Turpin B P, Duckworth W C, Solomon S S
J Clin Invest. 1977 Aug;60(2):442-8. doi: 10.1172/JCI108794.
Incubation of isolated rat epididymal fat cells is associated with the accumulation of adenosine in the incubation medium. To more clearly define the effect of adenosine on lipolysis, isolated rat epididymal adipocytes were studied with the perifusion system. Various combinations of epinephrine, adenosine, and adenosine deaminase were perifused through the adipocytes. Exogenous adenosine, 0.001-10.0 muM, had no discernible influence upon unstimulated lipolysis; but exogenous adenosine inhibited epinephrine-sensitive lipolysis in a concentration-dependent manner. Cells perifused with 0.3 muM epinephrine plus 0.001 muM adenosine did not show any impairment of the lipolytic response to 0.3 muM epinephrine alone. Adenosine, 0.01 muM, inhibited the response to epinephrine by 50%; response to 0.3 muM epinephrine plus 0.1 muM adenosine was similar to the basal rate. Perifusion with adenosine deaminase significantly increased basal lipolysis to 30% of the epinephrine response. Adenosine deaminase and epinephrine were synergistic in stimulating lipolysis to 180% of the response to epinephrine alone. Isolated fat cells were incubated for 30 min, and the cell-free used medium was perifused through fresh fat cells. Epinephrine in used medium was less effective in promoting lipolysis than epinephrine in fresh buffer. High-pressure liquid chromatography identified adenosine in the used medium. Bovine serum albumin possessed adenosine deaminase activity but accounted for negligible conversion of adenosine to inosine. Adenosine is shown to have a modulating effect upon basal and hormone-stimulated lipolysis in the perifusion system. Sufficient endogenous adenosine (<0.01 muM) is present to maximally affect basal lipolysis. Hormone-stimulated lipolysis, although inhibited somewhat by endogenous adenosine, requires the addition of exogenous adenosine for complete inhibition.
分离的大鼠附睾脂肪细胞孵育会导致孵育培养基中腺苷的积累。为了更清楚地确定腺苷对脂解作用的影响,采用灌流系统对分离的大鼠附睾脂肪细胞进行了研究。将肾上腺素、腺苷和腺苷脱氨酶的各种组合灌流通过脂肪细胞。外源性腺苷,浓度为0.001 - 10.0 μM,对未刺激的脂解作用没有明显影响;但外源性腺苷以浓度依赖的方式抑制肾上腺素敏感的脂解作用。用0.3 μM肾上腺素加0.001 μM腺苷灌流的细胞,对单独0.3 μM肾上腺素的脂解反应没有任何损害。0.01 μM的腺苷使对肾上腺素的反应抑制了50%;对0.3 μM肾上腺素加0.1 μM腺苷的反应与基础速率相似。用腺苷脱氨酶灌流显著增加基础脂解作用至肾上腺素反应的30%。腺苷脱氨酶和肾上腺素在刺激脂解作用方面具有协同作用,可达单独肾上腺素反应的180%。分离的脂肪细胞孵育30分钟,然后将无细胞的用过的培养基灌流通过新鲜的脂肪细胞。用过的培养基中的肾上腺素在促进脂解方面比新鲜缓冲液中的肾上腺素效果差。高压液相色谱法鉴定出用过的培养基中有腺苷。牛血清白蛋白具有腺苷脱氨酶活性,但腺苷转化为肌苷的转化率可忽略不计。结果表明,腺苷在灌流系统中对基础和激素刺激的脂解作用具有调节作用。存在足够的内源性腺苷(<0.01 μM)以最大程度地影响基础脂解作用。激素刺激的脂解作用虽然受到内源性腺苷的一定抑制,但需要添加外源性腺苷才能完全抑制。