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铁、铜和锌的稳态:生理学、病理生理学及纳米介导的应用

Iron, Copper, and Zinc Homeostasis: Physiology, Physiopathology, and Nanomediated Applications.

作者信息

Szabo Robert, Bodolea Constantin, Mocan Teodora

机构信息

Physiology Department, "Iuliu Hatieganu" University of Medicine and Pharmacy, 400000 Cluj-Napoca, Romania.

Clinical County Emergency Hospital, 400000 Cluj-Napoca, Romania.

出版信息

Nanomaterials (Basel). 2021 Nov 4;11(11):2958. doi: 10.3390/nano11112958.

Abstract

Understanding of how the human organism functions has preoccupied researchers in medicine for a very long time. While most of the mechanisms are well understood and detailed thoroughly, medicine has yet much to discover. Iron (Fe), Copper (Cu), and Zinc (Zn) are elements on which organisms, ranging from simple bacteria all the way to complex ones such as mammals, rely on these divalent ions. Compounded by the continuously evolving biotechnologies, these ions are still relevant today. This review article aims at recapping the mechanisms involved in Fe, Cu, and Zn homeostasis. By applying the knowledge and expanding on future research areas, this article aims to shine new light of existing illness. Thanks to the expanding field of nanotechnology, genetic disorders such as hemochromatosis and thalassemia can be managed today. Nanoparticles (NPs) improve delivery of ions and confer targeting capabilities, with the potential for use in treatment and diagnosis. Iron deficiency, cancer, and sepsis are persisting major issues. While targeted delivery using Fe NPs can be used as food fortifiers, chemotherapeutic agents against cancer cells and microbes have been developed using both Fe and Cu NPs. A fast and accurate means of diagnosis is a major impacting factor on outcome of patients, especially when critically ill. Good quality imaging and bed side diagnostic tools are possible using NPs, which may positively impact outcome.

摘要

很长一段时间以来,医学研究人员一直致力于了解人体机能的运作方式。虽然大多数机制已被充分理解并得到详尽阐述,但医学仍有许多有待发现之处。铁(Fe)、铜(Cu)和锌(Zn)是从简单细菌到哺乳动物等复杂生物都依赖的二价离子元素。随着生物技术的不断发展,这些离子如今仍然具有重要意义。这篇综述文章旨在概述铁、铜和锌稳态所涉及的机制。通过应用这些知识并拓展未来的研究领域,本文旨在为现有疾病带来新的启示。得益于纳米技术领域的不断拓展,如今可以对血色素沉着症和地中海贫血等遗传性疾病进行治疗。纳米颗粒(NPs)改善了离子的递送并赋予靶向能力,具有用于治疗和诊断的潜力。缺铁、癌症和败血症仍然是主要问题。虽然使用铁纳米颗粒进行靶向递送可作为食品强化剂,但已经开发出使用铁和铜纳米颗粒作为针对癌细胞和微生物的化疗药物。快速准确的诊断手段是影响患者治疗结果的主要因素,尤其是在患者病情危急时。使用纳米颗粒可以实现高质量成像和床边诊断工具,这可能对治疗结果产生积极影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b83a/8620808/6e46ec1fa988/nanomaterials-11-02958-g001.jpg

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