Taurine Supplementation for 48-Months Improved Glucose Tolerance and Changed ATP-Related Enzymes in Avians.

IF 2.9 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Pharmacology Pub Date : 2023-01-01 Epub Date: 2023-09-13 DOI:10.1159/000533538
Lorenz S Neuwirth, Nurper Gökhan, Sarrah Kaye, Edward F Meehan
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引用次数: 0

Abstract

Avians differ from mammals, especially in brain architecture and metabolism. Taurine, an amino acid basic to metabolism and bioenergetics, has been shown to have remarkable effects on metabolic syndrome and ameliorating oxidative stress reactions across species. However, less is known regarding these metabolic relationships in the avian model. The present study serves as a preliminary report that examined how taurine might affect avian metabolism in an aged model system. Two groups of pigeons (Columba livia) of mixed sex, a control group and a group that received 48 months of taurine supplementation (0.05% w/v) in their drinking water, were compared by using blood panels drawn from their basilic vein by a licensed veterinarian. From the blood panel data, taurine treatment generated higher levels of three ATP-related enzymes: glutamate dehydrogenase (GLDH), lactate dehydrogenase (LDH), and creatine kinase (CK). In this preliminary study, the role that taurine treatment might play in the adult aged pigeon's metabolism on conserved traits such as augmenting insulin production as well as non-conserved traits maintaining high levels of ATP-related enzymes was examined. It was found that taurine treatment influenced the avian glucose metabolism similar to mammals but differentially effected avian ATP-related enzymes in a unique way (i.e., ∼×2 increase in CK and LDH with a nearly ×4 increase in GLDH). Notably, long-term supplementation with taurine had no negative effect on parameters of lipid and protein metabolism nor liver enzymes. The preliminary study suggests that avians may serve as a unique model system for investigating taurine metabolism across aging with long-term health implications (e.g., hyperinsulinemia). However, the suitability of using the model would require researchers to tightly control for age, sex, dietary intake, and exercise conditions as laboratory-housed avian present with very different metabolic panels than free-flight avians, and their metabolic profile may not correlate one-to-one with mammalian data.

补充牛磺酸48个月改善了Avians的葡萄糖耐量并改变了ATP相关酶。
鸟类与哺乳动物不同,尤其是在大脑结构和新陈代谢方面。牛磺酸是代谢和生物能量学的基础氨基酸,已被证明对代谢综合征和改善不同物种的氧化应激反应具有显著作用。然而,在鸟类模型中,对这些代谢关系知之甚少。本研究是一份初步报告,研究了牛磺酸如何影响衰老模型系统中的鸟类代谢。两组混合性别的鸽子(Columba livia),一组是对照组,另一组在饮用水中补充了48个月的牛磺酸(0.05%w/v),通过使用持牌兽医从其罗勒静脉抽取的血液样本进行比较。根据血液组数据,牛磺酸治疗产生了更高水平的三种ATP相关酶:谷氨酸脱氢酶(GLDH)、乳酸脱氢酶(LDH)和肌酸激酶(CK)。在这项初步研究中,研究了牛磺酸处理可能在成年鸽子的保守性状代谢中发挥的作用,如增加胰岛素的产生,以及维持高水平ATP相关酶的非保守性状。研究发现,牛磺酸处理对禽类葡萄糖代谢的影响与哺乳动物相似,但对禽类ATP相关酶的影响不同(即CK和LDH增加~×2,GLDH增加近×4)。值得注意的是,长期补充牛磺酸对脂质和蛋白质代谢参数以及肝酶没有负面影响。初步研究表明,鸟类可能是一个独特的模型系统,用于研究牛磺酸在衰老过程中的代谢,并对健康产生长期影响(如高胰岛素血症)。然而,使用该模型的适用性需要研究人员严格控制年龄、性别、饮食摄入和运动条件,因为实验室饲养的鸟类与自由飞行的鸟类具有非常不同的代谢组,并且它们的代谢谱可能与哺乳动物数据不一一相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Pharmacology
Pharmacology 医学-药学
CiteScore
5.60
自引率
0.00%
发文量
52
审稿时长
6-12 weeks
期刊介绍: ''Pharmacology'' is an international forum to present and discuss current perspectives in drug research. The journal communicates research in basic and clinical pharmacology and related fields. It covers biochemical pharmacology, molecular pharmacology, immunopharmacology, drug metabolism, pharmacogenetics, analytical toxicology, neuropsychopharmacology, pharmacokinetics and clinical pharmacology. In addition to original papers and short communications of investigative findings and pharmacological profiles the journal contains reviews, comments and perspective notes; research communications of novel therapeutic agents are encouraged.
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