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神经生长因子调节成年小鼠交感神经节细胞的形态和存活。

Nerve growth factor regulates sympathetic ganglion cell morphology and survival in the adult mouse.

作者信息

Ruit K G, Osborne P A, Schmidt R E, Johnson E M, Snider W D

机构信息

Department of Neurology, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Neurosci. 1990 Jul;10(7):2412-9. doi: 10.1523/JNEUROSCI.10-07-02412.1990.

Abstract

We have investigated the effects of prolonged systemic injections of nerve growth factor (NGF) and its antiserum on the survival and morphology of sympathetic ganglion cells in adult mice. Using intracellular injections of Lucifer yellow in lightly fixed superior cervical ganglia, we show that total dendritic lengths of ganglion cells are increased 29% after 2 weeks of NGF treatment. The increased dendritic length is characterized by increased branching within the dendritic arborization and not by the addition of new primary dendrites. In addition, cell soma cross-sectional area was increased 45%. Conversely, administration of NGF antiserum for 1 month decreased total dendritic length by 33%, decreased ganglion cell body size by 26%, and reduced the number of neurons in the ganglion by 25%. After 3 months of NGF antiserum treatment, the number of neurons in the ganglion was reduced a total of 41%. NGF antiserum treatment for 1 month in aged (22 months old) animals reduced ganglion cell body size by 21% and cell number by 22%, decreases that are comparable to those observed in young adult animals. Our results indicate that, even in maturity, sympathetic ganglion cells remain dependent on NGF for survival and maintenance of dendritic geometry, and this dependence continues into old age.

摘要

我们研究了长期全身注射神经生长因子(NGF)及其抗血清对成年小鼠交感神经节细胞存活和形态的影响。通过在轻度固定的颈上神经节中进行荧光黄的细胞内注射,我们发现,经NGF处理2周后,神经节细胞的总树突长度增加了29%。树突长度增加的特征是在树突分支内分支增多,而非新增初级树突。此外,细胞体横截面积增加了45%。相反,注射1个月的NGF抗血清可使总树突长度减少33%,神经节细胞体大小减少26%,神经节中的神经元数量减少25%。经NGF抗血清处理3个月后,神经节中的神经元数量总共减少了41%。对老龄(22月龄)动物注射1个月的NGF抗血清,可使神经节细胞体大小减少21%,细胞数量减少22%,这些减少程度与在年轻成年动物中观察到的相当。我们的结果表明,即使在成年期,交感神经节细胞在存活和维持树突形态方面仍依赖NGF,且这种依赖性会持续到老年。

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