首页> 外文期刊>Advances in Aging Research >Bone Marrow Cells Obtained from Old Animals Differ from the Young Animals Cells in Their Ability to Divide and in Response to the Presence of Liver Fibrosis in Primary Culture
【24h】

Bone Marrow Cells Obtained from Old Animals Differ from the Young Animals Cells in Their Ability to Divide and in Response to the Presence of Liver Fibrosis in Primary Culture

机译:从年老动物获得的骨髓细胞与年幼动物细胞的分裂能力不同,并且对原代培养中的肝纤维化反应有所不同

获取原文
获取外文期刊封面目录资料

摘要

Dynamics of bone marrow cells number (BMC) in the primary culture isolated from young (3 months) and old (20 months) Wistar rats was investigated. Proliferative activity of BMC of old animals was 2 times higher than that of young animals in the primary culture. Such superiority of the proliferative activity of BMC in the primary culture obtained from old animals is associated with the ability to actively divide lymphocytes and longer “lifespan” of segmented neutrophils obtained from old animals. It should be noted, that the lymphocytes of young animals did not proliferate in the primary culture. The content of intracellular calcium in BMC in the cells of old animals was 3 times higher compared with cells of young animals, which revealed the relationship of intracellular calcium and proliferative activity of BMC. Induction of liver fibrosis led to an increase in the lymphocyte content in young animals by 167%, and in old ones only by 26%, while the lymphocytes of young animals acquired the ability to proliferate in the primary culture. It has been suggested that such differences in the behavior of BMC in primary culture obtained in young and old animals reflect differences in the BMC microenvironment of young and old animals, which leads to changes in the epigenetic-metabolic characteristics of BMC.
机译:研究了年轻(3个月)和大龄(20个月)的原代培养物中的骨髓细胞数目(BMC)的变化。 Wistar大鼠。老动物的BMC增殖活性是后者的2倍。主要文化中的幼小动物。 BMC在从老动物获得的原代培养物中的增殖活性的这种优越性与主动分裂淋巴细胞的能力和从老动物获得的分段中性粒细胞的更长“寿命”有关。应该注意的是,幼小动物的淋巴细胞在原代培养物中并未增殖。老年动物细胞中BMC的细胞内钙含量是幼动物细胞的3倍,这揭示了细胞内钙与BMC增殖活性的关系。肝纤维化的诱导导致年幼动物的淋巴细胞含量增加了167%,而年长动物的淋巴细胞含量仅增加了26%,而年幼动物的淋巴细胞具有在原代培养物中增殖的能力。已经提出,在幼小和成年动物的原始培养物中BMC的行为的这种差异反映了幼小和成年动物的BMC微环境的差异,这导致了BMC的表观代谢特性的改变。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号