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Published on: November 4, 2016
Suppressed dendritic cell functions by cystatin C lead to compromised immunity in vivo
Shun Chen1, Lei Liu1, Wenjie Zhang1
1Anhui Provincial Key Laboratory for Conservation and Exploitation of Biological Resources, College of Life Science, Anhui Normal University, Wuhu 241000, China.
Abstract:
Pathogenic microorganisms utilize multiple approaches to break down host immunity in favor of their invasion, of which, cystatin C is one of the soluble factors secreted by parasites reported to affect host immunity in vivo. The cellular targets and mechanisms of action in vivo of cystatin C, however, are far from clear. As professional antigen-presenting cells, dendritic cells (DCs) are first immune cells that contact foreign pathogenic agents or their products to initiate immune responses. We previously reported that cystatin C can regulate the functions of DCs in terms of suppressed CD4+ T cell activation but enhanced Th1/Th17 differentiation via different mechanisms. Here, we further verified these regulatory effects of cystatin C on DCs in vivo. We found that the suppressive role of DC-mediated CD4+ T cell proliferation by cystatin C was partly cell-contact independent and extended to CD8+ T cells in vivo. Although cystatin C-overexpressing DCs trafficked equally as their mock-transduced counterparts, their adoptive transfer suppressed CD8+ T cell immunity and resulted in compromised tumor rejection in both vaccination and treatment regimes. Compared with their role in promoting Th17 differentiation in vivo, cystatin C-transduced DCs had far greater ability to induce T regulatory cells (Tregs), leading to collectively a higher Treg/Th17 ratio in an adoptively transferred disease model, and thus relieved Th17-dependent autoimmunity. Collectively, these data demonstrated strong in vivo evidences for immune regulatory roles of cystatin C in DCs and provided theoretical basis for the application of cystatin C-transduced cell therapy in the treatment or remission of certain autoimmune diseases. (246).
Insights
Parasitic cystatin C impacts host immunity by regulating dendritic cells (DCs). This study shows cystatin C suppresses T cell responses and promotes regulatory T cells (Tregs), offering potential for autoimmune disease therapy.
Area of Science:
- Immunology
- Parasitology
- Cell Biology
Background:
- Pathogenic microorganisms manipulate host immunity for invasion.
- Cystatin C, a parasite-secreted factor, influences host immunity, but its cellular targets and mechanisms remain unclear.
- Dendritic cells (DCs) are crucial antigen-presenting cells initiating immune responses.
Purpose of the Study:
- To investigate the in vivo regulatory effects of cystatin C on dendritic cells (DCs).
- To elucidate the impact of cystatin C-modified DCs on T cell responses and autoimmune models.
Main Methods:
- In vivo verification of cystatin C's effects on DC functions.
- Adoptive transfer of cystatin C-overexpressing DCs in vaccination and treatment models.
- Analysis of T cell differentiation (Th17, Tregs) and immune responses in disease models.
Main Results:
- Cystatin C suppresses DC-mediated CD4+ and CD8+ T cell proliferation in vivo.
- Cystatin C-overexpressing DCs impair tumor rejection and CD8+ T cell immunity.
- Cystatin C-transduced DCs induce regulatory T cells (Tregs) more effectively than Th17 cells, increasing the Treg/Th17 ratio and alleviating Th17-dependent autoimmunity.
Conclusions:
- Cystatin C plays a significant role in regulating DC-mediated immune responses in vivo.
- These findings provide a theoretical basis for using cystatin C-transduced cell therapy to treat or manage autoimmune diseases.
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