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首页> 外文期刊>Stem Cells >Bone marrow as multidimensional orbit oscillator after autologous bone marrow transplantation.
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Bone marrow as multidimensional orbit oscillator after autologous bone marrow transplantation.

机译:自体骨髓移植后,骨髓作为多维轨道振荡器。

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The local renin-angiotensin system (RAS) in bone marrow is probably involved in the control of hematopoiesis. Earlier observations suggest the relationship between the frequency of sodium and potassium concentration changes in urine and bone marrow recovery after chemotherapy. The purpose of this study was to prove the relationship between sodium and potassium excretion changes in urine and granulocyte counts in peripheral blood after autologous bone marrow and peripheral blood stem cell transplantation. The correlation between amplitude maximum FFmax of F=d[Na]/d[K], where d[Na] and d[K] are changes of sodium and potassium excretions in 24 h, and granulocytes, recorded k days later, was found in 12 patients with autologous bone marrow transplantation (BMT) and/or PBSCT. In patients with successful engraftment, k ranged from 4 to 7 days. In the patient with unsuccessful BMT, k was 12 days. The results imply the interaction between systemic and bone marrow RAS.
机译:骨髓中的局部肾素-血管紧张素系统(RAS)可能参与了造血功能的控制。较早的观察表明,化疗后尿液中钠和钾浓度变化的频率与骨髓恢复之间的关系。这项研究的目的是证明自体骨髓和外周血干细胞移植后尿液中钠和钾排泄变化与外周血粒细胞计数之间的关系。 F = d [Na] / d [K]的振幅最大FFmax之间的相关性,其中d [Na]和d [K]是24小时内钠和钾排泄的变化,并且发现了k天后记录的粒细胞在12例自体骨髓移植(BMT)和/或PBSCT患者中。在成功植入的患者中,k为4至7天。在BMT未成功的患者中,k为12天。该结果暗示全身性RAS与骨髓RAS之间的相互作用。

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