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Federico Caligaris-Cappio

Publications and source records attributed to Federico Caligaris-Cappio.

26 records · Page 2Linked to original sources

Chronic lymphocytic leukemia B cells are endowed with the capacity to attract CD4+, CD40L+ T cells by producing CCL22.

The natural history of B-chronic lymphocytic leukemia (CLL) is not entirely explained by intrinsic defects of the neoplastic cell, but is also favored by microenvironmental signals. As CLL cells retain the capacity to respond to CD40 ligand (CD40L) and as CD4(+) T cells are always present in involved tissues, we asked whether malignant CLL cells might produce T cell-attracting chemokines. We studied the chemokine expression of CD19(+)/CD5(+) malignant B cells from peripheral blood (PB), lymph nodes (LN) or bone marrow (BM) of 32 patients and found a major difference. LN- and BM-, but not PB-derived cells, expressed a readily detectable reverse transcription-PCR band for CCL22 and one for CCL17 of variable intensity. CD40 ligation of PB cells induced the mRNA expression of both CCL22 and CCL17. CCL22 was also released in the culture supernatants. These supernatants induced the migration of activated CD4(+), CD40L(+) T cells expressing the CCL22 receptor, CCR4. T cell migration was abrogated by anti-CCL22 antibodies. Immunohistochemistry and cytofluorography studies revealed that a proportion of CD4(+) T cells in CLL LN and BM expressed CD40L. Our data demonstrate that malignant CLL cells chemo-attract CD4(+) T cells that in turn induce a strong chemokine production by the leukemic clone, suggesting a vicious circle, leading to the progressive accumulation of the neoplastic cells.

Aged↗

Chronic B cell malignancies and bone marrow microenvironment.

Chronic B-lymphoid malignancies depend upon supportive interactions within specific microenvironments. Follicular lymphoma (FL), chronic lymphocytic leukaemia (CLL) and multiple myeloma (MM) cells accumulate in the bone marrow (BM) where they receive survival or growth signals from by-stander cells. However, they deeply differ in their interaction with the microenvironment. We propose a model where FL and CLL recreate in the BM the microenvironment most suitable to their growth by 'importing' the normal cells that usually nurse them in secondary lymphoid organs. In contrast, MM takes advantage of the actual BM microenvironment by 'instructing' it through an abnormal activation state.

Bone Marrow↗

Primary lymphoma of the heart. A case report and review of the literature.

Primary cardiac lymphoma (PCL) is a rare and usually fatal neoplasm, which may cause syncope, arrhythmia, heart failure and pericardial effusion as presenting clinical complaints. A case of PCL in a 72-year-old man with moderate aortic stenosis is presented. The patient was investigated because of pericardial effusion and diagnosis of diffuse large B-cell lymphoma was obtained by open-chest biopsy of the heart. Fatal ventricular arrhythmia developed the day after the first course of chemotherapy. Clinical presentations and diagnostic approach of this rare tumour are discussed. While chemotherapy is the only effective treatment of PCL, early post-chemotherapy phase should be considered critical in patients with PCL, as suggested by other reported fatal complications in this period.

Aged↗

CXCL13 (BCA-1) is produced by follicular lymphoma cells: role in the accumulation of malignant B cells.

Follicular lymphomas (FLs) localize in lymphoid tissues and recapitulate the structure of normal secondary follicles. The chemokine/chemokine receptor pair CXCL13/CXCR5 is required for the architectural organization of B cells within lymphoid follicles. In this study, we showed that CXCL13 was secreted by FL cells. FL cells expressed CXCR5 and migrated in response to CXCL13. Furthermore, we observed a synergistic effect between CXCL13 and CXCL12 (SDF-1), a chemokine produced by stromal cells in lymphoid tissues. The production of CXCL13 by FL cells and CXCL12 by stromal cells probably directs and participates in the accumulation of FL cells within specific anatomic sites.

Apoptosis↗

Chronic lymphocytic leukaemia: a model for investigating potential new targets for the therapy of indolent lymphomas.

We address two key issues whose investigation may help to define new prognostic parameters and new potential targets for therapeutic intervention. First, which are the conceptual implications of the cellular origin of indolent lymphomas? Second, how may deciphering the biology of chronic lymphocytic leukaemia (CLL) lead to the development of new modalities of treatment? The latter issue is articulated in the following three key questions. (1) Which are the molecular pathways through which the microenvironment exerts its influence on the malignant clone? (2) What are the relationships between proliferation and defective apoptosis? (3)Is there any evidence of a role for antigenic stimulation?

Apoptosis↗

[New perspectives in immuno-mediated blood diseases].

Immune-mediated blood diseases are organ-specific autoimmune disorders where one or more blood cell lineages are the target of the autoimmune process. They are classically divided into peripheral immune-mediated blood diseases when the immune attack occurs outside the bone marrow and autoimmune myelopathies. Overall they are the prototype of diseases that bridge immunology and hematology including blood malignancies. They also provide a fertile ground for new modalities of immunosuppression. The investigations of platelet autoimmunity as a model of peripheral immune-mediated blood diseases have confirmed that platelet disorders hover between hemorrhage and thrombosis and have led to develop the concept of autoimmune thrombophilia.

Anemia, Hemolytic, Autoimmune↗