CellLight™ Actin-RFP, BacMam 2.0
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CellLight™ Actin-RFP, BacMam 2.0
Invitrogen™

CellLight™ Actin-RFP, BacMam 2.0

CellLight Actin-RFP, BacMam 2.0, provides an easy way to label actin with red fluorescent protein (RFP) in live cells. SimplyRead more
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Catalog NumberQuantity
C105831 mL
Catalog number C10583
Price (KRW)
724,000
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Ends: 31-Dec-2025
904,000
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Quantity:
1 mL
Price (KRW)
724,000
Online offer
Ends: 31-Dec-2025
904,000
Save 180,000 (20%)
Each
Add to cart
CellLight Actin-RFP, BacMam 2.0, provides an easy way to label actin with red fluorescent protein (RFP) in live cells. Simply add the reagent to your cells, incubate overnight, and the cells are ready to image in the morning.

Want to label other cell structures? Learn more about CellLight fluorescent protein labeling tools

This ready-to-use construct is transfected into cells using BacMam 2.0 technology and expresses RFP fused to human actin with almost no cytotoxic effects. Study the dynamic action of actin filaments in live cells and multiplex with other fluorescent proteins or organic dyes.

Cells expressing CellLight constructs can also be fixed with formaldehyde for multiplexed imaging using immunocytochemical techniques.

CellLight Technology is:
Fast and convenient: simply add CellLight reagent to your cells, incubate overnight, and image—or store frozen, assay-ready cells for later use
Highly efficient: up to 90% transduction of a wide range of mammalian cell lines, including primary cells, stem cells, and neurons
Flexible: co-transduce more than one BacMam reagent for multiplex experiments or co-localization studies; tightly control expression levels by simply varying the dose
Less toxic: CellLight reagents are non-replicating in mammalian cells and are suitable for biosafety level (BSL) 1 handling

BacMam Technology

CellLight Actin-RFP, BacMam 2.0, is a fusion construct of human actin and TagRFP, providing accurate and specific targeting to cellular actin-RFP. This fusion construct is packaged in the insect virus baculovirus, which does not replicate in human cells and is designated as safe to use with biosafety level (BSL) 1 in most laboratories. BacMam technology ensures that most mammalian cell types are transduced/transfected with high efficiency and minimal toxicity. This transient transfection can be detected after overnight incubation for up to five days—enough time to carry out most dynamic cellular analyses. Like any transfection/transduction technique, the BacMam method does not transfect/transduce all of the cells with equal efficiency, making it poorly suited to cellular population studies or automated imaging/counting. CellLight reagents are ideal for experiments where cellular or subcellular co-locatization is required, or for cellular function studies that need special resolution.

Visualize staining your cell without wasting your reagents, antibodies, or time with our new Stain-iT Cell Staining Simulator.

For Research Use Only. Not for use in diagnostic procedures.
Specifications
ColorRed-Orange
Detection MethodFluorescence
Dye TypeRFP (TagRFP)
EmissionVisible
Excitation Wavelength Range555⁄584
For Use With (Equipment)Fluorescence Microscope, Flow Cytometer, Fluorescent Imager
FormLiquid
Product LineCellLight, Molecular Probes
Quantity1 mL
Shipping ConditionWet Ice
Target FunctionCell Structure
Label TypeFluorescent Dye
Product TypeActin
SubCellular LocalizationActin
Unit SizeEach
Contents & Storage
2°C to 6°C, protect from light. Do not freeze.

Frequently asked questions (FAQs)

How can I increase the transduction efficiency with the BacMam 2.0 reagents such as the the CellLight and Premo products?

Try varying particle-to-cell ratio (PPC), incubation volume, temperature and, cell density (if adherent cells are transduced). For adherent cells, we recommend a confluence of about 70%. Following the PPC, adjusting the volume is the next best parameter to change to optimize protein expression. If that doesn't work, you can also use the BacMam Enhancer Kit (Cat. No. B10107).

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

Is there any way to preserve the CellLights labeling beyond 5 days?

Cells transduced with the CellLights reagents can be stored frozen for several months after transduction, without loss of expression.

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

Are the CellLights products toxic to cells?

If the viral particles are used at the level we recommend, they are very well tolerated by cells.

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

For how long will the CellLights products label my cells?

The BacMam 2.0 CellLights typically express for 5 days after transduction.

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

What cell types can the CellLights products be used with?

The first generation BacMam reagents were shown to efficiently transduce over 90 cell types, including stable cell lines and primary cells. With BacMam 2.0, it is now possible to also efficiently transduce primary neurons and stem cells.

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

Citations & References (14)

Citations & References
Abstract
A Review of Reagents for Fluorescence Microscopy of Cellular Compartments and Structures, Part III: Reagents for Actin, Tubulin, Cellular Membranes, and Whole Cell and Cytoplasm.
Authors:Kilgore JA, Dolman NJ, Davidson MW,
Journal:
PubMed ID:24510770
'Non-antibody commercial fluorescent reagents for imaging of cytoskeletal structures have been limited primarily to tubulin and actin, with the main factor in choice based mainly on whether cells are live or fixed and permeabilized. A wider range of options exist for cell membrane dyes, and the choice of reagent primarily ... More
Stress fibers stabilize the position of intranuclear DNA through mechanical connection with the nucleus in vascular smooth muscle cells.
Authors:Nagayama K, Yahiro Y, Matsumoto T,
Journal:FEBS Lett
PubMed ID:22094165
Actin stress fibers (SFs) running across the top surface of the nucleus in vascular smooth muscle cells were dissected using laser nano-dissection technique to release its pretension, and the dynamic behavior of SFs, nucleus, and intranuclear DNA were investigated. SFs shortened across the top surface of the nuclei after their ... More
Role of c-Met/phosphatidylinositol 3-kinase (PI3k)/Akt signaling in hepatocyte growth factor (HGF)-mediated lamellipodia formation, reactive oxygen species (ROS) generation, and motility of lung endothelial cells.
Authors:Usatyuk PV, Fu P, Mohan V, Epshtein Y, Jacobson JR, Gomez-Cambronero J, Wary KK, Bindokas V, Dudek SM, Salgia R, Garcia JG, Natarajan V,
Journal:
PubMed ID:24634221
Hepatocyte growth factor (HGF) mediated signaling promotes cell proliferation and migration in a variety of cell types and plays a key role in tumorigenesis. As cell migration is important to angiogenesis, we characterized HGF-mediated effects on the formation of lamellipodia, a pre-requisite for migration using human lung microvascular endothelial cells ... More
Viscoelastic cell mechanics and actin remodelling are dependent on the rate of applied pressure.
Authors:Pravincumar P, Bader DL, Knight MM,
Journal:PLoS One
PubMed ID:22984454
Living cells are subjected to external and internal mechanical stresses. The effects of these stresses on the deformation and subsequent biological response of the cells remains unclear. This study tested the hypothesis that the rate at which pressure (or stress) is applied influence the viscoelastic properties of the cell associated ... More
Baculovirus-mediated gene transfer into mammalian cells.
Authors:Boyce FM, Bucher NL,
Journal:Proc Natl Acad Sci U S A
PubMed ID:8637876
This paper describes the use of the baculovirus Autographa californica multiple nuclear polyhedrosis virus (AcMNPV) as a vector for gene delivery into mammalian cells. A modified AcMNPV virus was prepared that carried the Escherichia coli lacZ reporter gene under control of the Rous sarcoma virus promoter and mammalian RNA processing ... More