Modulatory effects of octreotide on anti-CD3 and dexamethasone-induced apoptosis of murine thymocytes
Z Trobonjaca1, B Radosević-Stasić, Z Crncević
1Department of Physiology and Immunology, Faculty of Medicine, University of Rijeka, Croatia.
Abstract:
In an attempt to elucidate the effects of somatostatin on two crucial processes that regulated T-cell differentiation and selection in thymus in this study, we investigated in vivo and in vitro the effects of octreotide (SMS 201-995) on dynamics of apoptosis, induced by dexamethasone (DEX) or by anti-CD3 monoclonal antibodies (mAb). The data were estimated by analysis of absolute cellularity, DNA fragmentation and maturational stage of thymocytes, detecting the CD4 and/or CD8 and T cell receptor (TCR) expression on thymocytes. The results, obtained by estimation of subdiploid peak of DNA and ladder DNA formation, have shown that SMS given in vivo, may potentiate the early phase of DEX-induced nuclear fragmentation (at 24 h), accelerating simultaneously the elimination of thymic cells with double positive (DP) CD4high CD8high phenotype (expressed both as percentage and absolute number). On the contrary, SMS, given both in vivo and in vitro, down-regulated the late process (at 72 h) of nuclear fragmentation, induced by anti-CD3 mAb, minimizing simultaneously the elimination of DP cells (expressed both as percentage and absolute number). In anti-CD3-treated cultures of thymocytes, SMS retarded also the elimination of immature thymocytes, expressing the TRC alpha/betalow or intermediate phenotype. The data emphasize that octreotide might have important regulatory effect on processes of thymic differentiation and maturation, which are crucial for T cell selection, induction of tolerance and prevention of autoimmune diseases.
Insights
Octreotide (SMS) impacts T-cell differentiation by modulating apoptosis. It accelerates early dexamethasone-induced cell death but inhibits late anti-CD3 antibody-induced cell death in thymocytes, influencing T-cell selection and tolerance.
Area of Science:
- Immunology
- Cell Biology
- Endocrinology
Background:
- T-cell differentiation and selection in the thymus are critical for immune system function and preventing autoimmunity.
- Somatostatin and its analogs, like octreotide, are known to influence various cellular processes.
Purpose of the Study:
- To investigate the effects of octreotide (SMS 201-995) on thymocyte apoptosis dynamics during T-cell differentiation.
- To elucidate the role of somatostatin in regulating T-cell selection processes in vivo and in vitro.
Main Methods:
- Analysis of thymocyte cellularity, DNA fragmentation, and cell surface marker expression (CD4, CD8, TCR).
- Induction of apoptosis using dexamethasone (DEX) or anti-CD3 monoclonal antibodies (mAb).
- In vivo and in vitro experimental models.
Main Results:
- Octreotide potentiated early dexamethasone-induced apoptosis, accelerating the elimination of double-positive (DP) thymocytes.
- Octreotide down-regulated late anti-CD3 mAb-induced apoptosis, reducing DP cell elimination.
- Octreotide also retarded the elimination of immature thymocytes in anti-CD3 treated cultures.
Conclusions:
- Octreotide exhibits a regulatory effect on thymic differentiation and maturation processes.
- These findings suggest octreotide's potential role in T-cell selection, induction of tolerance, and prevention of autoimmune diseases.
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