: Expansion of human cord blood (CB) CD34+ cells with thrombopoietin (TPO) can accelerate delayed platelet (PLT) recovery after transplantation into immunodeficient mice. Clinical implementation, however, will depend on practical...
8.
van der Garde M, Brand A, Slot M, De Graaf-Dijkstra A, Zwaginga J, van Hensbergen Y
Stem Cells Dev
. 2015 Feb;
24(12):1448-56.
PMID: 25668618
After cord blood (CB) transplantation, early platelet recovery in immune-deficient mice is obtained by expansion of CB CD34(+) cells with thrombopoietin (TPO) as single growth factor. Moreover, improvement of hematopoietic...
9.
van der Garde M, van Hensbergen Y, Brand A, Slot M, De Graaf-Dijkstra A, Mulder A, et al.
Stem Cells Dev
. 2014 Aug;
24(1):67-76.
PMID: 25137252
Human cord blood (CB) hematopoietic stem cell (HSC) transplants demonstrate delayed early neutrophil and platelet recovery and delayed longer term immune reconstitution compared to bone marrow and mobilized peripheral blood...
10.
Khodabux C, van Hensbergen Y, Slot M, Bakker-Verweij M, Giordano P, Brand A
Transfusion
. 2013 Mar;
53(12):3230-9.
PMID: 23521158
Background: Autologous cord blood (CB) red blood cells (RBCs) can partly substitute transfusion needs in premature infants suffering from anemia. To explore whether expanded CB cells could provide additional autologous...