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Invitrogen™ DiIC12(3) (1,1'-Didodecyl-3,3,3',3'-Tetramethylindocarbocyanine Perchlorate)

Product Code. 11560316
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100 mg
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100mg
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For Research Use Only. All usage must comply with product instructions.
 
Product Code. 11560316 Supplier Invitrogen™ Supplier No. D383

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This item is not returnable. View return policy
For Research Use Only. All usage must comply with product instructions.
 

When applied to cells, the dye diffuses laterally within the plasma membrane

The red-orange fluorescent, lipophilic carbocyanine DiIC12(3) is a shorter-chain DiI (DiIC18(3)) analog that may incorporate into membranes more easily than DiI. It is weakly fluorescent in water but highly fluorescent and quite photostable when incorporated into membranes. It has an extremely high extinction coefficient and short excited-state lifetimes (∽1 nanosecond) in lipid environments.

Cell Analysis, Cell Tracing & Tracking, Neuronal Tracing

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Shipping Condition: Room Temperature

TRUSTED_SUSTAINABILITY

Specifications

Color Yellow
Content And Storage Store at room temperature and protect from light.
For Use With (Equipment) Fluorescence Microscope
Quantity 100 mg
Detection Method Fluorescence
Shipping Condition Room Temperature
Product Type Liphophilic Tracer
Sub Cellular Localization Cell Membranes, Lipids
I stained my cells with a lipophilic cyanine dye, like DiI, but the signal was lost when I tried to follow up with antibody labeling. Why?

Since these dyes insert into lipid membranes, any disruption of the membranes leads to loss of the dye. This includes permeabilization with detergents like Triton X-100 or organic solvents like methanol. Permeabilization is necessary for intracellular antibody labeling, leading to loss of the dye. Instead, a reactive dye such as CFDA SE should be used to allow for covalent attachment to cellular components, thus providing for better retention upon fixation and permeabilization.

How long does it take for lipophlic tracers to transport along the membrane? How much faster are the FAST lipophilic dyes?

The transport is fairly slow, around 6 mm/day in live tissue and slower in fixed tissue, so diffusion of lipophilic carbocyanine tracers from the point of their application to the terminus of a neuron can take several days to weeks The FAST DiO and DiI analogs (which have unsaturated alkyl tails) can improve transport rate by around 50%.

Which form of the lipophilic tracers (DiO, DiI, DiD, etc) should I use?

Select the dye that is compatible with your available excitation source(s) and emission filter set/channels. The solid, paste and crystal forms can be applied directly to neurons in tissues. For labeling cells in culture or microinjection, the lipophilic dyes in solution or solid form can be used.

I want to label two cell populations and then perform a cell fusion assay. Which reagents are best for imaging this?

Lipophilic cyanine dyes are preferred for this sort of assay, since they insert into cellular membranes and then, upon fusion, are shared by the fused cells as the membranes are shared. For example, one cell population can be labeled with DiI (orange-red) and another cell population can be labeled with DiO (green), and when the cells fuse, the combined color appears yellow (when imaged with a dual-bandpass filter set).

I want to track my cells with a nucleic acid stain, like DAPI or Hoechst dye. Do you recommend this?

This is not recommended. When these stains bind to DNA and RNA, they may affect the normal function of the nucleic acids, disrupting transcription, as well as replication. Other reagents, such as CellTracker dyes or Qtracker reagents are more optimized for tracking without disrupting normal activity. If a nuclear label is still desired, though, and the cells are mammalian and non-hematopoietic, CellLight nuclear reagents can transiently transfect cells to express GFP or RFP on a nuclear-expressing protein for up to several days without affecting function.

I want to track my cells over time, and you have a lot of options to choose from. How do I pick the right one?

Please see this Web link (http://www.thermofisher.com/us/en/home/life-science/cell-analysis/cell-tracing-tracking-and-morphology/cell-tracking.html) to help you choose the right option for your application. Start by planning how long you want to track your cells, then consider the mechanism of binding. Calcein dyes are very uniform in label and are good for short-term cell migration, but may be rapidly effluxed from some cell types. Lipophilic cyanine dyes, such as DiI, DiO, and similar dyes label cell membranes, don’t disrupt function, and can last longer, but have the potential to cross to other cells if membranes fuse. They are also lost upon permeabilization. CellTracker dyes are better for longer-term labeling, as they possess a mildly reactive chloromethyl moiety that allows covalent binding to cellular components. CFDA SE also covalently binds to cellular components. With all the reagents, their retention within cells is dependent upon the rate of cell division and the inherent properties of the cell (active efflux, membrane and protein turnover rates, etc.) and reagents that allow for covalent attachment exhibit longer retention than those that do not.

The longest-lasting and brightest options are the Qtracker reagents, which are taken up through endocytosis. These are so bright individual quantum dots can be detected, and are also robust enough to survive not only fixation and permeabilization, but even the heat and solvents used in paraffin processing.


For Research Use Only. Not for use in diagnostic procedures.

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