Cellular and cytokine-dependent immunosuppressive mechanisms of grm1-transgenic murine melanoma
CANCER IMMUNOLOGY IMMUNOTHERAPY
Authors: Alb, Miriam; Sie, Christopher; Adam, Christian; Chen, Suzie; Becker, Juergen C.; Schrama, David
Abstract
Grm1-transgenic mice spontaneously develop cutaneous melanoma. This model allowed us to scrutinize the generic immune responses over the course of melanoma development. To this end, lymphocytes obtained from spleens, unrelated lymph nodes and tumor-draining lymph nodes of mice with no evidence of disease, and low or high tumor burden were analyzed ex vivo and in vitro. Thereby, we could demonstrate an increase in the number of activated CD4(+) and CD8(+) lymphocytes in the respective organs with increasing tumor burden. However, mainly CD4(+) T cells, which could constitute both T helper as well as immunosuppressive regulatory T cells, but not CD8(+) T cells, expressed activation markers upon in vitro stimulation when obtained from tumor-bearing mice. Interestingly, these cells from tumor-burdened animals were also functionally hampered in their proliferative response even when subjected to strong in vitro stimulation. Further analyses revealed that the increased frequency of regulatory T cells in tumor-bearing mice is an early event present in all lymphoid organs. Additionally, expression of the immunosuppressive cytokines TGF-beta 1 and IL-10 became more evident with increased tumor burden. Notably, TGF-beta 1 is strongly expressed in both the tumor and the tumor-draining lymph node, whereas IL-10 expression is more pronounced in the lymph node, suggesting a more complex regulation of IL-10. Thus, similar to the situation in melanoma patients, both cytokines as well as cellular immune escape mechanisms seem to contribute to the observed immunosuppressed state of tumor-bearing grm1-transgenic mice, suggesting that this model is suitable for preclinical testing of immunomodulatory therapeutics.
Glutamate receptors and the regulation of steroidogenesis in the human adrenal gland: The metabotropic pathway
MOLECULAR AND CELLULAR ENDOCRINOLOGY
Authors: Felizola, Saulo J. A.; Nakamura, Yasuhiro; Satoh, Fumitoshi; Morimoto, Ryo; Kikuchi, Kumi; Nakamura, Tomohiro; Hozawa, Atsushi; Wang, Lin; Onodera, Yoshiaki; Ise, Kazue; McNamara, Keely M.; Midorikawa, Sanae; Suzuki, Shinichi; Sasano, Hironobu
Abstract
Background: L-glutamate is a major excitatory neurotransmitter in the mammalian brain. Glutamate receptors have been reported in the rat adrenal cortex and in human aldosterone-producing adenomas (APA). However, details regarding the expression levels and functions of these receptors in human adrenocortical tissues remain unknown. Methods: The mRNA levels of glutamate receptors were evaluated by qPCR in: 12 normal adrenal cortex (NAC), 11 APA, and 12 cortisol-producing adenoma (CPA) tissues. Protein localization was evaluated by immunohistochemistry for 15 NAC, 5 idiopathic hyperaldosteronism cases, 15 APA and 15 CPA. H295R cells were treated with angiotensin-II or forskolin alone or combined with the GRM2/3 agonist LY354740. Results: The level of GRM3 mRNA was higher in APA than in CPA (P = 0.0086) or NAC (P = 0.0022). GRM1, IGLUR2, and IGLUR3 were also detected in adrenocortical tissues. When added to angiotensin-II/forskolin treatments, LY354740 decreased aldosterone and cortisol production in H295R cells. Conclusions: GRM3 is considered to regulate steroidogenesis in adrenocortical tissues. (C) 2013 Published by Elsevier Ireland Ltd.