Fujibayashi Y, Waki A, Wada K, Ueno M, Magata Y, Yonekura Y, Konishi J, Takeda T, Yokoyama A
Faculty of Pharmaceutical Sciences, Kyoto University, Japan.
Biol Pharm Bull. 1994 Jan;17(1):102-5. doi: 10.1248/bpb.17.102.
Using an accelerated senescence-prone model mouse strain, SAMP8, with spontaneously occurring age-related deficits in learning and memory, cerebral glucose and amino acid accumulation were investigated to study the metabolic abnormalities in relation to age. The findings were compared with those in an accelerated senescence-resistant mouse strain, SAMR1, without deterioration of ability in learning and memory. [14C]-2-Deoxyglucose accumulation in the SAMP8 brain was normal at 1 month of age but decreased from 2-3 months of age onwards. In contrast, tyrosine accumulation was unchanged from 1 to 5 months of age. The impairment of memory in the SAMP8 at 2-3 months of age corresponded with the decrease in [14C]-2-deoxyglucose accumulation, but was not related to Tyr. This animal model may help provide new information on the metabolic changes in aging.
使用一种易加速衰老的模型小鼠品系SAMP8,其在学习和记忆方面会自发出现与年龄相关的缺陷,研究了大脑葡萄糖和氨基酸积累情况,以探讨与年龄相关的代谢异常。将这些发现与一种抗加速衰老的小鼠品系SAMR1进行比较,该品系在学习和记忆能力方面没有退化。SAMP8大脑中[14C]-2-脱氧葡萄糖的积累在1月龄时正常,但从2 - 3月龄开始下降。相比之下,酪氨酸积累在1至5月龄时没有变化。2 - 3月龄的SAMP8记忆损伤与[14C]-2-脱氧葡萄糖积累的减少相对应,但与酪氨酸无关。这种动物模型可能有助于提供有关衰老过程中代谢变化的新信息。