Isabelle Mondor
Overview
Explore the profile of Isabelle Mondor including associated specialties, affiliations and a list of published articles.
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Articles
11
Citations
548
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Recent Articles
1.
Thierry G, Baudon E, Bijnen M, Bellomo A, Lagueyrie M, Mondor I, et al.
Immunity
. 2024 Aug;
57(9):2108-2121.e6.
PMID: 39089257
Unlike sessile macrophages that occupy specialized tissue niches, non-classical monocytes (NCMs)-circulating phagocytes that patrol and cleanse the luminal surface of the vascular tree-are characterized by constant movement. Here, we examined...
2.
Bellomo A, Mondor I, Spinelli L, Lagueyrie M, Stewart B, Brouilly N, et al.
Immunity
. 2020 Jun;
53(1):127-142.e7.
PMID: 32562599
Located within red pulp cords, splenic red pulp macrophages (RPMs) are constantly exposed to the blood flow, clearing senescent red blood cells (RBCs) and recycling iron from hemoglobin. Here, we...
3.
Mondor I, Baratin M, Lagueyrie M, Saro L, Henri S, Gentek R, et al.
Immunity
. 2019 May;
50(6):1453-1466.e4.
PMID: 31053503
In lymph nodes, subcapsular sinus macrophages (SSMs) form an immunological barrier that monitors lymph drained from peripheral tissues. Upon infection, SSMs activate B and natural killer T (NKT) cells while...
4.
Thierry G, Kuka M, De Giovanni M, Mondor I, Brouilly N, Iannacone M, et al.
J Exp Med
. 2018 Nov;
215(12):2972-2983.
PMID: 30429248
Immunoglobulin M (IgM) is the first type of antibody produced during acute infections and thus provides an early line of specific defense against pathogens. Being produced in secondary lymphoid organs,...
5.
Mondor I, Jorquera A, Sene C, Adriouch S, Adams R, Zhou B, et al.
Immunity
. 2016 Oct;
45(4):877-888.
PMID: 27760341
Lymph node (LN) expansion during an immune response relies on the transient remodeling of its vasculature. Although the mechanisms driving LN endothelial cell division are beginning to be understood, a...
6.
Jarjour M, Jorquera A, Mondor I, Wienert S, Narang P, Coles M, et al.
J Exp Med
. 2014 May;
211(6):1109-22.
PMID: 24863064
Follicular dendritic cells (FDCs) regulate B cell function and development of high affinity antibody responses but little is known about their biology. FDCs associate in intricate cellular networks within secondary...
7.
Mionnet C, Mondor I, Jorquera A, Loosveld M, Maurizio J, Arcangeli M, et al.
PLoS Biol
. 2013 Oct;
11(10):e1001672.
PMID: 24130458
Lymph node (LN) stromal cells provide survival signals and adhesive substrata to lymphocytes. During an immune response, B cell follicles enlarge, questioning how LN stromal cells manage these cellular demands....
8.
Ghigo C, Mondor I, Jorquera A, Nowak J, Wienert S, Zahner S, et al.
J Exp Med
. 2013 Aug;
210(9):1657-64.
PMID: 23940255
Langerhans cells (LCs) constitute a network of immune sentinels in the skin epidermis that is seeded during embryogenesis. Whereas the development of LCs has been extensively studied, much less is...
9.
Mionnet C, Sanos S, Mondor I, Jorquera A, Laugier J, Germain R, et al.
Blood
. 2011 Sep;
118(23):6115-22.
PMID: 21937697
Millions of lymphocytes enter and exit mammal lymph nodes (LNs) each day, accessing the parenchyma via high endothelial venules (HEVs) and egressing via lymphatics. Despite this high rate of cellular...
10.
Leung-Theung-Long S, Mondor I, Guiraud M, Lamare C, Nagaleekar V, Nageleekar V, et al.
J Immunol
. 2009 May;
182(11):6807-14.
PMID: 19454676
NFAT transcription factors play critical roles in CD4 T cell activation and differentiation. Their function in CD8 T cell is, however, unknown. We show in this study that, in contrast...