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Measurement of protein fractional synthesis and breakdown rates in the skin of rabbits using a subflooding dose method.

机译:使用亚驱剂量方法测量兔皮肤中蛋白质的分数合成和分解速率。

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The flooding dose method continues to be useful in measuring protein fractional synthetic rate (FSR) in a tissue. However, flooding of free amino acid pools eliminates enrichment difference between plasma and tissue free amino acid pools, which makes it impossible to concomitantly measure protein fractional breakdown rate (FBR). We hypothesized that a subflooding dose of an amino acid reduces the enrichment difference between plasma and tissue free amino acid pool to a minimal measurable level, thus allowing concomitant measurement of protein FSR and FBR. Phenylalanine (40% enriched) at 50 mg/kg was intravenously injected as a bolus in 6 anesthetized rabbits. Arterial blood and chest skin samples were taken before the injection and for 120 minutes after the injection. Fractional breakdown rate of skin protein calculated from 15-60-120-minute sampling times was 11.3%/d +/- 2.0%/d, which was close (P = .66) to the corresponding FSR of 10.0%/d +/- 2.3%/d. The subflooding dose injection did not disturb the FBR approach because modifications on the FBR equation to account for the changes of plasma phenylalanine concentration resulted in the same value (11.5%/d +/- 1.4%/d). The FBR was positively correlated with the FSR (r = 0.80, P < .05). These findings indicate maintenance of protein mass in the skin, which is a metabolic characteristic of the skin. This subflooding dose method provides a methodological choice to concomitantly measure both FSR and FBR in a tissue.
机译:淹没剂量法继续用于测量组织中的蛋白质分数合成速率(FSR)。然而,游离氨基酸库的泛滥消除了血浆和组织游离氨基酸库之间的富集差异,这使得不可能同时测量蛋白质分数分解率(FBR)。我们假设氨基酸的亚注入剂量将血浆和组织游离氨基酸库之间的富集差异降低到最小可测量水平,从而允许同时测量蛋白质FSR和FBR。以静脉推注的方式将苯丙氨酸(浓度40%)以50 mg / kg的剂量静脉内注射到6只麻醉的兔子中。在注射前和注射后120分钟采集动脉血和胸部皮肤样品。由15-60-120分钟的采样时间计算得出的皮肤蛋白的分解率是11.3%/ d +/- 2.0%/ d,与相应的FSR(10.0%/ d + /)接近(P = 0.66) -2.3%/天。注入次剂量剂量不会干扰FBR方法,因为对FBR方程进行修改以说明血浆苯丙氨酸浓度的变化会产生相同的值(11.5%/ d +/- 1.4%/ d)。 FBR与FSR正相关(r = 0.80,P <.05)。这些发现表明维持皮肤中的蛋白质量,这是皮肤的代谢特征。该亚注剂量方法提供了一种方法学选择,可以同时测量组织中的FSR和FBR。

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