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The influence of 17β-oestradiol on lymphopoiesis and immune system ontogenesis ...

Moreira, Catarina; Paiola, Matthieu; Duflot, Aurélie; Varó, Inma; Sitjà-Bobadilla, Ariadna; Knigge, Thomas; Pinto, P; Monsinjon, Tiphaine

The female sex steroid 17β-oestradiol (E2) is involved in the regulation of numerous physiological functions, including the immune system development and performance. The role of oestrogens during ontogenesis is, however, not well studied. In rodents and fish, thymus maturation appears to be oestrogen-dependent. Never theless, little is known about the function of oestrogen in immune system development. To furt...


Proteomic changes in the extracellular environment of sea bass thymocytes expos...

Moreira, Catarina; Hétru, Julie; Paiola, Matthieu; Duflot, Aurélie; Chan, Philippe; Vaudry, David; Monsinjon, Tiphaine; Knigge, Thomas

The thymus is an important immune organ providing the necessary microenvironment for the development of a diverse, self-tolerant T cell repertoire, which is selected to allow for the recognition of foreign antigens while avoiding self-reactivity. Thymus function and activity are known to be regulated by sex steroid hormones, such as oestrogen, leading to sexual dimorphisms in immunocompetence between males and ...


Prepubertal gonad investment modulates thymus function: evidence in a teleost fish

Paiola, Matthieu; Moreira, Catarina; Hétru, Julie; Duflot, Aurélie; Pinto, Patrícia; Scapigliati, Giuseppe; Knigge, Thomas; Monsinjon, Tiphaine

Thymus plasticity following gonadectomy or sex hormone replacement has long since exemplified sex hormone effects on the immune system in mammals and, to a lesser extent, in 'lower vertebrates', including amphibians and fish. Nevertheless, the underlying physiological significances as well as the ontogenetic establishment of this crosstalk remain largely unknown. Here, we used a teleost fish, the European sea b...


Oestrogen, an evolutionary conserved regulator of T cell differentiation and im...

Paiola, Matthieu; Knigge, Thomas; Duflot, Aurélie; Pinto, Patricia IS; Farcy, Emilie; Monsinjon, Tiphaine

In teleosts, as in mammals, the immune system is tightly regulated by sexual steroid hormones, such as oestrogens. We investigated the effects of 17β-oestradiol on the expression of several genes related to T cell development and resulting T cell subpopulations in sea bass, Dicentrarchus labrax, for a primary lymphoid organ, the thymus, and two secondary lymphoid organs, the head-kidney and the spleen. In paral...


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