Radojevic K, Arsenovic-Ranin N, Kosec D, Pesic V, Pilipovic I, Perisic M, Plecas-Solarovic B, Leposavic G
Institute of Immunology and Virology Torlak, Immunology Research Centre Branislav Janković, Belgrade, Serbia.
J Endocrinol. 2007 Mar;192(3):669-82. doi: 10.1677/joe.1.07019.
To test putative interdependence in the ontogenesis of the hypothalamic-pituitary-gonadal and thymic-lymphatic axes, thymocyte differentiation and maturation was examined in neonatally castrated (Cx) adult rats. In the hypercellular thymi of Cx rats, the proportion of the least mature CD4(-)CD8(-)TCRalphabeta(-) triple negative (TN) thymocytes was reduced, while the proportions of all downstream double positive (DP) subsets (TCRalphabeta(-), TCRalphabeta(low) and TCRalphabeta(high)) were increased when compared with neonatally sham-castrated (Sx) adult rats. This suggested an accelerated thymocyte transition from the TN to DP TCRalphabeta(low) developmental stage accompanied by an increased positive/ reduced negative thymocyte selection. The increased thymocyte surface density of Thy-1, which is implicated in thymocyte hyposensitivity to negative selection, in Cx rats further supports the previous assumption. The finding that the proportions of both single positive (SP) TCRalphabeta(high) thymocyte subsets were reduced, while their numbers were increased (CD4(+)CD8(-)) or unaltered (CD4(-)CD8(+)), coupled with results demonstrating an increased level of CD4(-)CD8(+) cells without changes in that of CD4(+)8(-) cells in the spleen indicate: (i) accelerated differentiation and maturation of the positively selected DP TCRalphabeta(high) thymocytes towards CD4(-)8(+) TCRalphabeta(high) cells followed by increased emigration of the mature cells and (ii) decelerated differentiation and maturation towards CD4(+)8(-)TCRalphabeta(high) cells in Cx rats. Furthermore, the unaltered proportion of intrathymically developing CD4(+)CD25(+)Foxp3(+) regulatory cells in Cx rats, in light of putative hyposensitivity of thymocytes to negative selection suggesting reduced elimination of autoreactive cells, may provide a firm basis for understanding the reasons behind increased susceptibility of Cx rats to autoimmune disease induction.
为了测试下丘脑 - 垂体 - 性腺轴和胸腺 - 淋巴轴在个体发育过程中可能存在的相互依赖性,研究人员对新生期阉割(Cx)的成年大鼠的胸腺细胞分化和成熟情况进行了检测。与新生期假阉割(Sx)的成年大鼠相比,在Cx大鼠细胞增多的胸腺中,最不成熟的CD4(-)CD8(-)TCRαβ(-)三阴性(TN)胸腺细胞比例降低,而所有下游双阳性(DP)亚群(TCRαβ(-)、TCRαβ(low)和TCRαβ(high))的比例增加。这表明胸腺细胞从TN向DP TCRαβ(low)发育阶段的过渡加速,同时伴随着阳性/阴性胸腺细胞选择增加/减少。Cx大鼠中Thy-1的胸腺细胞表面密度增加,这与胸腺细胞对阴性选择的低敏感性有关,进一步支持了先前的假设。单阳性(SP)TCRαβ(high)胸腺细胞亚群的比例均降低,而其数量增加(CD4(+)CD8(-))或未改变(CD4(-)CD8(+)),再加上脾脏中CD4(-)CD8(+)细胞水平增加而CD4(+)8(-)细胞水平未改变的结果表明:(i)阳性选择的DP TCRαβ(high)胸腺细胞向CD4(-)8(+) TCRαβ(high)细胞加速分化和成熟,随后成熟细胞的迁出增加;(ii)Cx大鼠中向CD4(+)8(-)TCRαβ(high)细胞的分化和成熟减速。此外,鉴于胸腺细胞对阴性选择的低敏感性表明自身反应性细胞的清除减少,Cx大鼠胸腺内发育的CD4(+)CD25(+)Foxp3(+)调节性细胞比例未改变,这可能为理解Cx大鼠对自身免疫性疾病诱导易感性增加背后的原因提供坚实基础。