Li H, Matheny M, Tümer N, Scarpace P J
Geriatric Research, Education and Clinical Center, Department of Veterans Affairs Medical Center, Gainesville 32608-1197, USA.
Am J Physiol. 1998 Sep;275(3):E405-11. doi: 10.1152/ajpendo.1998.275.3.E405.
To investigate the role of aging on the fasting-induced suppression of leptin gene expression and increase in hypothalamic neuropeptide Y (NPY) gene expression, we fasted or fed ad libitum male F-344xBN rats aged 3, 24, and 31 mo for 2 days. We examined leptin mRNA levels in retroperitoneal, inguinal, and epididymal white adipose tissue (WAT); serum leptin levels; and NPY mRNA levels in the hypothalamus. We found that leptin mRNA levels were increased from 3 to 24 mo and leveled off between 24 and 31 mo in both retroperitoneal WAT and inguinal WAT but were unchanged with age in epididymal WAT. Serum leptin levels increased with age, whereas hypothalamic NPY mRNA levels did not change with age. Fasting suppressed leptin gene expression in all three WATs and serum leptin. Moreover, this suppression of serum leptin and of leptin message in retroperitoneal WAT was less in aged rats. Conversely, fasting increased hypothalamic NPY message, again to a lesser extent in aged rats. In both fed (ad libitum) and fasted rats, there was a strong correlation between serum leptin and hypothalamic NPY mRNA levels in the young but not in either of the two aged groups. These data suggest that aged F-344xBN rats are leptin resistant and that the fasting regulation of serum leptin, leptin mRNA, and hypothalamic NPY mRNA is impaired in aged rats.
为研究衰老对禁食诱导的瘦素基因表达抑制及下丘脑神经肽Y(NPY)基因表达增加的作用,我们对3、24和31月龄的雄性F-344xBN大鼠进行了2天的禁食或随意进食处理。我们检测了大鼠腹膜后、腹股沟及附睾白色脂肪组织(WAT)中的瘦素mRNA水平、血清瘦素水平以及下丘脑中的NPY mRNA水平。我们发现,腹膜后WAT和腹股沟WAT中,瘦素mRNA水平从3月龄到24月龄升高,在24月龄到31月龄保持稳定,但附睾WAT中的瘦素mRNA水平不随年龄变化。血清瘦素水平随年龄增加,而下丘脑NPY mRNA水平不随年龄变化。禁食抑制了所有三种WAT及血清瘦素中的瘦素基因表达。此外,老年大鼠腹膜后WAT中血清瘦素及瘦素信息的这种抑制作用较小。相反,禁食增加了下丘脑NPY信息,老年大鼠增加的程度同样较小。在随意进食和禁食的大鼠中,年轻大鼠的血清瘦素与下丘脑NPY mRNA水平之间存在强相关性,但在两个老年组中均无此相关性。这些数据表明,老年F-344xBN大鼠存在瘦素抵抗,且老年大鼠中血清瘦素、瘦素mRNA及下丘脑NPY mRNA的禁食调节受损。