A novel doubly labelled <sup>13</sup>C, <sup>15</sup>N amino acid method for measuring energy and protein metabolism in man
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A novel doubly [1-<sup>13</sup>C, α-<sup>15</sup>NH<sub>2</sub>]-labelled amino acid method (DLAAM) is presented for the determination of the CO<sub>2</sub> production (RCO<sub>2</sub>) and energy expenditure in humans. This method is based on the simultaneous administration of [1-<sup>13</sup>C]glycine and [<sup>15</sup>N]glycine followed by the measurement of excretion kinetics of breath <sup>13</sup>CO<sub>2</sub> and urinary <sup>15</sup>N. The basic idea of the DLAAM is that the unknown <sup>13</sup>C recovery RF(<sup>13</sup>C) of the 1-<sup>13</sup>C amino acid, essential for the calculation of the net CO<sub>2</sub> production, can be approximated by the easily measureable <sup>15</sup>N recovery RF(<sup>15</sup>N) of the α-<sup>15</sup>NH<sub>2</sub> labelled amino acid. In four healthy adult men (76–97 kg) the DLAAM was tested parallel to the IC and in one man (74 kg) parallel to the DLWM. Using the approximation RF(<sup>13</sup>C) ≈ RF(<sup>15</sup>N) the RCO<sub>2</sub> (in l CO<sub>2</sub> d<sup>–1</sup>) was calculated to 387.0 ± 30.3 (DLAAM) vs. 382.8 ± 22.6. (IC). The Bland–Altman plot shows that the difference between the DLAAM and IC of individual RCO<sub>2</sub> is within the 95 % confidence interval (mean ± 2 SD): +4.3 ± 37.5 l CO<sub>2</sub> d<sup>–1</sup>. We conclude that the DLAAM and IC may be used interchangeably. The physical activity level (PAL) was calculated based on the DLAAM vs. DLWM to about 1.5.



