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本文引用的文献

1
Purified horse milk exosomes contain an unpredictable small number of major proteins.纯化的马奶外泌体含有数量不可预测的少量主要蛋白质。
Biochim Open. 2017 Mar 1;4:61-72. doi: 10.1016/j.biopen.2017.02.004. eCollection 2017 Jun.
2
Shedding light on the cell biology of extracellular vesicles.揭示细胞外囊泡的细胞生物学。
Nat Rev Mol Cell Biol. 2018 Apr;19(4):213-228. doi: 10.1038/nrm.2017.125. Epub 2018 Jan 17.
3
A novel community driven software for functional enrichment analysis of extracellular vesicles data.一种新型的由社区驱动的用于细胞外囊泡数据功能富集分析的软件。
J Extracell Vesicles. 2017 May 26;6(1):1321455. doi: 10.1080/20013078.2017.1321455. eCollection 2017.
4
Human milk exosomes and their microRNAs survive digestion in vitro and are taken up by human intestinal cells.人乳外泌体及其 microRNAs 可在体外消化中存活,并被人肠道细胞摄取。
Mol Nutr Food Res. 2017 Nov;61(11). doi: 10.1002/mnfr.201700082. Epub 2017 Aug 15.
5
Characterization and biological function of milk-derived miRNAs.乳源 miRNAs 的特征和生物学功能。
Mol Nutr Food Res. 2017 Oct;61(10). doi: 10.1002/mnfr.201700009. Epub 2017 Jul 31.
6
Exosomal microRNAs in giant panda (Ailuropoda melanoleuca) breast milk: potential maternal regulators for the development of newborn cubs.大熊猫(Ailuropoda melanoleuca)母乳中的外泌体 microRNAs:新生幼仔发育的潜在母体调节因子。
Sci Rep. 2017 Jun 14;7(1):3507. doi: 10.1038/s41598-017-03707-8.
7
Pellet-free isolation of human and bovine milk extracellular vesicles by size-exclusion chromatography.通过尺寸排阻色谱法无颗粒分离人乳和牛乳细胞外囊泡。
J Extracell Vesicles. 2017 Mar 15;6(1):1294340. doi: 10.1080/20013078.2017.1294340. eCollection 2017.
8
EV-TRACK: transparent reporting and centralizing knowledge in extracellular vesicle research.EV-TRACK:在细胞外囊泡研究中透明报告和集中知识。
Nat Methods. 2017 Feb 28;14(3):228-232. doi: 10.1038/nmeth.4185.
9
Breast milk-derived exosomes promote intestinal epithelial cell growth.母乳来源的外泌体促进肠道上皮细胞生长。
J Pediatr Surg. 2017 May;52(5):755-759. doi: 10.1016/j.jpedsurg.2017.01.032. Epub 2017 Jan 29.
10
Commercial Dairy Cow Milk microRNAs Resist Digestion under Simulated Gastrointestinal Tract Conditions.商业化奶牛乳中的微小RNA在模拟胃肠道条件下抵抗消化。
J Nutr. 2016 Nov;146(11):2206-2215. doi: 10.3945/jn.116.237651. Epub 2016 Oct 5.

乳汁来源的细胞外囊泡中大量存在的微小RNA在哺乳动物之间是保守的。

Abundantly Present miRNAs in Milk-Derived Extracellular Vesicles Are Conserved Between Mammals.

作者信息

van Herwijnen Martijn J C, Driedonks Tom A P, Snoek Basten L, Kroon A M Theresa, Kleinjan Marije, Jorritsma Ruurd, Pieterse Corné M J, Hoen Esther N M Nolte-'t, Wauben Marca H M

机构信息

Department of Biochemistry and Cell Biology, Faculty of Veterinary Medicine Utrecht University, Utrecht, Netherlands.

Theoretical Biology and Bioinformatics, Department of Biology, Science4Life Utrecht University, Utrecht, Netherlands.

出版信息

Front Nutr. 2018 Sep 18;5:81. doi: 10.3389/fnut.2018.00081. eCollection 2018.

DOI:10.3389/fnut.2018.00081
PMID:30280098
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6153340/
Abstract

Mammalian milk is not only a source of nutrition for the newborn, but also contains various components that regulate further development. For instance, milk is an abundant source of microRNAs (miRNAs), which are evolutionary conserved small non-coding RNAs that are involved in post-transcriptional regulation of target mRNA. MiRNAs present in milk can occur in extracellular vesicles (EVs), which are nanosized membrane vesicles released by many cell types as a means of intercellular communication. The membrane of EVs protects enclosed miRNAs from degradation and harbors molecules that allow specific targeting to recipient cells. Although several studies have investigated the miRNA content in milk EVs from individual species, little is known about the evolutionary conserved nature of EV-associated miRNAs among different species. In this study, we profiled the miRNA content of purified EVs from human and porcine milk. These data were compared to published studies on EVs from human, cow, porcine, and panda milk to assess the overlap in the top 20 most abundant miRNAs. Interestingly, several abundant miRNAs were shared between species (e.g., let-7 family members let-7a, let-7b, let-7f, and miR-148a). Moreover, these miRNAs have been implicated in immune-related functions and regulation of cell growth and signal transduction. The conservation of these miRNA among species, not only in their sequence homology, but also in their incorporation in milk EVs of several species, suggests that they are evolutionarily selected to regulate cell function in the newborn.

摘要

哺乳动物的乳汁不仅是新生儿的营养来源,还含有多种调节进一步发育的成分。例如,乳汁是微小RNA(miRNA)的丰富来源,miRNA是进化上保守的小非编码RNA,参与靶mRNA的转录后调控。乳汁中存在的miRNA可以存在于细胞外囊泡(EV)中,EV是由许多细胞类型释放的纳米级膜囊泡,作为细胞间通讯的一种方式。EV的膜保护包裹的miRNA不被降解,并含有允许特异性靶向受体细胞的分子。尽管有几项研究调查了单个物种乳汁EV中的miRNA含量,但对于不同物种间与EV相关的miRNA的进化保守性质知之甚少。在本研究中,我们分析了人乳和猪乳中纯化EV的miRNA含量。将这些数据与已发表的关于人、牛、猪和熊猫乳汁中EV的研究进行比较,以评估前20种最丰富的miRNA的重叠情况。有趣的是,几个物种之间共享几种丰富的miRNA(例如,let-7家族成员let-7a、let-7b、let-7f和miR-148a)。此外,这些miRNA与免疫相关功能以及细胞生长和信号转导的调节有关。这些miRNA在物种间的保守性,不仅体现在它们的序列同源性上,还体现在它们在几种物种的乳汁EV中的存在,这表明它们是经过进化选择来调节新生儿的细胞功能的。