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大鼠体内儿茶酚胺敏感性脂解作用:年龄对附睾脂肪细胞与肾周脂肪细胞脂解级联反应影响的不同位点

Catecholamine-sensitive lipolysis in the rat: different loci for effect of age on the lipolytic cascade in epididymal vs perirenal fat cells.

作者信息

Carraro R, Li Z H, Gregerman R I

机构信息

Gerontology Research Center, National Institute on Aging, Baltimore.

出版信息

J Gerontol. 1994 Jul;49(4):B140-3. doi: 10.1093/geronj/49.4.b140.

DOI:10.1093/geronj/49.4.b140
PMID:8014385
Abstract

The biochemical locus of the decrease of lipolytic responsiveness to catecholamines in the aging rat has not heretofore been completely identified. Although increased sensitivity to the inhibitory action of adenosine is the likely explanation for the decrease during maturation, the nature of the age effect during senescence has been unclear. In order to determine whether the proximal or distal portion of the lipolytic pathway is involved, we have studied the lipolytic effect of the distally acting cyclic AMP analogue, 8-(4-chlorophenylthioadenosine)3'5'-monophosphate (cyclic) (Cl-cAMP) on rat fat cells from both the epididymal and perirenal fat pads of mature (6 mo) and senescent (24 mo) Fischer 344 rats. Using an adenosine (N6-1-2-phenylisopropyl-adenosine; PIA) regulated system, the lipolytic response to epinephrine (glycerol release) was measured simultaneously with that to Cl-cAMP. The effects of age on lipolysis are greatly influenced by the anatomic site of origin of the fat cells. The epididymal cells of the old rats showed no decreased responsiveness to either epinephrine or Cl-cAMP. However, the perirenal cells of the old rats showed a grossly impaired maximal response to both epinephrine (60% decrease relative to young; p < .005) and Cl-cAMP (42% and 58% decrease in 2 sets of experiments; p < .05 and .04, respectively). Although decreased lipolytic response to epinephrine in epididymal cells was not seen in these studies, this has been clearly shown in earlier work, suggesting that diminished response to epinephrine is demonstrable only when the system is not already maximally inhibited by PIA.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在衰老大鼠中,脂肪分解对儿茶酚胺反应性降低的生化位点迄今尚未完全明确。虽然对腺苷抑制作用的敏感性增加可能是成熟过程中反应性降低的原因,但衰老过程中年龄效应的本质尚不清楚。为了确定脂肪分解途径的近端或远端部分是否参与其中,我们研究了远端作用的环磷酸腺苷类似物8-(4-氯苯硫基)腺苷3',5'-单磷酸(环磷酰氯-cAMP)对成熟(6个月)和衰老(24个月)的Fischer 344大鼠附睾和肾周脂肪垫的脂肪细胞的脂肪分解作用。使用腺苷(N6-1-2-苯基异丙基腺苷;PIA)调节系统,同时测量对肾上腺素(甘油释放)和环磷酰氯-cAMP的脂肪分解反应。年龄对脂肪分解的影响受脂肪细胞起源解剖部位的极大影响。老年大鼠的附睾细胞对肾上腺素或环磷酰氯-cAMP的反应性均未降低。然而,老年大鼠的肾周细胞对肾上腺素(相对于年轻大鼠降低60%;p <.005)和环磷酰氯-cAMP(在两组实验中分别降低42%和58%;p <.05和.04)的最大反应明显受损。虽然在这些研究中未观察到附睾细胞对肾上腺素的脂肪分解反应降低,但在早期工作中已明确显示,这表明只有当系统未被PIA最大程度抑制时,对肾上腺素的反应降低才会显现。(摘要截短于250字)

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