Literature DB >> 32124711

Functional differences between l- and d-carnitine in metabolic regulation evaluated using a low-carnitine Nile tilapia model.

Jia-Min Li1, Ling-Yu Li1, Yu-Xue Zhang1, Zhe-Yue Jiang1, Samwel M Limbu1,2, Fang Qiao1, Pascal Degrace3, Li-Qiao Chen1, Mei-Ling Zhang1, Zhen-Yu Du1.   

Abstract

l-Carnitine is essential for mitochondrial β-oxidation and has been used as a lipid-lowering feed additive in humans and farmed animals. d-Carnitine is an optical isomer of l-carnitine and dl-carnitine has been widely used in animal feeds. However, the functional differences between l- and d-carnitine are difficult to study because of the endogenous l-carnitine background. In the present study, we developed a low-carnitine Nile tilapia model by treating fish with a carnitine synthesis inhibitor, and used this model to investigate the functional differences between l- and d-carnitine in nutrient metabolism in fish. l- or d-carnitine (0·4 g/kg diet) was fed to the low-carnitine tilapia for 6 weeks. l-Carnitine feeding increased the acyl-carnitine concentration from 3522 to 10 822 ng/g and alleviated the lipid deposition from 15·89 to 11·97 % in the liver of low-carnitine tilapia. However, as compared with l-carnitine group, d-carnitine feeding reduced the acyl-carnitine concentration from 10 822 to 5482 ng/g, and increased lipid deposition from 11·97 to 20·21 % and the mRNA expression of the genes involved in β-oxidation and detoxification in the liver. d-Carnitine feeding also induced hepatic inflammation, oxidative stress and apoptosis. A metabolomic investigation further showed that d-carnitine feeding increased glycolysis, protein metabolism and activity of the tricarboxylic acid cycle and oxidative phosphorylation. Thus, l-carnitine can be physiologically utilised in fish, whereas d-carnitine is metabolised as a xenobiotic and induces lipotoxicity. d-Carnitine-fed fish demonstrates increases in peroxisomal β-oxidation, glycolysis and amino acid degradation to maintain energy homeostasis. Therefore, d-carnitine is not recommended for use in farmed animals.

Entities:  

Keywords:  Low-carnitine tilapia; Metabolic regulation; Nutrient metabolism; d-Carnitine; l-Carnitine

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Substances:

Year:  2019        PMID: 32124711     DOI: 10.1017/S000711451900148X

Source DB:  PubMed          Journal:  Br J Nutr        ISSN: 0007-1145            Impact factor:   3.718


  5 in total

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Authors:  Yan Chen; Yang Liu; Yucen Bai; Shaogang Xu; Xiaofei Yang; Bo Cheng
Journal:  Fish Physiol Biochem       Date:  2022-09-28       Impact factor: 3.014

2.  L-Carnitine Production Through Biosensor-Guided Construction of the Neurospora crassa Biosynthesis Pathway in Escherichia coli.

Authors:  Pierre Kugler; Marika Trumm; Marcel Frese; Volker F Wendisch
Journal:  Front Bioeng Biotechnol       Date:  2021-04-16

3.  A machine-learning approach for predicting the effect of carnitine supplementation on body weight in patients with polycystic ovary syndrome.

Authors:  Dong-Dong Wang; Ya-Feng Li; Yi-Zhen Mao; Su-Mei He; Ping Zhu; Qun-Li Wei
Journal:  Front Nutr       Date:  2022-08-10

4.  Improved liver lipid catabolism and utilization in growth hormone transgenic common carp (Cyprinus carpio L.) through enhanced lipolytic and fatty acid β-oxidation pathways.

Authors:  Yunya Wu; Rui Li; Xingxing Wu; Wei Guo; Yongming Li; Yanlong Song; Binbin Tao; Ji Chen; Dong Han; Shouqi Xie; Yaping Wang; Zuoyan Zhu; Wei Hu
Journal:  Front Endocrinol (Lausanne)       Date:  2022-09-12       Impact factor: 6.055

5.  Carnitine is a pharmacological allosteric chaperone of the human lysosomal α-glucosidase.

Authors:  Roberta Iacono; Nadia Minopoli; Maria Carmina Ferrara; Antonietta Tarallo; Carla Damiano; Caterina Porto; Sandra Strollo; Véronique Roig-Zamboni; Gianfranco Peluso; Gerlind Sulzenbacher; Beatrice Cobucci-Ponzano; Giancarlo Parenti; Marco Moracci
Journal:  J Enzyme Inhib Med Chem       Date:  2021-12       Impact factor: 5.051

  5 in total

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