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Tricyclic Antidepressant Amitriptyline Indirectly Increases the Proliferation of Adult Dentate Gyrus-Derived Neural Precursors: An Involvement of Astrocytes

机译:三环抗抑郁药阿米替林间接增加成人齿状回衍生神经前体的增殖:涉及星形胶质细胞。

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摘要

Antidepressants increase the proliferation of neural precursors in adult dentate gyrus (DG), which is considered to be involved in the therapeutic action of antidepressants. However, the mechanism underlying it remains unclear. By using cultured adult rat DG-derived neural precursors (ADP), we have already shown that antidepressants have no direct effects on ADP. Therefore, antidepressants may increase the proliferation of neural precursors in adult DG via unknown indirect mechanism. We have also shown that amitriptyline (AMI), a tricyclic antidepressant, induces the expressions of GDNF, BDNF, FGF2 and VEGF, common neurogenic factors, in primary cultured astrocytes (PCA). These suggest that AMI-induced factors in astrocytes may increase the proliferation of neural precursors in adult DG. To test this hypothesis, we examined the effects of AMI-induced factors and conditioned medium (CM) from PCA treated with AMI on ADP proliferation. The effects of CM and factors on ADP proliferation were examined with BrdU immunocytochemistry. AMI had no effect on ADP proliferation, but AMI-treated CM increased it. The receptors of GDNF, BDNF and FGF2, but not VEGF, were expressed in ADP. FGF2 significantly increased ADP proliferation, but not BDNF and GDNF. In addition, both of a specific inhibitor of FGF receptors and anti-FGF2 antibody significantly counteracted the increasing effect of CM on ADP proliferation. In addition, FGF2 in brain is mainly derived from astrocytes that are key components of the neurogenic niches in adult DG. These suggest that AMI may increase ADP proliferation indirectly via PCA and that FGF2 may a potential candidate to mediate such an indirect effect of AMI on ADP proliferation via astrocytes.
机译:抗抑郁药增加成人齿状回(DG)中神经前体的增殖,这被认为与抗抑郁药的治疗作用有关。但是,其背后的机制仍不清楚。通过使用培养的成年大鼠DG衍生的神经前体(ADP),我们已经显示出抗抑郁药对ADP没有直接作用。因此,抗抑郁药可能通过未知的间接机制增加成人DG中神经前体的增殖。我们还表明,三环抗抑郁药阿米替林(AMI)可以在原代培养的星形胶质细胞(PCA)中诱导​​GDNF,BDNF,FGF2和VEGF(常见的神经源性因子)的表达。这些提示星形胶质细胞中AMI诱导的因子可能会增加成人DG中神经前体的增殖。为了检验该假设,我们检查了AMI诱导的因子和AMI处理的PCA产生的条件培养基(CM)对ADP增殖的影响。用BrdU免疫细胞化学检查了CM和因子对ADP增殖的影响。 AMI对ADP的增殖没有影响,但是AMI处理的CM增加了ADP的增殖。 GDNF,BDNF和FGF2的受体,而不是VEGF,在ADP中表达。 FGF2显着增加ADP增殖,但不增加BDNF和GDNF。另外,FGF受体的特异性抑制剂和抗FGF2抗体两者均显着抵消了CM对ADP增殖的增加作用。此外,大脑中的FGF2主要来源于星形胶质细胞,星形胶质细胞是成年DG神经源性壁ches的关键成分。这些提示AMI可以通过PCA间接增加ADP增殖,而FGF2可能是介导AMI通过星形胶质细胞对ADP增殖的间接作用的潜在候选者。

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