Abstract 4525: Dynamic changes in patterns of ganglioside expression characterize maturation of cytotoxic T cells and natural killer cells into effector cells and suggest a close relationship between the two cell types

Author(s):  
Madison K. Ritter ◽  
Mary-Peyton A. Knapp ◽  
Taylor A. Johnson ◽  
Natalie D. King-Lyons ◽  
Lorrie Mandell ◽  
...  
2012 ◽  
Vol 2012 ◽  
pp. 1-6 ◽  
Author(s):  
Pratya Phetkate ◽  
Tanawan Kummalue ◽  
Yaowalak U-pratya ◽  
Somboon Kietinun

Background. Searching for drugs or herbal formulations to improve the immunity of HIV/AIDS positive people is an important issue for researchers in this field. Triphala, a Thai herbal formulation, is reported to have immunomodulatory effects in mice. However, it has not yet been investigated for immunostimulatory and side effects in healthy human volunteers.Objective. To evaluate the immunostimulatory and side effects of Triphala in a clinical phase I study.Materials and Methods. All volunteers took Triphala, 3 capsules per day for 2 weeks. Complete physical examination, routine laboratory analysis, and immunological studies were performed before ingestion and after initial meeting for 4 consecutive weeks.Results. We found that Triphala demonstrated significant immunostimulatory effects on cytotoxic T cells (CD3−CD8+) and natural killer cells (CD16+CD56+). Both of them increased significantly when compared with those of the control samples. However, no significant change in cytokine secretion was detected. All volunteers were healthy and showed no adverse effects throughout the duration of the study.Conclusion. Triphala has significant immunostimulatory effects on cellular immune response, especially cytotoxic T cells and natural killer cells. Increases in the absolute number of these cells may provide a novel adjuvant therapy for HIV/AIDS positive people in terms of immunological improvement.


2021 ◽  
Vol 11 ◽  
Author(s):  
Yaoyao Shi ◽  
Katarzyna Tomczak ◽  
June Li ◽  
Joshua K. Ochieng ◽  
Younghee Lee ◽  
...  

Checkpoint inhibitors are widely used immunotherapies for advanced cancer. Nonetheless, checkpoint inhibitors have a relatively low response rate, work in a limited range of cancers, and have some unignorable side effects. Checkpoint inhibitors aim to reinvigorate exhausted or suppressed T cells in the tumor microenvironment (TME). However, the TME contains various other immune cell subsets that interact to determine the fate of cytotoxic T cells. Activation of cytotoxic T cells is initiated by antigen cross-presentation of dendritic cells. Dendritic cells could also release chemokines and cytokines to recruit and foster T cells. B cells, another type of antigen-presenting cell, also foster T cells and can produce tumor-specific antibodies. Neutrophils, a granulocyte cell subset in the TME, impede the proliferation and activation of T cells. The TME also consists of cytotoxic innate natural killer cells, which kill tumor cells efficiently. Natural killer cells can eradicate major histocompatibility complex I-negative tumor cells, which escape cytotoxic T cell–mediated destruction. A thorough understanding of the immune mechanism of the TME, as reviewed here, will lead to further development of more powerful therapeutic strategies. We have also reviewed the clinical outcomes of patients treated with drugs targeting these immune cells to identify strategies for improvement and possible immunotherapy combinations.


2001 ◽  
Vol 75 (7) ◽  
pp. 3152-3163 ◽  
Author(s):  
Norimasa Iwanami ◽  
Atsuko Niwa ◽  
Yasuhiro Yasutomi ◽  
Nobutada Tabata ◽  
Masaaki Miyazawa

ABSTRACT We have previously shown that immunization with a synthetic peptide that contains a single CD4+ T-cell epitope protects mice against immunosuppressive Friend retrovirus infection. Cells producing infectious Friend virus were rapidly eliminated from the spleens of mice that had been immunized with the single-epitope peptide. However, actual effector mechanisms induced through T-helper-cell responses after Friend virus inoculation were unknown. When cytotoxic effector cells detected in the early phase of Friend retrovirus infection were separated based on their expression of cell surface markers, those lacking CD4 and CD8 but expressing natural killer cell markers were found to constitute the majority of effector cells that lysed Friend virus-induced leukemia cells. Depletion of natural killer cells by injecting anti-asialo-ganglio-N-tetraosylceramide antibody did not affect the number of CD4+ or CD8+ T cells in the spleen, virus antigen-specific proliferative responses of CD4+ T cells, or cytotoxic activity against Friend virus-induced leukemia cells exerted by CD8+ effector cells. However, the same treatment markedly reduced the killing activity of CD4− CD8−effector cells and completely abolished the effect of peptide immunization. Although the above enhancement of natural killer cell activity in the early stage of Friend virus infection was also observed in mice given no peptide, these results have demonstrated the importance and requirement of natural killer cells in vaccine-induced resistance against the retroviral infection.


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