Nutrition Research
Volume 29, Issue 8 , Pages 568-578, August 2009

Select phytochemicals suppress human T-lymphocytes and mouse splenocytes suggesting their use in autoimmunity and transplantation

Center for Immunology and Microbial Disease MC-151, The Albany Medical College, Albany, NY 12208, USA

Received 8 June 2009; received in revised form 14 August 2009; accepted 18 August 2009.

Abstract 

We have considered a novel “rational” gene targeting approach for treating pathologies whose genetic bases are defined using select phytochemicals. We reason that one such potential application of this approach would be conditions requiring immunosuppression such as autoimmune disease and transplantation, where the genetic target is clearly defined; i.e., interleukin-2 and associated T-cell activation. Therefore, we hypothesized that select phytochemicals can suppress T-lymphocyte proliferation both in vitro and in vivo. The immunosuppressive effects of berry extract, curcumin, quercetin, sulforaphane, epigallocatechin gallate (EGCG), resveratrol, α-tocopherol, vitamin C and sucrose were tested on anti-CD3 plus anti-CD28-activated primary human T-lymphocytes in culture. Curcumin, sulforaphane, quercetin, berry extract and EGCG all significantly inhibited T-cell proliferation, and this effect was not due to toxicity. IL-2 production was also reduced by these agents, implicating this important T-cell cytokine in proliferation suppression. Except for berry extract, these same agents also inhibited mouse splenic T-cell proliferation and IL-2 production. Subsequent in vivo studies revealed that quercetin (but not sulforaphane) modestly suppressed mouse splenocyte proliferation following supplementation of BALB/c mice diets. This effect was especially prominent if corrected for the loss of supplement “recall” as observed in cultured T-cells. These results suggest the potential use of these select phytochemicals for treating autoimmune and transplant patients, and support our strategy of using select phytochemicals to treat genetically-defined pathologies, an approach that we believe is simple, healthy, and cost-effective.

Abbreviations: T-cell, T-lymphocyte, IL-2, interleukin-2, EGCG, epigallocatechin gallate, PBMC, peripheral blood mononuclear cells, SEM, standard error of the mean, NF-κB, nuclear factor κB, NF-AT, nuclear factor of activated T cells

Keywords: Immunosuppression, Healthy dietary nutrients, T-cells, IL-2, Splenocyte, Lymphocyte, Mouse, Autoimmune, Transplant

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PII: S0271-5317(09)00148-1

doi:10.1016/j.nutres.2009.08.003

Nutrition Research
Volume 29, Issue 8 , Pages 568-578, August 2009