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来自古菌的醚脂在纳米药物递送和疫苗接种中的应用。

Ether lipids from archaeas in nano-drug delivery and vaccination.

作者信息

Romero Eder Lilia, Morilla Maria Jose

机构信息

Nanomedicines Research and Development Centre (NARD), Science and Technology Department, National University of Quilmes, Roque Sáenz Peña 352, Bernal, Buenos Aires, Argentina.

Nanomedicines Research and Development Centre (NARD), Science and Technology Department, National University of Quilmes, Roque Sáenz Peña 352, Bernal, Buenos Aires, Argentina.

出版信息

Int J Pharm. 2023 Mar 5;634:122632. doi: 10.1016/j.ijpharm.2023.122632. Epub 2023 Jan 21.


DOI:10.1016/j.ijpharm.2023.122632
PMID:36690132
Abstract

Archaea are microorganisms more closely related to eukaryotes than bacteria. Almost 50 years after being defined as a new domain of life on earth, new species continue to be discovered and their phylogeny organized. The study of the relationship between their genetics and metabolism and some of their extreme habitats has even positioned them as a model of extraterrestrial life forms. Archaea, however, are deeply connected to the life of our planet: they can be found in arid, acidic, warm areas; on most of the earth's surface, which is cold (below 5 °C), playing a prominent role in the cycles of organic materials on a global scale and they are even part of our microbiota. The constituent materials of these microorganisms differ radically from those produced by eukaryotes and bacteria, and the nanoparticles that can be manufactured using their ether lipids as building blocks exhibit unique properties that are of interest in nanomedicine. Here, we present for the first time a complete overview of the pre-clinical applications of nanomedicines based on ether archaea lipids, focused on drug delivery and adjuvancy over the last 25 years, along with a discussion on their pros, cons and their future industrial implementation.

摘要

古菌是一类与真核生物的关系比细菌更为密切的微生物。在被定义为地球上生命的一个新领域近50年后,新的古菌物种仍在不断被发现,其系统发育也在持续梳理。对其遗传学与新陈代谢之间关系以及部分极端栖息地的研究,甚至使它们成为外星生命形式的一种模型。然而,古菌与我们地球的生命紧密相连:在干旱、酸性、温暖的地区能够发现它们;在地球大部分寒冷(低于5摄氏度)的表面,它们在全球范围内的有机物质循环中发挥着重要作用,甚至还是我们微生物群的一部分。这些微生物的组成物质与真核生物和细菌产生的物质截然不同,利用其醚脂作为构建单元制造的纳米颗粒具有独特的性质,在纳米医学领域颇受关注。在此,我们首次全面概述了基于古菌醚脂的纳米药物的临床前应用,重点介绍了过去25年里其在药物递送和佐剂方面的应用,同时讨论了它们的优缺点以及未来的工业应用前景。

相似文献

[1]
Ether lipids from archaeas in nano-drug delivery and vaccination.

Int J Pharm. 2023-3-5

[2]
Archaeobacterial ether lipid liposomes (archaeosomes) as novel vaccine and drug delivery systems.

Crit Rev Biotechnol. 1999

[3]
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ACS Omega. 2022-12-28

[4]
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Eur J Pharm Biopharm. 2024-4

[5]
New generation of liposomes called archaeosomes based on natural or synthetic archaeal lipids as innovative formulations for drug delivery.

Recent Pat Drug Deliv Formul. 2009-11

[6]
Dominance of mixed ether/ester, intact polar membrane lipids in five species of the order Rubrobacterales: Another group of bacteria not obeying the "lipid divide".

Syst Appl Microbiol. 2023-4

[7]
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[8]
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[9]
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[10]
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引用本文的文献

[1]
Biogenesis of DNA-carrying extracellular vesicles by the dominant human gut methanogenic archaeon.

Nat Commun. 2025-6-3

[2]
Nebulized Hybrid Nanoarchaeosomes: Anti-Inflammatory Activity, Anti-Microbial Activity and Cytotoxicity on A549 Cells.

Int J Mol Sci. 2025-1-4

[3]
Archaeosomes for Oral Drug Delivery: From Continuous Microfluidics Production to Powdered Formulations.

Pharmaceutics. 2024-5-23

[4]
Microbial communities in the Dead Sea and their potential biotechnological applications.

Commun Integr Biol. 2024-6-23

[5]
Cholesterol nanoarchaeosomes for alendronate targeted delivery as an anti-endothelial dysfunction agent.

Beilstein J Nanotechnol. 2024-5-13

[6]
Tetraether archaeal lipids promote long-term survival in extreme conditions.

Mol Microbiol. 2024-5

[7]
More Than Pigments: The Potential of Astaxanthin and Bacterioruberin-Based Nanomedicines.

Pharmaceutics. 2023-6-26

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