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“外泌体组学”——以外泌体的生物物理学、生物学和生物化学为重点,特别关注人乳的综述

"Exosomics"-A Review of Biophysics, Biology and Biochemistry of Exosomes With a Focus on Human Breast Milk.

作者信息

de la Torre Gomez Carolina, Goreham Renee V, Bech Serra Joan J, Nann Thomas, Kussmann Martin

机构信息

Proteomics Unit, Bellvitge Biomedical Research Institute, Barcelona, Spain.

MacDiarmid Institute for Advanced Materials and Nanotechnology, Victoria University of Wellington, Wellington, New Zealand.

出版信息

Front Genet. 2018 Mar 27;9:92. doi: 10.3389/fgene.2018.00092. eCollection 2018.

Abstract

Exosomes are biomolecular nanostructures released from cells. They carry specific biomolecular information and are mainly researched for their exquisite properties as a biomarker source and delivery system. We introduce exosomes in the context of other extracellular vesicles, describe their biophysical isolation and characterisation and discuss their biochemical profiling. Motivated by our interest in early-life nutrition and health, and corresponding studies enrolling lactating mothers and their infants, we zoom into exosomes derived from human breast milk. We argue that these should be more extensively studied at proteomic and micronutrient profiling level, because breast milk exosomes provide a more specific window into breast milk quality from an immunological (proteomics) and nutritional (micronutrient) perspective. Such enhanced breast milk exosome profiling would thereby complement and enrich the more classical whole breast milk analysis and is expected to deliver more functional insights than the rather descriptive analysis of human milk, or larger fractions thereof, such as milk fat globule membrane. We substantiate our arguments by a bioinformatic analysis of two published proteomic data sets of human breast milk exosomes.

摘要

外泌体是细胞释放的生物分子纳米结构。它们携带特定的生物分子信息,主要因其作为生物标志物来源和递送系统的优良特性而受到研究。我们在其他细胞外囊泡的背景下介绍外泌体,描述它们的生物物理分离和表征,并讨论它们的生化分析。出于我们对早期营养与健康的兴趣,以及对招募哺乳期母亲及其婴儿的相关研究的关注,我们聚焦于源自人母乳的外泌体。我们认为,应在蛋白质组学和微量营养素分析层面对外泌体进行更广泛的研究,因为从免疫学(蛋白质组学)和营养(微量营养素)角度来看,母乳外泌体为了解母乳质量提供了一个更具特异性的窗口。这种对母乳外泌体的强化分析将因此补充和丰富更为经典的全母乳分析,并且预计能比相对描述性的人乳或其较大部分(如乳脂肪球膜)分析提供更多功能性见解。我们通过对两个已发表的人母乳外泌体蛋白质组学数据集的生物信息学分析来证实我们的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dbb/5881086/c634fb36b569/fgene-09-00092-g0001.jpg

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