外泌体之家 | 细胞外膜泡领域核心平台—exosomes & microvesicles—小膜泡大作用

标题: 【J CLIN INVEST--IF:13.215】同时发布的11篇胞外囊泡综述 [打印本页]

作者: hzangs    时间: 2016-4-4 17:50
标题: 【J CLIN INVEST--IF:13.215】同时发布的11篇胞外囊泡综述
本帖最后由 hzangs 于 2016-8-8 20:08 编辑

1.       Extracellular vesicle isolation andcharacterization: toward clinical application.
胞外囊泡分离和定性:面向临床的应用前瞻。
AbstractTwo broad categories of extracellularvesicles (EVs), exosomes and shed microvesicles (sMVs), which differ in sizedistribution as well as protein and RNA profiles, have been described. EVs areknown to play key roles in cell-cell communication, acting proximally as wellas systemically. This Review discusses the nature of EV subtypes, strategiesfor isolating EVs from both cell-culture media and body fluids, and proceduresfor quantifying EVs. We also discuss proteins selectively enriched in exosomesand sMVs that have the potential for use as markers to discriminate between EVsubtypes, as well as various applications of EVs in clinical diagnosis.
Pubmedhttp://www.ncbi.nlm.nih.gov/pubmed/?term=27035807
2.       The biology and function of exosomes incancer.
外泌体在癌症中的生物功能。
AbstractHumans circulate quadrillions ofexosomes at all times. Exosomes are a class of extracellular vesicles releasedby all cells, with a size range of 40-150 nm and a lipid bilayer membrane.Exosomes contain DNA, RNA, and proteins. Exosomes likely remove excess and/orunnecessary constituents from the cells, functioning like garbage bags,although their precise physiological role remains unknown. Additionally,exosomes may mediate specific cell-to-cell communication and activate signalingpathways in cells they fuse or interact with. Exosomes are detected in thetumor microenvironment, and emerging evidence suggests that they play a role infacilitating tumorigenesis by regulating angiogenesis, immunity, andmetastasis. Circulating exosomes can be used as liquid biopsies and noninvasivebiomarkers for early detection, diagnosis, and treatment of cancer patients.
Pubmedhttp://www.ncbi.nlm.nih.gov/pubmed/?term=27035812
3.       Versatile roles of extracellularvesicles in cancer.
胞外囊泡在癌症中的多种功能。
AbstractNumerous studies have shown thatnon-cell-autonomous regulation of cancer cells is an important aspect oftumorigenesis. Cancer cells need to communicate with stromal cells by humoralfactors such as VEGF, FGFs, and Wnt in order to survive. Recently,extracellular vesicles (EVs) have also been shown to be involved in cell-cellcommunication between cancer cells and the surrounding microenvironment and tobe important for the development of cancer. In addition, these EVs containsmall noncoding RNAs, including microRNAs (miRNAs), which contribute to themalignancy of cancer cells. Here, we provide an overview of current research onEVs, especially miRNAs in EVs. We also propose strategies to treat cancers bytargeting EVs around cancer cells.
Pubmedhttp://www.ncbi.nlm.nih.gov/pubmed/?term=26974161
4.       Dendritic cell-derived exosomes forcancer therapy
树突状细胞来源的外泌体在癌症治疗中的作用。
AbstractDC-derived exosomes (Dex) arenanometer-sized membrane vesicles that are secreted by the sentinelantigen-presenting cells of the immune system: DCs. Like DCs, the molecularcomposition of Dex includes surface expression of functional MHC-peptidecomplexes, costimulatory molecules, and other components that interact withimmune cells. Dex have the potential to facilitate immune cell-dependent tumorrejection and have distinct advantages over cell-based immunotherapiesinvolving DCs. Accordingly, Dex-based phase I and II clinical trials have beenconducted in advanced malignancies, showing the feasibility and safety of theapproach, as well as the propensity of these nanovesicles to mediate T and NKcell-based immune responses in patients. This Review will evaluate the interactionsof Dex with immune cells, their clinical progress, and the future of Deximmunotherapy for cancer.
Pubmedhttp://www.ncbi.nlm.nih.gov/pubmed/?term=27035813
5.       Extracellular vesicles: masters ofintercellular communication and potential clinical interventions.
胞外囊泡:细胞间通讯的大师,临床治疗的潜在靶点.
AbstractIntercellular signaling viaextracellular vesicles (EVs) is an underappreciated modality of cell-cellcrosstalk that enables cells to convey packages of complex instructions tospecific recipient cells. EVs transmit these instructions through their cargoesof multiple proteins, nucleic acids, and specialized lipids, which are derivedfrom their cells of origin and allow for combinatorial effects upon recipientcells. This Review series brings together the recent progress in ourunderstanding of EV signaling in physiological and pathophysiologicalconditions, highlighting how certain EVs, particularly exosomes, can promote orregulate infections, host immune responses, development, and various diseases -notably cancer. Given the diverse nature of EVs and their abilities toprofoundly modulate host cells, this series puts particular emphasis on theclinical applications of EVs as therapeutics and as diagnostic biomarkers.
Pubmedhttp://www.ncbi.nlm.nih.gov/pubmed/?term=27035805
6.       Regulation of chronic inflammatory andimmune processes by extracellular vesicles.
胞外囊泡调节慢性炎症和免疫过程。
AbstractAlmost all cell types release extracellular vesicles(EVs), which are derived either from multivesicular bodies or from the plasmamembrane. EVs contain a subset of proteins, lipids, and nucleic acids from thecell from which they are derived. EV factors, particularly small RNAs such asmiRNAs, likely play important roles in cell-to-cell communication both locallyand systemically. Most of the functions associated with EVs are in theregulation of immune responses to pathogens and cancer, as well as inregulating autoimmunity. This Review will focus on the different modes ofimmune regulation, both direct and indirect, by EVs. The therapeutic utility ofEVs for the regulation of immune responses will also be discussed.
Pubmedhttp://www.ncbi.nlm.nih.gov/pubmed/?term=27035808
7.       Extracellular vesicles and infectiousdiseases: new complexity to an old story.
胞外囊泡与传染性疾病:老故事的新分支
AbstractExosomes and other extracellularmicrovesicles (ExMVs) have important functions in intercellular communicationand regulation. During the course of infection, these vesicles can conveypathogen molecules that serve as antigens or agonists of innate immunereceptors to induce host defense and immunity, or that serve as regulators ofhost defense and mediators of immune evasion. These molecules may includeproteins, nucleic acids, lipids, and carbohydrates. Pathogen molecules may bedisseminated by incorporation into vesicles that are created and shed by hostcells, or they may be incorporated into vesicles shed from microbial cells.Involvement of ExMVs in the induction of immunity and host defense iswidespread among many pathogens, whereas their involvement in immune evasionmechanisms is prominent among pathogens that establish chronic infection and isfound in some that cause acute infection. Because of their immunogenicity andenrichment of pathogen molecules, exosomes may also have potential in vaccinepreparations and as diagnostic markers. Additionally, the ability of exosomesto deliver molecules to recipient cells raises the possibility of their use fordrug/therapy delivery. Thus, ExMVs play a major role in the pathogenesis ofinfection and provide exciting potential for the development of noveldiagnostic and therapeutic approaches.
Pubmedhttp://www.ncbi.nlm.nih.gov/pubmed/?term=27035809
8.       Exosomes and tumor-mediated immunesuppression.
外泌体和肿瘤介导的免疫抑制。
AbstractTumor-derived exosomes (TEX) areharbingers of tumor-induced immune suppression: they carry immunosuppressivemolecules and factors known to interfere with immune cell functions. Bydelivering suppressive cargos consisting of proteins similar to those in parenttumor cells to immune cells, TEX directly or indirectly influence thedevelopment, maturation, and antitumor activities of immune cells. TEX alsodeliver genomic DNA, mRNA, and microRNAs to immune cells, thereby reprogrammingfunctions of responder cells to promote tumor progression. TEX carryingtumor-associated antigens can interfere with antitumor immunotherapies. TEXalso have the potential to serve as noninvasive biomarkers of tumorprogression. In the tumor microenvironment, TEX may be involved in operatingnumerous signaling pathways responsible for the downregulation of antitumorimmunity.
Pubmedhttp://www.ncbi.nlm.nih.gov/pubmed/?term=26927673
9.       Extracellular vesicles andintercellular communication within the nervous system.
神经系统中胞外囊泡参与细胞间通讯。
AbstractExtracellular vesicles (EVs, includingexosomes) are implicated in many aspects of nervous system development andfunction, including regulation of synaptic communication, synaptic strength,and nerve regeneration. They mediate the transfer of packets of information inthe form of nonsecreted proteins and DNA/RNA protected within a membranecompartment. EVs are essential for the packaging and transport of manycell-fate proteins during development as well as many neurotoxic misfoldedproteins during pathogenesis. This form of communication provides anotherdimension of cellular crosstalk, with the ability to assemble a "kit"of directional instructions made up of different molecular entities and addressit to specific recipient cells. This multidimensional form of communication hasspecial significance in the nervous system. How EVs help to orchestrate thewiring of the brain while allowing for plasticity associated with learning andmemory and contribute to regeneration and degeneration are all under investigation.Because they carry specific disease-related RNAs and proteins, practicalapplications of EVs include potential uses as biomarkers and therapeutics. ThisReview describes our current understanding of EVs and serves as a springboardfor future advances, which may reveal new important mechanisms by which EVs incoordinate brain and body function and dysfunction.
Pubmedhttp://www.ncbi.nlm.nih.gov/pubmed/?term=27035811
10.     Exosomes in stroke pathogenesis andtherapy.
外泌体与脑中风病理和治疗。
AbstractStroke is one of the leading causes ofdeath and disability worldwide. Stroke recovery is orchestrated by a set ofhighly interactive processes that involve the neurovascular unit and neuralstem cells. Emerging data suggest that exosomes play an important role in intercellularcommunication by transferring exosomal protein and RNA cargo between source andtarget cells in the brain. Here, we review these advances and their impact onpromoting coupled brain remodeling processes after stroke. The use of exosomesfor therapeutic applications in stroke is also highlighted.
Pubmedhttp://www.ncbi.nlm.nih.gov/pubmed/?term=27035810
11.     Prostasomes as a source of diagnosticbiomarkers for prostate cancer.
前列腺小体:前列腺癌诊断标志物筛选的新方向。
Abstract New biomarkers are needed to improvethe diagnosis of prostate cancer. Similarly to healthy cells, prostateepithelial cancer cells produce extracellular vesicles (prostasomes) that canbe isolated from seminal fluid, urine, and blood. Prostasomes containubiquitously expressed and prostate-specific membrane and cytosolic proteins,as well as RNA. Both quantitative and qualitative changes in protein, mRNA,long noncoding RNA, and microRNA composition of extracellular vesicles isolatedfrom prostate cancer patients have been reported. In general, however, theidentified extracellular vesicle-associated single-marker molecules orcombinations of marker molecules require confirmation in large cohorts ofpatients to validate their specificity and sensitivity as prostate cancermarkers. Complications include variable factors such as prostate manipulationand urine flux, as well as masking by ubiquitously expressed free molecules andextracellular vesicles from tissues other than the prostate. Herein, we proposethat the most promising methods include comprehensive combinational screeningfor (mutant) RNA in prostasomes that are immunoisolated with antibodiestargeting prostate-specific epitopes.
Pubmedhttp://www.ncbi.nlm.nih.gov/pubmed/?term=27035806

第一篇是关于外泌体分离方法对比的综述。里面涉及到了多种外泌体的分离方法对比和剖析,相信对以后外泌体分离方法的发展会有一定的影响,建议大家都了解一下。如有需要全文而又无法下载的,可以在后台联系我们或者到外泌体之家论坛索要,希望这些review对大家有所帮助!

如有需要全文,可在本帖下方回复。谢谢




作者: lucky7    时间: 2016-4-4 18:40
可以给我发一份吗 ?谢谢您!邮箱:yangnb01@163.com
作者: teehomyu    时间: 2016-4-4 18:53
楼主可以发一份吗?E-mail:yumingmingtmmu@gmail.com,谢谢!
作者: hzangs    时间: 2016-4-4 19:04
本帖最后由 hzangs 于 2016-5-26 21:17 编辑

11篇综述正文全部在这里。请按需要下载。
附件已隐藏,回复该贴可查看附件  ,

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附件已隐藏,回复该贴可查看附件  ,

附件已隐藏,回复该贴可查看附件  ,

附件已隐藏,回复该贴可查看附件  ,

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作者: hereissyk    时间: 2016-4-4 21:15
及时。。。
作者: hzangs    时间: 2016-4-4 21:17
hereissyk 发表于 2016-4-4 21:15
及时。。。

4月2号就JCI更新就推送到邮箱了。 休假没有看邮箱,今天才看到。 然后就赶紧分享给大家了。
作者: 旋转的尾音    时间: 2016-4-5 16:07
hzangs 发表于 2016-4-4 21:17
4月2号就JCI更新就推送到邮箱了。 休假没有看邮箱,今天才看到。 然后就赶紧分享给大家了。 ...

谢谢~!
作者: 胖子的心境    时间: 2016-4-6 10:41
楼主牛逼
作者: lwqooo    时间: 2016-4-6 10:51
谢楼主
作者: snowboar    时间: 2016-4-7 11:14
好及时!多谢多谢!
作者: ruiruizheng123    时间: 2016-4-7 16:30
楼主 好想要第一篇综述的附表啊~~~
作者: hzangs    时间: 2016-4-7 17:08
ruiruizheng123 发表于 2016-4-7 16:30
楼主 好想要第一篇综述的附表啊~~~

二楼 附件 第四个 就是文献全文。随便下载
作者: poisonkq    时间: 2016-4-12 22:42
谢谢楼主 楼主好人
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楼主是好人
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谢谢楼主分享
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不能再赞
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谢谢分享
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作者: 惜名    时间: 2016-7-5 09:11
鄙校竟然没买。。。
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作者: flowers17    时间: 2016-7-5 11:02
谢谢楼主分享,看看神经的那一篇
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作者: 下里巴人    时间: 2016-7-5 14:47
very good!thanks!
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谢楼主分享
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感谢楼主分享
作者: 正经的保洁小弟    时间: 2016-8-3 13:51
辛苦了楼主

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谢谢楼主
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thanks 谢分享
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谢谢楼主
作者: ceiba    时间: 2016-8-8 10:10
楼主可以给我发第一篇是关于外泌体分离方法对比的综述吗?谢谢!
作者: mrstem    时间: 2016-8-8 15:22
感谢分享!
作者: exo    时间: 2016-8-12 09:04
辛苦
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作者: Marvel    时间: 2016-8-12 20:43
看看这个是哪一篇。。
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多谢分享
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谢谢楼主,辛苦了
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作者: 免疫小子    时间: 2016-8-19 12:37
赞一个 谢谢版主的分享  
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感谢分享!
作者: 土豆    时间: 2016-8-26 11:37

作者: naomi    时间: 2016-8-26 21:38
需要一份,可以发邮箱吗978472657@qq.com,谢谢
作者: oekm    时间: 2016-8-27 01:05
谢谢分享
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作者: 丫丫    时间: 2016-8-31 11:49
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作者: zjjxhcy    时间: 2016-8-31 14:03

谢谢楼主分享
作者: nene    时间: 2016-9-2 14:06
谢谢楼主!

作者: yangzijiang    时间: 2016-9-8 20:55
谢谢楼主分享
作者: yangzijiang    时间: 2016-9-8 20:57
麻烦楼主给我发一份文章,我的邮箱是yangzijiang1985@163.com
作者: Katherinedata    时间: 2016-9-9 09:51
wanfenganxie
作者: 麦子qwq    时间: 2016-9-19 15:31
非常有用,谢谢
作者: goya    时间: 2016-9-19 17:03
提取的研究的基础,谢谢楼主分享
作者: philip916    时间: 2016-9-19 17:10
thank you for sharing those important paper that makes me (beginner) Know more


作者: hm2170    时间: 2016-9-19 17:16
想在组会讲关于exosome的文献来着
作者: zhouliyan    时间: 2016-9-19 21:12
第一篇和最后一篇刚好是我想要的。。谢谢小天使
作者: 叶香辰    时间: 2016-10-10 17:59
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作者: 少爷你别撸    时间: 2016-10-13 17:45
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作者: 蛮夷不蛮    时间: 2016-10-15 12:48
感谢版主的分享
作者: sunyangba    时间: 2016-10-17 23:43
THANK  YOU
作者: Lightguider    时间: 2016-10-19 00:09
拜读一下,希望能有点启发
作者: sunshuli    时间: 2016-10-19 16:53
谢谢分享

作者: woshizhixiaofei    时间: 2016-10-21 15:10
学习了,非常感谢
作者: 13790449507    时间: 2016-10-22 08:53
谢谢版主,非常感谢。
作者: FunkyWoody    时间: 2016-10-26 15:27
完美!感谢大大!
作者: yilin99    时间: 2016-11-3 01:07
Extensive surface protein profiles of extracellular vesicles from cancer cells may provide diagnostic signaturesfrom blood samples
作者: 下里巴人    时间: 2016-11-3 08:54
厉害了我的哥
作者: weaver    时间: 2016-11-6 20:51
谢。。。。。。。。。。。。。。。
作者: Annygao    时间: 2016-11-10 15:31
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作者: ashey    时间: 2016-11-22 10:14
需要下载
作者: zl_11    时间: 2016-11-27 19:31
多谢楼主!!
作者: doublechow    时间: 2016-11-28 00:19
感谢楼主分享!
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谢谢分享
作者: junesun    时间: 2016-12-4 22:26
想看!!!!!!!!!!!!
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作者: lytdaisy    时间: 2016-12-6 14:18
谢谢,大神分享!
作者: 汪芒果    时间: 2016-12-8 15:30
谢谢楼主 好人一生平安
作者: ly835700201    时间: 2016-12-9 17:35
刚刚入门
作者: funder    时间: 2016-12-10 12:03
求原文,谢谢

作者: wxz    时间: 2016-12-11 16:41
谢谢分享
作者: caoningzai    时间: 2016-12-12 10:18
看着这个真是感慨自己是渣

作者: 爱人如己66    时间: 2016-12-12 13:51
赞,十分感谢楼主的分享。谢谢
作者: 智洁1990    时间: 2016-12-17 13:10
谢谢分享
作者: wutong123    时间: 2016-12-17 15:39
十分感谢楼主的分享
作者: lnc08med    时间: 2016-12-31 22:51
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作者: cartman    时间: 2017-1-9 20:40
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作者: 我知道你的纯真    时间: 2017-1-13 15:45
谢谢楼主!!!!
作者: nick_a19    时间: 2017-1-16 19:47
xxxx谢谢!!!!1




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