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Three-Dimensional Visualization of the Mouse Thymus Organization in Health and Immunodeficiency

Magali Irla, Jeanne Guenot, Gregg Sealy, Walter Reith, Beat A. Imhof and Arnauld Sergé
J Immunol January 15, 2013, 190 (2) 586-596; DOI: https://doi.org/10.4049/jimmunol.1200119
Magali Irla
Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, 1211 Geneva, Switzerland
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Jeanne Guenot
Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, 1211 Geneva, Switzerland
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Gregg Sealy
Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, 1211 Geneva, Switzerland
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Walter Reith
Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, 1211 Geneva, Switzerland
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Beat A. Imhof
Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, 1211 Geneva, Switzerland
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Arnauld Sergé
Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, 1211 Geneva, Switzerland
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Abstract

Lymphoid organs exhibit complex structures tightly related to their function. Surprisingly, although the thymic medulla constitutes a specialized microenvironment dedicated to the induction of T cell tolerance, its three-dimensional topology remains largely elusive because it has been studied mainly in two dimensions using thymic sections. To overcome this limitation, we have developed an automated method for full organ reconstruction in three dimensions, allowing visualization of intact mouse lymphoid organs from a collection of immunolabeled slices. We validated full organ reconstruction in three dimensions by reconstructing the well-characterized structure of skin-draining lymph nodes, before revisiting the complex and poorly described corticomedullary organization of the thymus. Wild-type thymi contain ∼200 small medullae that are connected to or separated from a major medullary compartment. In contrast, thymi of immunodeficient Rag2−/− mice exhibit only ∼20 small, unconnected medullary islets. Upon total body irradiation, medullary complexity was partially reduced and then recovered upon bone marrow transplantation. This intricate topology presents fractal properties, resulting in a considerable corticomedullary area. This feature ensures short distances between cortex and medulla, hence efficient thymocyte migration, as assessed by mathematical models. Remarkably, this junction is enriched, particularly in neonates, in medullary thymic epithelial cells expressing the autoimmune regulator. The emergence of a major medullary compartment is induced by CD4+ thymocytes via CD80/86 and lymphotoxin-α signals. This comprehensive three-dimensional view of the medulla emphasizes a complex topology favoring efficient interactions between developing T cells and autoimmune regulator–positive medullary thymic epithelial cells, a key process for central tolerance induction.

Footnotes

  • This work was supported by the Swiss National Science Foundation (Ambizione PZ00P3_131945 to M.I., 31003A_127255 to W.R., and 31003AB_135701 to B.A.I.), a Jules Thorn grant (to M.I.), and Oncosuisse funding (ME8335 to B.A.I.).

  • The online version of this article contains supplemental material.

  • Abbreviations used in this article:

    3D
    three-dimensional
    Aire
    autoimmune regulator
    BMT
    bone marrow transfer
    CMJ
    corticomedullary junction
    cTEC
    cortical thymic epithelial cell
    DP
    double-positive
    em.
    emission
    ex.
    excitation
    FOR3D
    full organ reconstitution in three dimensions
    K8
    keratin 8
    K14
    keratin 14
    LN
    lymph node
    LT
    lymphotoxin
    mTEC
    medullary thymic epithelial cell
    SP
    single-positive
    TBI
    total body irradiation
    WT
    wild-type.

  • Received January 10, 2012.
  • Accepted October 31, 2012.
  • Copyright © 2013 by The American Association of Immunologists, Inc.
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The Journal of Immunology: 190 (2)
The Journal of Immunology
Vol. 190, Issue 2
15 Jan 2013
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Three-Dimensional Visualization of the Mouse Thymus Organization in Health and Immunodeficiency
Magali Irla, Jeanne Guenot, Gregg Sealy, Walter Reith, Beat A. Imhof, Arnauld Sergé
The Journal of Immunology January 15, 2013, 190 (2) 586-596; DOI: 10.4049/jimmunol.1200119

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Three-Dimensional Visualization of the Mouse Thymus Organization in Health and Immunodeficiency
Magali Irla, Jeanne Guenot, Gregg Sealy, Walter Reith, Beat A. Imhof, Arnauld Sergé
The Journal of Immunology January 15, 2013, 190 (2) 586-596; DOI: 10.4049/jimmunol.1200119
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