Baker H, Franzen L, Stone D, Cho J Y, Margolis F L
Cornell University Medical College, Burke Medical Research Institute, White Plains, NY 10605, USA.
Neurobiol Aging. 1995 Mar-Apr;16(2):119-28. doi: 10.1016/0197-4580(94)00152-9.
Tyrosine hydroxylase (TH) mRNA, immunoreactivity, and activity were examined as a reflection of dopamine expression in juxtaglomerular neurons intrinsic to the olfactory bulbs of young (6-month-old), middle aged (18-month-old), and aged (25- to 29-month-old) rats and mice. TH expression was maintained at levels observed in young animals in the olfactory bulbs of aged animals from two mouse strains, C57Bl/6JNia and C57Bl/6NNia, and one rat strain, an F1 hybrid between F344 and Brown Norway strains. The parental F344 rat strain exhibited reductions in TH expression of about 20% in 26- to 29-month-old animals as compared to 6- and 18 month-old rats. However, there was significant inter-animal variability. Some aged F344 rats had TH levels that were similar and others had activity levels that were 50% of those in young and middle aged animals. Neither the general condition of the animals nor the presence of adrenal tumors predicted the individuals with reduced TH expression. Olfactory bulb size, estimated from protein content, did not differ between rats and mice of different ages. In addition, expression of olfactory marker protein, a protein found primarily in mature olfactory receptor neurons, also was unchanged indicating the maintenance of afferent innervation. These data suggest that, in contrast to other brain dopamine systems, the expression of the dopamine phenotype is maintained in the aging olfactory bulb.
酪氨酸羟化酶(TH)的mRNA、免疫反应性和活性被作为年轻(6个月大)、中年(18个月大)以及老年(25至29个月大)大鼠和小鼠嗅球内肾小球旁神经元中多巴胺表达的反映进行检测。在两种小鼠品系C57Bl/6JNia和C57Bl/6NNia以及一种大鼠品系(F344和棕色挪威品系的F1杂交种)的老年动物嗅球中,TH表达维持在年轻动物中观察到的水平。与6个月和18个月大的大鼠相比,亲代F344大鼠品系在26至29个月大的动物中TH表达降低了约20%。然而,动物个体之间存在显著差异。一些老年F344大鼠的TH水平相似,而另一些大鼠的活性水平仅为年轻和中年动物的50%。动物的一般状况和肾上腺肿瘤的存在均无法预测TH表达降低的个体。根据蛋白质含量估算的嗅球大小在不同年龄的大鼠和小鼠之间并无差异。此外,主要在成熟嗅觉受体神经元中发现的嗅觉标记蛋白的表达也未发生变化,这表明传入神经支配得以维持。这些数据表明,与其他脑多巴胺系统不同,多巴胺表型的表达在衰老的嗅球中得以维持。