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首页> 外文期刊>Stem cell reviews and Reports >Dynamics of Bone Marrow VSELs and HSCs in Response to Treatment with Gonadotropin and Steroid Hormones, during Pregnancy and Evidence to Support Their Asymmetric/Symmetric Cell Divisions
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Dynamics of Bone Marrow VSELs and HSCs in Response to Treatment with Gonadotropin and Steroid Hormones, during Pregnancy and Evidence to Support Their Asymmetric/Symmetric Cell Divisions

机译:骨髓vsel和HSC的动态响应于促性腺激素和类固醇激素治疗,怀孕和证据支持其不对称/对称细胞分裂

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Gender plays an important role in the incidence of hematological malignancies and recently hematopoietic stem cells (HSCs) were found to proliferate more in females that gets further augmented during pregnancy. It was suggested that since basal numbers of HSCs remain the same in both sexes, possibly HSCs in females undergo increased self-renewal and apoptosis. Then how is self-renewal of stem cells regulated in males? More important, do HSCs undergo asymmetric cell divisions (ACD) or a more primitive population of pluripotent, very small embryonic-like stem cells (VSELs) undergo ACD to self-renew and specify into HSCs? Lot more clarity is required on the bone marrow stem cells biology. Present study was undertaken to evaluate whether similar dimorphism reported for HSCs also exists among VSELs. Bone marrow VSELs and HSCs were studied in bilaterally ovariectomized and castrated mice by flow cytometry after treating with gonadotropin (FSH) and sex steroid (estrogen & progesterone) hormones and during pregnancy. Differential expression of pluripotent (Oct-4A, Sox2, Nanog) and differentiation (Oct-4, Sca1, c-Kit, Ikaros) specific transcripts was studied. Basal BrdU uptake was more in both VSELs (p 0.01) and HSCs (p 0.05) in female bone marrow. FSH exerted a more profound effect compared to estradiol in both the sexes. Flow cytometry results showed ten-fold increase in spleen VSELs by mid-gestation associated with approximately two-fold increase in HSCs. These results point to a novel yet unreported role of spleen VSELs during pregnancy. Furthermore, VSELs underwent ACD to self-renew and give rise to slightly bigger HSCs based on unequal expression of NUMB, CD45 and OCT-4.
机译:性别在血液天动病学恶性肿瘤发病率发挥着重要作用,最近发现造血干细胞(HSCs)在怀孕期间进一步增强的女性中促进了更多的雌性。建议由于在两性中的HSC基础的基础上,因此女性中的HSC可能会增加自我更新和细胞凋亡。那么如何在雄性中调节干细胞的自我更新?更重要的是,HSCs经过不对称细胞分区(ACD)或更原始的多能,非常小的胚胎状干细胞(VSEL)经历ACD以自我更新并指定为HSC?骨髓干细胞生物学需要更多的清晰度。进行了本研究以评估vsel中是否存在报告的HSC的相似二甲性。在用促性腺激素(FSH)和性类固醇(雌激素和孕激素)激素和妊娠期间,通过流式细胞术进行骨髓vsel和HSCs。通过流式细胞术进行流式细胞术。研究了多能(OCT-4A,SOX2,纳米)和分化(OCT-4,SCA1,C-kit,Ikaros)特异性转录物的差异表达。基础Brdu吸收更多的vsel(p& 0.01)和雌性骨髓中的HSC(P <0.05)。与两性中的雌二醇相比,FSH施加了更深刻的效果。流式细胞术的结果表明,通过与HSC大约两倍的增加相关的中妊娠,脾脏vsel升高了10倍。这些结果指出了怀孕期间脾vsel的新颖尚未报告的作用。此外,VSEL接受了ACD以自我更新,并基于麻木,CD45和OCT-4的不等表达产生略大的HSC。

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