hrp0092t5 | Top 20 Poster | ESPE2019

Evaluation of Toll-like Receptor 2 Expression on T Lymphocytes in Patients with Graves' Disease in Relation to the Clinical Parameters

Klatka Maria , Grywalska Ewelina , Polak Agnieszka

Introduction: Graves'disease (GD) is a polygenic and multifactorial disease.The innate immune system is a complex network of structured cells and proteins, including the Toll-like receptors (TLRs), which are also expressed on the cells of the adaptive immune system.The aim was to assess the relationship between the expression of TLR-2 on the surface of T CD4+ and CD8+ lymphocytes in pat...

hrp0084p1-123 | Thyroid | ESPE2015

Th17 Cells in Children with Graves’ Disease During Methimazole Treatment

Klatka Maria , Grywalska Ewelina , Rolinski Jacek

Background: Graves’ disease (GD) is the most common cause of hyperthyroidism in the pediatric population. T helper 17 (Th17) IL-17A+CD3+CD4+ cells represent a novel subset of T helper cells that play an active role in inflammatory and autoimmune diseases. Although methimazole (MMI) lowers the levels of thyroid autoantibodies, little is still known about its influence on cell-mediated immune response. The role of Th17 cells in GD pathogenesis remains uncertain and the impa...

hrp0094p2-149 | Diabetes and insulin | ESPE2021

Assessment of the percentage of T lymphocytes and B lymphocytes with the expression of selected activation markers in patients with type 1 diabetes mellitus depending on the presence of antibodies against EBV antigens.

Rysz Izabela , Hymos Anna , Klatka Maria ,

Introduction: After contact with the antigen, lymphocytes require activation for proliferation and differentiation into effector cells. Activation of lymphocytes results in the expression of activation markers. The CD69 antigen appears first on the surface of lymphocytes. This occurs one hour after receiving the activation signal. The CD69 molecule acts as a cellular stimulating signal, causing further activation and proliferation of cells, stimulating the syn...

hrp0086p1-p907 | Thyroid P1 | ESPE2016

Dysregulation of the Immune System in Children with Graves Disease – the Role of NK and NKT-Like Cells

Klatka Maria , Polak Agnieszka , Grywalska Ewelina , Kollataj Witold , Rolinski Jacek

Background: Almost all cases of hyperthyroidism in children result from Graves’ disease (GD). Recent studies have confirmed a significant role of T cells in the development of autoimmune diseases. However, the interactions between NKT-like cells and NK cells in GD are still poorly understood.Objective and hypotheses: The aim of the study was to assess the frequencies of peripheral blood T, NK and NKT-like cells in children with GD.<p class="abst...

hrp0082p1-d2-244 | Thyroid (1) | ESPE2014

Treatment of Graves’ Disease with Methimazole in Children Alters the Proliferation of Treg Cells and T Lymphocytes

Klatka Maria , Grywalska Ewelina , Wasiak Magdalena , Rolinski Jacek

Background: Graves’ disease (GD) is almost always the cause of hyperthyroidism in children. Studies carried out for recent years confirm an important role of T regulatory cells (Tregs) in the development of autoimmune diseases. However, the interactions between T-cell response and Treg proliferation in GD is still poorly understood.Objective and hypotheses: The aim of this research was the assessment of the in vitro proliferation of Treg ce...

hrp0082p3-d1-978 | Thyroid | ESPE2014

Treatment the Resistance to Thyroid Hormones in Girl

Budzynska Elzbieta , Ben-Skowronek Iwona , Korobowicz Elzbieta , Klatka Maria

Background: The cardinal feature of the resistance to thyroid hormone (RTH) is reduced responsiveness of target tissues to thyroid hormone action caused by thyroid hormone receptor β gene (THRB) mutations impairing hormone binding in the majority (90%) of cases. It results in elevated serum levels of free thyroxine (FT4) and triiodothyronine (FT3) associated with unsuppressed thyroid SH.Objective and hypotheses: The ai...