MitoTracker™ Dyes for Mitochondria Labeling
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MitoTracker™ Dyes for Mitochondria Labeling
Invitrogen™

MitoTracker™ Dyes for Mitochondria Labeling

These mitochondria dyes are specially packaged in vials of 50 μg each to create freshly reconstituted dyes without the impact of freeze-thaw cycles to aid in a simplified sample prep for cell analysis workflow.
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货号描述激发波长范围
M7512MitoTracker™ Red CMXRos579/599
M22426MitoTracker Deep Red FM644⁄665
M22425MitoTracker™ Red FM581⁄644
M7513MitoTracker Red CM-H2Xros579⁄599
M7514MitoTracker™ Green FM490⁄516
M7510MitoTracker Orange CMTMRos554⁄576
M7511MitoTracker Orange CM-H2TMRos554⁄576
货号 M7512
价格(CNY)
3,918.00
飞享价
Ends: 31-Dec-2025
5,310.00
共减 1,392.00 (26%)
Each
添加至购物车
描述:
MitoTracker™ Red CMXRos
激发波长范围:
579/599
价格(CNY)
3,918.00
飞享价
Ends: 31-Dec-2025
5,310.00
共减 1,392.00 (26%)
Each
添加至购物车

Rosamine & carbocyanine-based staining dyes MitoTracker Orange CMTMRos, Red CMXRos, Orange CM-H2TMRos, Red CM-H2XRos, Red FM, Green FM, & Deep Red FM enable mitochondria visualization with fluorescent imaging. These mitochondria dyes are specially packaged in vials of 50 μg each to create freshly reconstituted dyes without the impact of freeze-thaw cycles to aid in a simplified sample prep for cell analysis workflow.

Rosamine-based MitoTracker dyes for mitochondria labeling

Cell-permeant MitoTracker probes stain active mitochondria in live cells for labeling and localization in fluorescent cell imaging. Our rosamine-based mitochondrial staining dyes include MitoTracker Orange CMTMRos, a derivative of tetramethylrosamine, and MitoTracker Red CMXRos, a derivative of X-rosamine. MitoTracker Orange CM-H2TMRos and MitoTracker Red CM-H2XRos are reduced, nonfluorescent versions of the rosamine-based MitoTracker dyes that fluoresce upon oxidation. The fluorescent signal from the rosamine-based MitoTracker dyes is retained in the mitochondria even after aldehyde fixation and detergent permeabilization, making these mitochondria dyes flexible for many workflows including applications that require subsequent processing such as immunocytochemistry or in situ hybridization. MitoTrackerRed and Orange are well suited for multicolor labeling experiments because their fluorescence is well resolved from the green fluorescence of other probes.

Carbocyanine-based MitoTracker dyes for mitochondria labeling

Cell-permeant MitoTracker dyes stain active mitochondria in live cells for mitochondrial labeling and localization in fluorescent cell imaging. The carbocyanine-based dyes MitoTracker Green FM and MitoTracker Red FM accumulate in active mitochondria but are not well-retained in mitochondria after aldehyde fixation. The carbocyanine-based MitoTracker Deep Red FM stains active mitochondrial in live cells and is well-retained in mitochondria after aldehyde fixation and subsequent permeabilization with detergents for applications that require subsequent processing such as immunocytochemistry or in situ hybridization. MitoTracker Red FM and MitoTracker Deep Red FM are well suited for multicolor labeling experiments because their red fluorescence is well resolved from the green fluorescence of other probes.

Benefits of using MitoTracker mitochondria labeling dyes

MitoTracker dyes are provided in vials of 50 μg of lyophilized powder ready for reconstitution. To label mitochondria, live cells are simply incubated with the MitoTracker probe of your choice. The mitochondrial staining dyes passively diffuse across the plasma membrane and accumulate in active mitochondria. The MitoTracker dyes are offered in a range of wavelengths and can be used for mitochondrial localization in multicolor experiments.

Conventional fluorescent stains such as tetramethylrosamine and rhodamine 123 are readily sequestered by active mitochondria and are reversible in dynamic membrane potential measurements as they easily wash out of cells upon loss in membrane potential. In contrast, MitoTracker dyes contain a mildly thiol-reactive chloromethyl moiety so that mitochondrial staining is retained if the mitochondrial membrane potential is lost, allowing many of the MitoTracker dyes to be retained during cell fixation.

Throughout the cell life cycle, mitochondria use oxidizable substrates to produce an electrochemical proton gradient across the mitochondrial membrane (whose potential is negative), resulting in ATP production. MitoTracker dyes are ideal probes for mitochondria staining in experiments studying the cell cycle or processes such as apoptosis and other end point assays. MitoTracker dyes are also available for flow cytometry applications (Cat. No. M46750, M46751, M46752, and M46753).

Related products for mitochondrial membrane potential

For studying dynamic mitochondria membrane potential specifically, we recommend using JC-1 (cationic carbocyanine dye, Cat. No. T3168) or TMRM (tetramethyl rhodamine methyl ester, Cat. No. I34361) dyes. The MitoProbe JC-1 Assay Kit (Cat. No. M34152) contains the JC-1 dye in addition to the potent mitochondrial membrane-potential disrupter, CCCP, which depolarizes the mitochondrial membrane. These reagents can provide compensatory controls to correctly compensate green-to-red fluorescence ratio. TMRM is used for the detection of dynamic measurement of mitochondrial membrane potential.

仅供科研使用。不可用于诊断程序。
规格
颜色红色
描述MitoTracker™ Red CMXRos
检测方法荧光
激发波长范围579/599
适用于(设备)荧光显微镜、流式细胞仪、微孔板读数仪
产品规格Special packaging
产品线MitoTracker™
数量20 x 50 μg
运输条件室温
标签类型Fluorescent Dye
产品类型染料
亚细胞定位线粒体Mitochondria
Unit SizeEach
内容与储存
在冷冻冰箱(-5°C 至 -30°C)中避光储存。

常见问题解答 (FAQ)

我用MitoTracker Red CMXRos标记神经元后,它们第二天就死了,这是否正常?

Mitotracker染料应在染色之后立即成像,因为随着时间的推移,这些染料可能会产生毒性。

流式细胞仪能分析哪些细胞过程?

•钙流:每一种Oregon Green钙指示剂都可通过更高的亲和力结合胞内钙离子,提供适合很多应用的灵敏度范围。Oregon Green探针在Ca2+静息水平下发射绿色荧光;Ca2+浓度增加时,荧光强度会增加14倍。细胞通透配方(货号O6807)能加入到细胞培养基中并与流式细胞仪兼容。

•基于罗丹明的钙离子指示剂包含了大量不同的探针,用于探测Ca2+浓度的大小变化。该指示剂与钙离子结合后,会发出50倍增强的荧光。这一类波长范围的荧光可与GFP或绿色荧光染料结合,用于多重检测应用。Rhod-2, AM(货号R1245MP)专门靶向线粒体,可与流式细胞仪联用。

•膜电位:细胞凋亡初期的典型特征是线粒体紊乱,伴随着膜和氧化还原电位变化。我们提供一系列专门用于流式细胞术活细胞线粒体膜电位分析的产品,可最大限度避免影响细胞功能。对于细胞凋亡过程出现的线粒体膜电位损失,MitoProbe系列线粒体染色剂(货号M34150、M34151和M34152)可提供快速、简单和可靠的流式细胞术检测方法。MitoTracker染料(货号M7510和M7512)是用于染色活细胞内的线粒体的膜电位依赖型探针。在之后的流式细胞免疫化学、DNA末端标记,原位杂交或复染色步骤中,MitoTracker染料的染色图案全程保留。相比于只依赖线粒体膜电位的检测方法,线粒体通透性转移孔检测体系(货号M34153)可直接测定通透性转移孔开合情况。线粒体通透性转移孔(MPTP)是一个由线粒体内膜和外膜成分构成的非特异性通道。在细胞死亡过程中,此通道显现,参与线粒体成分释放。

•吞噬作用:在吞噬过程中,细胞内吞微粒(如微生物)。此过程对于免疫应答非常重要,同时对清除凋亡细胞也非常重要。研究吞噬作用的探针包括BioParticles指示剂——用荧光标记的细菌和酵母。

•使用淬灭/洗涤检测法来追踪吞噬过程能够表征简单的摄入,或利用一种pH指示剂监视吞噬途径的各个阶段。我们提供pHrodo Red或Green(货号A10010、P35361、P35364、P35365、P35366和P35367)标记的免洗检测体系和全血的免洗检测体系(货号A10025、A10026、P35381和P35382),都适用于流式细胞仪。

•pH改变:可使用荧光强度或比率计测定法测定生理学范围内的细微pH变化。pHrodo 染料(货号P35373和P35372)提供了pH2-9之间的信号强度调制,同时可以选择各种荧光波长。荧光右旋糖酐内吞示踪是分析细胞区室pH变化的常用方法。pHrodo染料的右旋糖酐偶联物(货号P35368和P10361)可用于区分从早期的核内体到溶酶体在内的各种囊泡,不需要洗涤和淬灭,是最完整的解决方案。

•活性氧:处于环境压力下的细胞通常含有超高水平的活性氧(ROS)。CellROX试剂是为检测和定量活细胞中的ROS而开发的荧光探针。这些细胞通透性试剂在还原态时不发荧光或发微弱的荧光;在被氧化后,就发出明亮的荧光且依旧位于细胞内。我们提供已通过流式细胞术验证的CellROX Green(货号C10492)CellROX Orange(货号C10493)和CellROX Deep Red(货号C10491)检测试剂盒。

当我测试线粒体膜电位时,未处理的细胞也会发出荧光,而且我在试验样品中没有看到显著差异。

无论您使用哪种染料,四甲基罗丹明甲酯(TMRM)还是MitoTracker Red FM,未处理的细胞都会发出荧光。只要细胞线粒体膜电位降低就会导致荧光信号降低。最重要的是变化的程度。JC-1染料不仅强度改变,还有激发和发射比例光谱的改变。设置未处理的对照和用线粒体膜电位去稳定剂(如CCCP或FCCP)处理的阳性对照是非常重要的。这些染料仅用于活细胞,在固定处理的细胞中无法保留相同程度的信号。

It looks like my Mitotracker dye is staining more than just the mitochondria. Why?

This is typically a result of using too high of a concentration of the Mitotracker dye. Most organic dyes are used in the low micromolar range. The MitoTracker dyes are used at a much lower concentration, around 50–200 nanomolar. Higher concentrations can cause background fluorescence and non-mitochondrial staining.

Find additional tips, troubleshooting help, and resources within our Cell Analysis Support Center.

Can I use MitoTracker Red CMXRos dye in a plate reader to study mitochondrial membrane potential changes?

Yes, it has been done. A literature search will find numerous examples. However, be aware that plate readers are typically less sensitive than microscopes or flow cytometers, which means that the degree of change in fluorescence may not be as sensitive or easily detectable with a plate reader. Be sure to optimize label times and concentrations carefully.

Find additional tips, troubleshooting help, and resources within our Cell Analysis Support Center.