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1.
Methods Mol Biol ; 1591: 225-234, 2017.
Article in English | MEDLINE | ID: mdl-28349486

ABSTRACT

Tissue mechanical disruption is often not sufficient to disrupt cell-to-cell interactions; this is particularly relevant for stromal cells that are embedded within the extracellular matrix. For this reason, different enzyme combinations have been described to enable the isolation of single-cell populations, particularly stromal cells. This chapter aims to describe different methods used for enzymatic digestion of stromal cell and leukocyte populations from secondary and tertiary lymphoid organs. Collagenase D and P and collagenase D and dispase protocols provide a good yield of stromal cells, while a collagenase dispase-only protocol should be used if the main aim of the technique is to retrieve leukocyte populations. However, for isolation of both stroma and leukocyte populations the collagenase D and P protocol would provide the best results. Protocols for these techniques and illustrative results from flow cytometry analysis can be found in this chapter.


Subject(s)
Leukocytes/metabolism , Stromal Cells/metabolism , Animals , Cell Communication/physiology , Cell Separation/methods , Collagenases/metabolism , Extracellular Matrix/metabolism , Flow Cytometry/methods , Mice
2.
Front Immunol ; 7: 477, 2016.
Article in English | MEDLINE | ID: mdl-27877173

ABSTRACT

Tertiary lymphoid structures (TLS) are organized aggregates of lymphocytes, myeloid, and stromal cells that provide ectopic hubs for acquired immune responses. TLS share phenotypical and functional features with secondary lymphoid organs (SLO); however, they require persistent inflammatory signals to arise and are often observed at target sites of autoimmune disease, chronic infection, cancer, and organ transplantation. Over the past 10 years, important progress has been made in our understanding of the role of stromal fibroblasts in SLO development, organization, and function. A complex and stereotyped series of events regulate fibroblast differentiation from embryonic life in SLOs to lymphoid organ architecture observed in adults. In contrast, TLS-associated fibroblasts differentiate from postnatal, locally activated mesenchyme, predominantly in settings of inflammation and persistent antigen presentation. Therefore, there are critical differences in the cellular and molecular requirements that regulate SLO versus TLS development that ultimately impact on stromal and hematopoietic cell function. These differences may contribute to the pathogenic nature of TLS in the context of chronic inflammation and malignant transformation and offer a window of opportunity for therapeutic interventions in TLS associated pathologies.

3.
J Immunol ; 197(5): 1957-67, 2016 09 01.
Article in English | MEDLINE | ID: mdl-27474071

ABSTRACT

Lymphangiogenesis associated with tertiary lymphoid structure (TLS) has been reported in numerous studies. However, the kinetics and dynamic changes occurring to the lymphatic vascular network during TLS development have not been studied. Using a viral-induced, resolving model of TLS formation in the salivary glands of adult mice we demonstrate that the expansion of the lymphatic vascular network is tightly regulated. Lymphatic vessel expansion occurs in two distinct phases. The first wave of expansion is dependent on IL-7. The second phase, responsible for leukocyte exit from the glands, is regulated by lymphotoxin (LT)ßR signaling. These findings, while highlighting the tight regulation of the lymphatic response to inflammation, suggest that targeting the LTα1ß2/LTßR pathway in TLS-associated pathologies might impair a natural proresolving mechanism for lymphocyte exit from the tissues and account for the failure of therapeutic strategies that target these molecules in diseases such as rheumatoid arthritis.


Subject(s)
Interleukin-7/metabolism , Lymphangiogenesis , Lymphatic Vessels/immunology , Lymphotoxin alpha1, beta2 Heterotrimer/immunology , Lymphotoxin alpha1, beta2 Heterotrimer/metabolism , Tertiary Lymphoid Structures/immunology , Animals , Gene Expression Regulation , Inflammation , Interleukin-7/genetics , Interleukin-7/immunology , Lymphatic Vessels/metabolism , Lymphotoxin alpha1, beta2 Heterotrimer/genetics , Mice , Salivary Glands/immunology , Signal Transduction/genetics , Signal Transduction/immunology , Tertiary Lymphoid Structures/pathology
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