Research progress in ceruloplasmin regulation of lipid metabolism homeostasis

Ceruloplasmin (Cp) is a crucial protein secreted by the liver and plays a vital role in regulating the distribution and transport of copper throughout the body, thereby maintaining copper homeostasis. Additionally, Cp functions as a significant enzyme known as ferroxidase, which is involved in iron...

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Main Authors: JIANG Quanxin, CHEN Suzhen, LIU Junli
Format: Article
Language:zho
Published: Editorial Office of Journal of Shanghai Jiao Tong University (Medical Science) 2024-01-01
Series:Shanghai Jiaotong Daxue xuebao. Yixue ban
Subjects:
Online Access:https://xuebao.shsmu.edu.cn/CN/10.3969/j.issn.1674-8115.2024.01.014
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author JIANG Quanxin
CHEN Suzhen
LIU Junli
author_facet JIANG Quanxin
CHEN Suzhen
LIU Junli
author_sort JIANG Quanxin
collection DOAJ
description Ceruloplasmin (Cp) is a crucial protein secreted by the liver and plays a vital role in regulating the distribution and transport of copper throughout the body, thereby maintaining copper homeostasis. Additionally, Cp functions as a significant enzyme known as ferroxidase, which is involved in iron metabolism within the body. Numerous studies have suggested a close relationship between Cp and metabolic disorders, such as diabetes and cardiovascular diseases. Recent research has also shed light on the involvement of Cp in the regulation of lipid metabolism. The various activities associated with lipid metabolism, including lipid synthesis, adipose hydrolysis, fatty acid oxidation, lipid transport, and absorption, collectively contribute to maintaining lipid homeostasis. Dysregulation of lipid metabolism can lead to metabolic disorders and cardiovascular complications. Cp regulates lipid metabolism through two main mechanisms. Firstly, Cp participates in the regulation of oxidative stress by modulating iron metabolism through its ferroxidase activity and involvement in redox reaction. Secondly, copper along with copper-dependent enzymes directly participates in the processes such as cholesterol metabolism, lipoprotein metabolism, and fatty acid synthesis. As a result, the role of Cp in maintaining the homeostasis of copper and iron allows it to regulate lipid metabolism by influencing copper or iron-dependent enzymes and related pathways. Although the correlation between Cp and lipid metabolism has been identified, an in-depth exploration of the precise mechanisms by which Cp governs lipid metabolism is warranted. This article provides an overview of the role of Cp in lipid metabolism and highlights the progress in related research, with the aim of providing new insights for the development and treatment of disorders related to lipid metabolism.
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spelling doaj.art-19b85a7db06546cd8d756870ed23b3f82024-03-05T05:38:19ZzhoEditorial Office of Journal of Shanghai Jiao Tong University (Medical Science)Shanghai Jiaotong Daxue xuebao. Yixue ban1674-81152024-01-0144112413010.3969/j.issn.1674-8115.2024.01.0141674-8115(2024)01-0124-07Research progress in ceruloplasmin regulation of lipid metabolism homeostasisJIANG QuanxinCHEN SuzhenLIU JunliCeruloplasmin (Cp) is a crucial protein secreted by the liver and plays a vital role in regulating the distribution and transport of copper throughout the body, thereby maintaining copper homeostasis. Additionally, Cp functions as a significant enzyme known as ferroxidase, which is involved in iron metabolism within the body. Numerous studies have suggested a close relationship between Cp and metabolic disorders, such as diabetes and cardiovascular diseases. Recent research has also shed light on the involvement of Cp in the regulation of lipid metabolism. The various activities associated with lipid metabolism, including lipid synthesis, adipose hydrolysis, fatty acid oxidation, lipid transport, and absorption, collectively contribute to maintaining lipid homeostasis. Dysregulation of lipid metabolism can lead to metabolic disorders and cardiovascular complications. Cp regulates lipid metabolism through two main mechanisms. Firstly, Cp participates in the regulation of oxidative stress by modulating iron metabolism through its ferroxidase activity and involvement in redox reaction. Secondly, copper along with copper-dependent enzymes directly participates in the processes such as cholesterol metabolism, lipoprotein metabolism, and fatty acid synthesis. As a result, the role of Cp in maintaining the homeostasis of copper and iron allows it to regulate lipid metabolism by influencing copper or iron-dependent enzymes and related pathways. Although the correlation between Cp and lipid metabolism has been identified, an in-depth exploration of the precise mechanisms by which Cp governs lipid metabolism is warranted. This article provides an overview of the role of Cp in lipid metabolism and highlights the progress in related research, with the aim of providing new insights for the development and treatment of disorders related to lipid metabolism.https://xuebao.shsmu.edu.cn/CN/10.3969/j.issn.1674-8115.2024.01.014ceruloplasmincopper homeostasisiron homeostasislipid metabolismmetabolic disease
spellingShingle JIANG Quanxin
CHEN Suzhen
LIU Junli
Research progress in ceruloplasmin regulation of lipid metabolism homeostasis
Shanghai Jiaotong Daxue xuebao. Yixue ban
ceruloplasmin
copper homeostasis
iron homeostasis
lipid metabolism
metabolic disease
title Research progress in ceruloplasmin regulation of lipid metabolism homeostasis
title_full Research progress in ceruloplasmin regulation of lipid metabolism homeostasis
title_fullStr Research progress in ceruloplasmin regulation of lipid metabolism homeostasis
title_full_unstemmed Research progress in ceruloplasmin regulation of lipid metabolism homeostasis
title_short Research progress in ceruloplasmin regulation of lipid metabolism homeostasis
title_sort research progress in ceruloplasmin regulation of lipid metabolism homeostasis
topic ceruloplasmin
copper homeostasis
iron homeostasis
lipid metabolism
metabolic disease
url https://xuebao.shsmu.edu.cn/CN/10.3969/j.issn.1674-8115.2024.01.014
work_keys_str_mv AT jiangquanxin researchprogressinceruloplasminregulationoflipidmetabolismhomeostasis
AT chensuzhen researchprogressinceruloplasminregulationoflipidmetabolismhomeostasis
AT liujunli researchprogressinceruloplasminregulationoflipidmetabolismhomeostasis