ExoView外泌体全面表征试剂盒
ExoView外泌体全面表征试剂盒
ExoView外泌体全面表征试剂盒
ExoView外泌体全面表征试剂盒

ExoView外泌体全面表征试剂盒


外泌体计数、粒径、蛋白表达、蛋白共定位一次完成


检测样本类型

对细胞培养上清、血浆、血清、尿液、脑脊液、唾液等生物样本中的外泌体直接进行分析

捕获抗体种类

anti-CD81, anti-CD9, anti-CD63, 同型IgG对照;可自定义

单次上样体积

35 µl稀释样本

重复检测数目

3复孔

荧光抗体种类

CD9(Blue)CD81(Green)CD63(Red)


无须纯化即可直接对血浆、血清、尿液、培养基中的外泌体进行表征的新方法。该设备能偶提供单个外泌体水平下的全方位外泌体表征信息,包括了颗粒大小、计数、表型与生物标志物共定位等。#

实验原理


① 35 μL外泌体样品滴加在芯片上孵育;

② 预先包被的抗体特异结合外泌体表面蛋白以捕获外泌体;

③ 再使用荧光抗体特异性标记需要表征的标记物;

④ 后用ExoView R100检测外泌体粒径、计数、蛋白表达(CD9,CD81,CD63等)及共定位。



检测流程


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产品类别


产品货号产品名称
EV-TETRA-C人外泌体检测试剂盒
EV-TETRA-P人血浆外泌体检测试剂盒
EV-TETRA-M2鼠外泌体检测试剂盒
EV-TETRA-C-CAR人外泌体内容物检测试剂盒
EV-TETRA-P-CAR人血浆外泌体内容物检测试剂盒
EV-TC-FLEX自由捕获人外泌体检测试剂盒
EV-TP-FLEX自由捕获人血浆外泌体检测试剂盒
EV-TC-FLEX-CAR自由捕获人外泌体内容物检测试剂盒
EV-TP-FLEX-CAR自由捕获人血浆外泌体内容物检测试剂盒
EV-TM-FLEX自由捕获鼠外泌体检测试剂盒
EV-TM-FLEX-CAR自由捕获鼠外泌体内容物检测试剂盒
EV-FLEX-2自由捕获外泌体检测试剂盒
EV-FLEX-2 -CAR自由捕获外泌体内容物检测试剂盒
EV-CTETRA-1/2/3人外泌体检测试剂盒+1/2/3个自定义捕获抗体
EV-CTETRA-1/2/3-CAR人外泌体内容物检测试剂盒+1/2/3个自定义捕获抗体
EV-CUST-1/2/3/4/5/6自定义1/2/3/4/5/6抗体捕获外泌体检测试剂盒
EV-CUST-1/2/3/4/5/6-CAR自定义1/2/3/4/5/6抗体捕获外泌体内容物检测试剂盒



试剂盒特点


特异性捕获

芯片上可包被多达6种捕获抗体,特异性捕获含特定蛋白标记物的外泌体。


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阳性外泌体计数

芯片捕获外泌体后,可通过SP-IRIS技术直接检测样品中外泌体的数量。



单个外泌体蛋白共定位分析

检测每个外泌体的荧光信号并进行统计,可获得荧光共定位信息,用于分析样品中不同表型外泌体的比例(如右图所示)



无需纯化

使用抗体捕获模式,防止样品中杂质影响结果,可直接检测血液、尿液和细胞培养液中的外泌体,未纯化样品的测量结果与纯化后基本一致(如右图所示)



粒径分辨率高

高精度SP-IRIS技术,可检测≥50 nm的外泌体,测量结果与电子显微镜检测结果基本一致,并统计生成外泌体的粒径分布结果(如右图所示)



可检测外泌体内容物

试剂盒配套相应的穿膜剂,可穿透外泌体并对外泌体内容物进行染色并检测,未穿膜时只能检测到跨膜蛋白CD9的荧光信号,穿膜后即可检测到外泌体内容物Syntenin的表达(如右图所示)






应用案例

法国Abbelight公司开发的3D全自动外泌体荧光检测分析系统是一款无需纯化的、全自动的可对单个外泌体进行表征分析的全新设备。该设备能够提供全方位的单个外泌体表征信息,包括外泌体粒径大小、亚型分布、携带蛋白表达、单个外泌体的膜蛋白与生物标志物共定位等。

肿瘤诊断

载药系统开发

眼科疾病诊断

疫苗研发

脊髓受伤机制研究

血浆/血清外泌体分析

外泌体工程化

呼吸疾病诊断

外泌体荧光数量统计


外泌体粒径检测


外泌体内容物检测


荧光强度与粒径关系


荧光共定位分析




中国用户已发表文章


☛ 南京大学李靓/张辰宇/张玉婧课题组在《Frontiers in Cell and Developmental Biology》发表文章。


☛ 上海大学在《Journal of extracellular vesicles》发表文章。


☛  中国科学院深圳技术研究院在《Lab on a Chip》发表文章。

 


☛  北京天坛医院、国家纳米科学中心、北京航空航天大学在《Advanced Science》发表文章。



  同济大学附属上海市肺科医院、上海思路迪转化医学在《Journal of Nanobiotechnology》发表文章。



☛ 山东千佛山医院在《NANO LETTERS》发表文章



感谢用户老师对Quantum Design China & NanoView设备的认可与支持!



2022-2023发表文章


• Richard J. R. Kelwick …& Paul S. Freemont. (2023) Opportunities to accelerate extracellular vesicle research with cell-free synthetic biology. Journal of Extracellular Vesicles.

• Laurence Blavier …& Yves A. DeClerck. (2023) The capture of extracellular vesicles endogenously released by xenotransplanted tumours induces an inflammatory reaction in the premetastatic niche. Journal of Extracellular Vesicles.

• Hongyun Wang ……& Junjie Xiao. (2022) Extracellular vesicles enclosed-miR-421 suppresses air pollution (PM2.5)-induced cardiac dysfunction via ACE2 signalling. Journal of Extracellular Vesicles.

• Linglei Jiang……& Santosh Dhakal. (2022) A7 bacterial extracellular vesicle-based intranasal vaccine against SARS-CoV-2 protects against disease and elicits neutralizing antibodies to wild-type and Delta variants. Journal of extracellular vesicles.

• Shaobo Ruan, Nina Erwin, Mei He. (2022) Light-induced high-efficient cellular production of immune functional extracellular vesicles. Journal of extracellular vesicles.

• Nasibeh Karimi ……&  Cecilia Lässer. (2022) Tetraspanins distinguish separate extracellular vesicle subpopulations in human serum and plasma – Contributions of platelet extracellular vesicles in plasma samples. Journal of Extracellular Vesicles.

• Heikki Kyykallio ……& Pia R-M Siljander. (2022) A quick pipeline for the isolation of 3D cell culture-derived extracellular vesicles. Journal of Extracellular Vesicles.

• Roberto Frigerio ……& Marina Cretich. (2022) Comparing digital detection platforms in high sensitivity immune-phenotyping of extracellular vesicles. Journal of Extracellular Vesicles.

• Yael Hirschberg ……& Inge Mertens. (2022) Characterizing extracellular vesicles from individual low volume cerebrospinal fluid samples, isolated by SmartSEC. Journal of Extracellular Vesicles.

• Sukhbir Kaur……& David D. Roberts. (2022) Single vesicle analysis of CD47 association with integrins and tetraspanins on extracellular vesicles released by T lymphoblast and prostate carcinoma cells. Journal of Extracellular Vesicles.

• Simone M. Crivelli……& Erhard Bieberich. (2022) Function of ceramide transfer protein for biogenesis andsphingolipid composition of extracellular vesicles. Journal of Extracellular Vesicles.

• Gi Beom Kim …& In-San Kim. (2023) Harnessing Oncolytic Extracellular Vesicles for Tumor Cell-Preferential Cytoplasmic Delivery of Misfolded Proteins for Cancer Immunotherapy. Small.

• J. Klein, Y. Cao. (2023) Multi-Lipid Synergy In Cartilage Lubrication: Redundancy Or Evolution? Osteoarthritis and Cartilage.

Valerie DeLuca …& Michael E. Berens. (2023) Extracellular vesicles as a pharmacodynamic reporter in glioblastoma. Cancer Research.

• Sarah Pike …& Liya Xu. (2023) Extracellular vesicles in diagnostic retinoblastoma aqueous humor correlate with disease stage and clinical outcome: a pilot study. Cancer Research.

• D. Cookson …& Y. Ashraf Kharaz. (2023) The Biological Response Of Anterior Cruciate Ligamentocytes Following Treatment With Synovial Fluid Extracellular Vesicles. Osteoarthritis and Cartilage.

• Mei Lu …& Yuanyu Huang. (2023) Antitumor synergism between PAK4 silencing and immunogenic phototherapy of engineered extracellular vesicles. Acta Pharmaceutica Sinica B.

• Luke C. McIlvenna ……& Martin Whitham. (2023) Single vesicle analysis reveals the release of tetraspanin positive extracellular vesicles into circulation with high intensity intermittent exercise. The Journal of Physiology.

• Joseph Blommer ……& Dimitrios Kapogiannis. (2023) Extracellular vesicle biomarkers for cognitive impairment in Parkinson’s disease. BRAIN.

• Tyler J ……& Atta Behfar. (2022) Exosome biopotentiated hydrogel restores damaged skeletal muscle in a porcine model of stress urinary incontinence. Npj Regenerative Medicine.

• Min Han ……& Tao Xin. (2022) Three-Dimensional-Cultured MSC-Derived Exosome-Hydrogel Hybrid Microneedle Array Patch for Spinal Cord Repair. Nano Letters.

• Zijian Yang ……& David A. Issadore. (2022) Ultrasensitive Single Extracellular Vesicle Detection Using High Throughput Droplet Digital Enzyme-Linked Immunosorbent Assay. Nano Letters.



部分国内用户



部分国外用户

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