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测定稳定同位素稀释方案,用于研究家猫的碳氧化。

Determination of a steady-state isotope dilution protocol for carbon oxidation studies in the domestic cat.

机构信息

Department of Animal Biosciences, Ontario Agricultural College, University of Guelph, Guelph, ON, Canada.

Department of Animal Science, Iowa State University, Ames, IA, United States.

出版信息

J Nutr Sci. 2023 May 29;12:e62. doi: 10.1017/jns.2023.44. eCollection 2023.

DOI:10.1017/jns.2023.44
PMID:37313346
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10260335/
Abstract

The present study aimed to develop an isotope protocol to achieve equilibrium of CO in breath of cats during carbon oxidation studies using L-[1-C]-Phenylalanine (L-[1-C]-Phe), provided orally in repeated meals. One adult male cat was used in two experiments. In each experiment, three isotope protocols were tested in triplicate using the same cat. During carbon oxidation study days, the cat was offered thirteen small meals to achieve and maintain a physiological fed state. In experiment 1, the isotope protocols tested (A, B and C) had a similar priming dose of NaHCO (0⋅176 mg/kg; offered in meal 6), but different priming [4⋅8 mg/kg (A) or 9⋅4 mg/kg (B and C); provided in meal 6] and constant [1⋅04 mg/kg (A and B) or 2⋅4 mg/kg (C); offered in meals 6-13] doses of L-[1-C]-Phe. In experiment 2, the isotope protocols tested (D, E and F) had similar priming (4⋅8 mg/kg; provided in meal 5) and constant (1⋅04 mg/kg; provided in meals 5-13) doses of L-[1-C]-Phe, but increasing priming doses of NaHCO (D: 0⋅264, E: 0⋅352, F: 0⋅44 mg/kg; provided in meal 4). Breath samples were collected using respiration chambers (25-min intervals) and CO trapping to determine CO:CO. Isotopic steady state was defined as the enrichment of CO, above background samples, remaining constant in at least the last three samples. Treatment F resulted in the earliest achievement of CO steady state in the cat's breath. This feeding and isotope protocol can be used in future studies aiming to study amino acid metabolism in cats.

摘要

本研究旨在开发一种同位素方案,以在使用 L-[1-C]-苯丙氨酸(L-[1-C]-Phe)经口重复给予多次膳食的情况下,实现猫呼吸中 CO 的平衡。一只成年雄性猫用于两项实验。在每项实验中,同一只猫重复三次测试三种同位素方案。在碳氧化研究日,猫接受十三次小餐以达到并维持生理饱食状态。在实验 1 中,测试的同位素方案(A、B 和 C)具有相似的 NaHCO3 启动剂量(0⋅176 mg/kg;在第 6 餐中提供),但启动剂量[4⋅8 mg/kg(A)或 9⋅4 mg/kg(B 和 C);在第 6 餐中提供]和恒量[1⋅04 mg/kg(A 和 B)或 2⋅4 mg/kg(C);在第 6-13 餐中提供]的 L-[1-C]-Phe 不同。在实验 2 中,测试的同位素方案(D、E 和 F)具有相似的启动(4⋅8 mg/kg;在第 5 餐中提供)和恒量(1⋅04 mg/kg;在第 5-13 餐中提供)的 L-[1-C]-Phe,但 NaHCO3 的启动剂量增加(D:0⋅264,E:0⋅352,F:0⋅44 mg/kg;在第 4 餐中提供)。使用呼吸室(25 分钟间隔)和 CO 捕集收集呼吸样本,以确定 CO:CO。同位素稳态定义为 CO 丰度高于背景样本,并且在至少最后三个样本中保持恒定。处理 F 导致猫呼吸中 CO 稳态最早达到。这种喂养和同位素方案可用于未来研究猫氨基酸代谢的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/590f/10260335/97b5159a6d81/S2048679023000447_fig3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/590f/10260335/97b5159a6d81/S2048679023000447_fig3.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/590f/10260335/97b5159a6d81/S2048679023000447_fig3.jpg

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