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The Actions of BDNF on Dendritic Spine Density and Morphology in Organotypic Slice Cultures Depend on the Presence of Serum in Culture Media

机译:BDNF对器官型切片培养中树突棘密度和形态的作用取决于培养基中血清的存在

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摘要

We have previously shown that brain-derived neurotrophin factor (BDNF) increases dendritic spine density and the proportion of stubby spines in apical dendrites of CA1 pyramidal neurons of hippocampal slice cultures maintained in serum-free media. We show here that serum withdrawal causes an increase in the proportion of thin spines and a decrease in the fraction of stubby spines, without changing the overall density of dendritic spines. When slices are maintained in serum-containing media, BDNF also increased spine density but had the opposite effect on spine morphology: it increased the proportion of mushroom and thin spines and decreased the proportion of stubby spines. Intriguingly, slices maintained in serum media showed a lower p75NTR-to-TrkB expression level than serum-free slices, even after BDNF exposure. The differential actions of BDNF on spine morphology depending on the presence of serum in culture media, together with the difference in neurotrophin receptor expression are reminiscent of opposing functional signaling by p75NTR and Trk receptors, and reveal a complex modulation of dendritic morphology by BDNF signaling.
机译:先前我们已经证明,脑源性神经营养因子(BDNF)可以提高树突棘密度和海马切片培养的CA1锥体神经元的根尖树突中粗节棘突的比例,并维持在无血清培养基中。我们在这里显示,血清戒断导致细刺的比例增加而粗短刺的比例减少,而不会改变树突状刺的总体密度。当切片保持在含血清的培养基中时,BDNF也增加了脊柱密度,但对脊柱形态却产生了相反的影响:它增加了蘑菇和细刺的比例,并减少了粗短刺的比例。有趣的是,即使在BDNF暴露后,保持在血清培养基中的切片也显示出比无血清切片更低的p75NTR-TrkB表达水平。 BDNF对脊柱形态的不同作用取决于培养基中血清的存在,以及神经营养蛋白受体表达的差异让人想起p75NTR和Trk受体对立的功能性信号传导,并揭示了BDNF信号传导对树突形态的复杂调控。

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