We have previously reported the presence of activated (HLA-DR+) T cells in multiple myeloma (MM) patients. These cells produce high amounts of interleukin (IL)-2 and interferon (IFN)-gamma and generate a potent antiplasma cell activity after appropriate in vitro stimulation, but they are unable in vivo to hold in check the disease. Activated T cells are highly susceptible to apoptosis, a form of programmed cell death involved in the modulation of immune responses and regulated by molecules such as Fas (CD95) and bcl-2. The aim of this study was to determine the expression of Fas and bcl-2 antigens and the susceptibility to apoptosis in T cells of MM patients. Fas+ cells were significantly higher, whereas bcl-2+ cells were significantly lower in MM patients than in the controls. MM patients with the highest number of HLA-DR+ T cells showed the highest Fas and the lowest bcl-2 expression. Two-color cytofluorometric analysis confirmed in individual cells that HLA-DR+ T cells coexpressed Fas and lacked bcl-2. Susceptibility to apoptosis was then investigated to evaluate the consequence of dysregulated Fas and bcl-2 expression. The percentage of apoptotic cells after incubation in medium alone (spontaneous apoptosis) or in the presence of methylprednisolone (MP) or anti-Fas monoclonal antibody (triggered apoptosis) was significantly higher in MM and mainly restricted to HLA-DR+ T cells. Spontaneous apoptotosis was reverted by exogenous IL-2. In conclusion, MM T cells have a dysregulated expression of Fas and bcl-2 antigens that is associated with an enhanced susceptibility to apoptosis. These data may unravel a novel mechanism by which activated MM T cells are weakened in their ability to exert an effective antitumor activity in vivo.
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June 15, 1995
Dysregulated Fas and Bcl-2 expression leading to enhanced apoptosis in T cells of multiple myeloma patients
M Massaia,
M Massaia
Dipartimento di Medicina e Oncologia Sperimentale, Universita di Torino, Ospedale Molinette, Italy.
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P Borrione,
P Borrione
Dipartimento di Medicina e Oncologia Sperimentale, Universita di Torino, Ospedale Molinette, Italy.
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C Attisano,
C Attisano
Dipartimento di Medicina e Oncologia Sperimentale, Universita di Torino, Ospedale Molinette, Italy.
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P Barral,
P Barral
Dipartimento di Medicina e Oncologia Sperimentale, Universita di Torino, Ospedale Molinette, Italy.
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E Beggiato,
E Beggiato
Dipartimento di Medicina e Oncologia Sperimentale, Universita di Torino, Ospedale Molinette, Italy.
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L Montacchini,
L Montacchini
Dipartimento di Medicina e Oncologia Sperimentale, Universita di Torino, Ospedale Molinette, Italy.
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A Bianchi,
A Bianchi
Dipartimento di Medicina e Oncologia Sperimentale, Universita di Torino, Ospedale Molinette, Italy.
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M Boccadoro,
M Boccadoro
Dipartimento di Medicina e Oncologia Sperimentale, Universita di Torino, Ospedale Molinette, Italy.
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A Pileri
A Pileri
Dipartimento di Medicina e Oncologia Sperimentale, Universita di Torino, Ospedale Molinette, Italy.
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Blood (1995) 85 (12): 3679–3687.
Citation
M Massaia, P Borrione, C Attisano, P Barral, E Beggiato, L Montacchini, A Bianchi, M Boccadoro, A Pileri; Dysregulated Fas and Bcl-2 expression leading to enhanced apoptosis in T cells of multiple myeloma patients. Blood 1995; 85 (12): 3679–3687. doi: https://doi.org/10.1182/blood.V85.12.3679.bloodjournal85123679
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June 15 1995
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