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℡ 4000-520-616
℡ 4000-520-616
Dojindo/ExoSparkler Exosome Membrane Labeling Kit/Deep/EX01
产品编号:EX01
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产品分类: 蛋白类>多肽>多肽合成>
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Dojindo/ExoSparkler Exosome Membrane Labeling Kit/Deep/EX01
商品介绍
DescriptionQ & AManualS.D.S (EX01)S.D.S (EX02)S.D.S (EX03)

Product Description

Exosomes are a form of extracellular vesicle (EV), which could contribute to malignant transformation and the metastasis of cancer. Consequently, intercellular communication via exosomes is attracting considerable interest in the scientific community. To shed light on such communication, labeling techniques based on fluorescent dyes have been used. Fluorescent dyes that label the cellular membrane are commonly used for exosome labeling because the lipid bilayer in exosomes is a suitable labeling target. ExoSparkler series can be used for staining of purified exosomal membrane or protein, which allows imaging of labeled exosomes taken up by cells.


ExoSparkler series enables you to observe exosome dynamics more accurately.Commonly used exosomal membrane dye can cause dye aggregation, exhibiting fluorescent spots that are not derived from exosomes. These dyes can also change the functional properties of exosomes while increasing the background imaging.1,2The dyes used in ExoSparkler series (Mem Dye-Green, Red, and Deep Red) do not cause aggregation and have little influence on properties of exosomes, allowing a more accurate observation of exosome dynamics.1) Mehdi Dehghani et al., “Exosome labeling by lipophilic dye PKH26 results in significant increase in vesicle size”.bioRxiv., 2019, doi:10.1101/532028.2) Pužar Dominkuš P et al., “PKH26 labeling of extracellular vesicles: Characterization and cellular internalization of contaminating PKH26 nanoparticles.” Biochim Biophys Acta Biomembr., 2018, doi: 10.1016/j.bbamem.2018.03.013.


ExoSparkler series does not allow extracellular aggregation

Exosomes stained with ExoSparkler’s Mem Dye-Deep Red or an alternative product (green or red) were added to each well containing HeLa cells. The labeled exosomes taken into HeLa cells were observed by fluorescent microscopy. As a result, extracellular fluorescent spots suspected of dye aggregations were seen in each well containing the exosomes stained with the alternative product (green or red).

Experimental conditionsExosomes were purified by ultracentrifugation (10μg exosome protein) and stained with each dye. Labeled exosomes were added to HeLa cells (1.25×104 cells), and the cells were incubated for 24 hours. Cells were washed, and immunofluorescence images showing labeled exosomes were observed.Detection conditionsMem Dye-Deep Red(Purple): Ex 640nm/Em 640-760nmAlternative Product “P” (Green): Ex 561nm/Em 560-620nmAlternative Product “P” (Red): Ex 640nm/Em 650-700nm

Mem Dye-Deep Red and Product “P” (Green and Red) in aqueous solution were analyzed by NTA (nanoparticle tracking analysis) to investigate the generation of aggregates. No aggregation was observed in the experiments with Mem Dyes, although Product “P” (Green and Red) produced dye-to-dye aggregates (100–500 nm size).Instrument: LM10-HSBFT 14 (Nanosight)

Change the particle size of Mem Dye-solution and Product “P” solution

In Mem Dye-Green, Red, the aggregation of the dye was not confirmed as in Mem Dye-Deep Red.


Mem Dyes have little effect on exosome propertiesNTA (nanoparticle tracking analysis) and zeta potential were measured to determine the changes in exosomes of dye-stained with Mem Dye-Deep Red or Product “P” (green or red) or unstained exosomes.As a result, the Mem-Dye series (green, red, deep red) had little effect on exosome properties.

Effect of the dyes on the particle size of the exosomesExosomes were stained with Mem Dye-series (green, red, deep red) and Product “P” (green and red) at a dye concentration of 10 μmol/L in DMSO, the NTA (nanoparticle tracking analysis) of the stained exosomes (as 10 µg protein) was measured.As a result, Mem Dyes-series did not change number and particle size of the exosomes (bottom left). Conversely, the Product “P” stained exosomes showed the significant changes of particle size and population of the exosomes (bottom right).Instrument: LM10-HSBFT 14 (Nanosight)

Effect of the dyes on the zeta potentials of the exosomesExosomes were stained with Mem Dye-series (green, red, crimson) and Product “P” (green and red) at a dye concentration of 10 μmol/L in DMSO, the zeta potentials of the stained exosomes (as 10 µg protein) was measured.As a result, product “P”-stained exosomes have lower zeta potential than Mem Dye-stained.Instrument: Zetasizer Nano ZSP (Malvern Panalytical)

Zeta potentials comparison of dye-stained (Mem-Dye/Product “P”) or unstained exosomes

References) Takashi Shimomura et al., “New Lipophilic Fluorescent Dyes for Exosome Labeling: Monitoring of Cellular Uptake of Exosomes”.bioRxiv., 2020, doi:10.1101/2020.02.02.931295.


Our ExoSparkler Exosome Membrane Labelling Kits provide everything from fluorescence labeling to purificationExoSparkler series contains filtration tubes available for the removal of dyes unreacted after fluorescence labeling, as well as an optimized protocol for labeling exosomes. Our ExoSparkler series makes it possible to prepare fluorescence labeling of exosomes using the simple procedure.

Comparison of purification methods (removal of unlabeled dyes)The filtration tubes used to remove unlabeled dyes in this kit can purify exosomes at a higher recovery rate than gel filtration methods.

For the effectiveness of purification using filtration tubes, please see Q&A.(The filter is colored in the purification after the labeling, Have unlabeled dyes been removed?)


Observe the time-dependent changes in exosomes localization

<Experimental conditions>Exosomes purified by ultracentrifugation (10 µg as protein amount) were stained with Mem Dye-Deep Red (Exosome Membrane Fluorescence Labeling Kit) and added to HeLa cells (1.25×104 cells) stained with lysosome staining dye. The fluorescence images were observed after 1 h and 4 h incubation.As a result, it was confirmed that the fluorescence puncta (purple) of Mem Dye-Deep Red overlapped with the localization of lysosomes (green) over time (white), and that the localization of exosomes changed in a time-dependent manner.

<Detection Conditions>Mem Dye-Deep Red (Purple): Ex 640 nm/Em 640-760 nmLysosome staining dye: Ex 488 nm/Em 490-540 nm


Visualization of EVs uptake via endocytic pathway

Mem Dye-labeled EVs are internalized via endocytosis:HeLa cells were incubated with 10 μmol/L ECGreen (Code: E296) for 30 min. Then, Mem Dye-Deep Red labeled EVs (quantified as 10 µg of protein) were added to HeLa cells. After 30 or 120 min incubation, the cells were washed and observed under a fluorescence microscope (Scale Bar: 10 µm).


ExoSparkler series product comparison

Experimental conditionsExosomes were purified by ultracentrifugation (10 μg exosome protein) and stained with each dye. Labeled exosomes were added to HeLa cells (1.25×104 cells), and the cells were incubated for 24 hours. Cells were washed, and immunofluorescence images showing labeled exosomes were observed.Detection conditionsGreen: Ex 488nm/Em 490-540nmRed: Ex 561nm/Em 570-640nmDeep Red: Ex 640nm/Em 640-760nm

Are there recommended purification methods for exosome?
We recommended the exosomes prepared by ultracentrifuge, moreover we had evaluated the exosomes prepared by immunoprecipitation.Also, exosome prepared by polymer-based precipitation cannot be applied with these kits.
Some dye remains on the filter after purification. Have unlabeled dyes been removed?
Unlabeled dye is likely to be retained inside the filter, but we have confirmed that the unlabeled dye is not remaining on top of the filter. Please refer to the following experiment:<Experimental condition>① We stained the 10 µg exosomes (as protein amount) purified by ultracentrifugation.② We also prepared only using buffer as a control3. The recovered solution is added to HeLa cells (1.25 x 104 cells), and the fluorescence image was observed 4 hours later.As a result, it was confirmed that no bright fluorescent particles (unlabled dyes) were observed in the cells using the recovered solution with the only buffer.

① Exosome + Buffer

② Only Buffer

Fluorescent images at 4 h incubation

Detection conditionsGreen:Ex 488 nm / Em 490 – 540 nmRed :Ex 561 nm / Em 570 – 640 nmDeep Red:Ex 640 nm / Em 640 – 760 nm

Can I store the exosomes after it has been stained?
We can not recommend to store the exosomes after it has been stained.Please use the stained exosomes as soon as possible.

Which media have been used in exosome uptake experiments?
We had evaluated the exosome uptake experiments using MEM (Minimum Essential Medium) and DMEM (Dulbecco’s Modified Eagle’s Medium). We can not recommend to use the serum-free medium because this kit has been optimized to observe in serum-containing medium.

Related Categories Labeling Chemistry

品牌介绍

Dojindo Molecular Technologies,Inc.是美国领先的生命科学研究专用试剂盒和化学品分销商。我们通过提供优质的支持和创新产品,不断扩大客户的满意度,以扩大生命科学研究和开发领域。

我们的公司文化反映出“ Jin”(仁)字符背后的含义,即尊重和关爱他人。当我们公司执行上述任务时,“ Jin”精神始终处于我们思想的最前沿。  


我们如何开始

1996年

作为日本Dojindo实验室的子公司,Dojindo Molecular Technologies,Inc.在马里兰州盖瑟斯堡开业,这是新产品开发的主要设施。开发了诸如DNA损伤定量试剂盒SOD检测试剂盒WST标记试剂盒系列之类的产品,为全球客户提供现成的检测试剂盒。


2000

Dojindo Molecular Technologies,Inc.成为了另一个销售地点,将Dojindo产品带到了北美地区的研究专业人员手中。


2008年

我们搬迁至马里兰州罗克维尔,仅专注于北美的销售和营销活动。我们目前的位置非常接近美国国立卫生研究院(NIH),美国国家癌症研究所(NCI),FDA,约翰·霍普金斯大学的研究人员。


我们不仅向周边地区,而且向我们在美国,加拿大和南美的客户提供日本优质的客户支持和创新产品。

关于同人堂实验室

Dojindo Laboratories由螯合化学领域的著名研究人员上野敬平教授创立。同人堂实验室是1951年第一家将EDTA(乙二胺四乙酸)商业化的日本公司。自那以后,同人堂实验室一直在生产用于支持科学研究进展的试剂。Dojindo实验室的任务是开发用于生命科学研究的创新工具。Dojindo实验室致力于通过科学发现和开发新药物为改善生活质量做出贡献。


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