Toxoplasma Effector GRA15-Dependent Suppression of IFN-gamma-Induced Antiparasitic Response in Human Neurons
FRONTIERS IN CELLULAR AND INFECTION MICROBIOLOGY
Authors: Bando, Hironori; Lee, Youngae; Sakaguchi, Naoya; Pradipta, Ariel; Sakamoto, Ryoma; Tanaka, Shun; Ma, Ji Su; Sasai, Miwa; Yamamoto, Masahiro
Abstract
Toxoplasma gondii is an important human and animal pathogen that causes life-threatening toxoplasmosis. The host immune system produces interferon-gamma (IFN-gamma) to inhibit T. gondii proliferation. IFN-gamma-inducible indole-2,3-dioxygenase 1 (IDO1), which mediates tryptophan degradation, has a major role in anti-T. gondii immune responses in various human cells. In response to the host's immune system, T. gondii secretes many virulence molecules into the host cells to suppress IFN-gamma-dependent antiparasitic immune responses. The GRA15-induced proparasitic mechanism for suppressing IDO1-dependent immune responses has previously been tested only in human hepatocyte and monocyte co-cultures. Thus, whether human cells other than hepatocytes contain this virulence mechanism remains unclear. Here, we show that the GRA15-dependent virulence mechanism for suppressing the IDO1-dependent anti-T. gondii response operates in human neuronal cell lines and primary human neurons. Analysis of various human cell lines revealed that IL-1 beta-induced iNOS-dependent reduction of IDO1 mRNA expression occurred in brain cell lines (A172; glioblastoma, IMR-32; neuroblastoma, and T98G; glioblastoma) and liver cell lines (Huh7 and HepG2), but not in other cell lines. Moreover, co-culturing type II T. gondii-infected THP-1 human monocytes with the brain cell lines inhibited the IDO1-mediated anti-T. gondii response in a GRA15-dependent manner. These data suggest that a GRA15-dependent virulencemechanismantagonizes the IDO1-dependent host immune response in human brain cells.
Therapeutic potential of mature adipocyte-derived dedifferentiated fat cells for inflammatory bowel disease
PEDIATRIC SURGERY INTERNATIONAL
Authors: Ishioka, Shigeki; Hosokawa, Takashi; Ikeda, Taro; Konuma, Noriyoshi; Kaneda, Hide; Ohashi, Kensuke; Furuya, Takeshi; Masuko, Takayuki; Taniguchi, Hiroaki; Kano, Koichiro; Koshinaga, Tsugumichi; Matsumoto, Taro
Abstract
Purpose Our previous studies demonstrated that mature adipocyte-derived dedifferentiated fat (DFAT) cells possess similar multipotency as mesenchymal stem cells. Here, we examined the immunoregulatory potential of DFAT cells in vitro and the therapeutic effect of DFAT cell transplantation in a mouse inflammatory bowel disease (IBD) model. Methods The effect of DFAT cell co-culture on T cell proliferation and expression of immunosuppression-related genes in DFAT cells were evaluated. To create IBD, CD4(+)CD45RB(high) T cells were intraperitoneally injected into SCID mice. One week later, DFAT cells (1 x 10(5), DFAT group) or saline (Control group) were intraperitoneally injected. Subsequently bodyweight was measured every week and IBD clinical and histological scores were evaluated at 5 weeks after T cell administration. Results The T cell proliferation was inhibited by co-cultured DFAT cells in a cell density-dependent manner. Gene expression of TRAIL, IDO1, and NOS2 in DFAT cells was upregulated by TNF alpha stimulation. DFAT group improved IBD-associated weight loss, IBD clinical and histological scores compared to Control group. Conclusion DFAT cells possess immunoregulatory potential and the cell transplantation promoted recovery from colon damage and improved clinical symptoms in the IBD model. DFAT cells could play an important role in the treatment of IBD.