High levels of circulating triiodothyronine induce plasma cell differentiation

骨髓 脾脏 内科学 内分泌学 B细胞 CD19 T细胞 红浆 生物 流式细胞术 抗体 化学 医学 免疫学 免疫系统
作者
Flávia Fonseca Bloise,Felipe Leite de Oliveira,Alberto Nóbrega,Rita Vasconcellos,Aline Cordeiro,Luciana Souza de Paiva,Dennis D. Taub,Radovan Borojević,Carmen C. Pazos‐Moura,Valéria de Mello Coelho
出处
期刊:Journal of Endocrinology [Bioscientifica]
卷期号:220 (3): 305-317 被引量:17
标识
DOI:10.1530/joe-13-0315
摘要

The effects of hyperthyroidism on B-cell physiology are still poorly known. In this study, we evaluated the influence of high-circulating levels of 3,5,3'-triiodothyronine (T3) on bone marrow, blood, and spleen B-cell subsets, more specifically on B-cell differentiation into plasma cells, in C57BL/6 mice receiving daily injections of T3 for 14 days. As analyzed by flow cytometry, T3-treated mice exhibited increased frequencies of pre-B and immature B-cells and decreased percentages of mature B-cells in the bone marrow, accompanied by an increased frequency of blood B-cells, splenic newly formed B-cells, and total CD19(+)B-cells. T3 administration also promoted an increase in the size and cellularity of the spleen as well as in the white pulp areas of the organ, as evidenced by histological analyses. In addition, a decreased frequency of splenic B220(+) cells correlating with an increased percentage of CD138(+) plasma cells was observed in the spleen and bone marrow of T3-treated mice. Using enzyme-linked immunospot assay, an increased number of splenic immunoglobulin-secreting B-cells from T3-treated mice was detected ex vivo. Similar results were observed in mice immunized with hen egg lysozyme and aluminum adjuvant alone or together with treatment with T3. In conclusion, we provide evidence that high-circulating levels of T3 stimulate plasma cytogenesis favoring an increase in plasma cells in the bone marrow, a long-lived plasma cell survival niche. These findings indicate that a stimulatory effect on plasma cell differentiation could occur in untreated patients with Graves' disease.
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