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TraKine™ Pro Live-cell Tubulin-traker kit (Red Fluorescence)

TraKine™ Pro Live-cell Tubulin-traker kit (Red Fluorescence)

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Specification

Product name TraKine™ Pro Live-cell Tubulin-traker kit (Red Fluorescence)
Applications notes TraKine™ Pro is series of long-term super-resolution cell staining imaging portfolio for labeling subcellular structures of live and fixed cells.

Product Properties

Kit components •Tubulin Red (200 μM)
•Buffer A (200 μM)
•Buffer B (1 mM)
Features & Benefits • Optimized staining protocol for labeling Tubulin in mammalian living and fixed cells. The product has been tested in U-2 OS,Hela and MCF-7 cell lines. If the sample type is not included in the above cell lines, we can provide experimental services for specific cell lines.
• Especially suitable for Confocal and long-term super-resolution imaging (such as SIM, STED, TIRF).
• Proprietary LysOrange™ (Ex/Em = 565/590nm)-high specificity, low background and excellent photostability.
• Low levels of cytotoxicity.
Usage notes Make sure the pipette tips and PCR tubes were sterilized at high temperature and pressure. Make sure sterile environment and protect from light during the whole experiment.
Storage instructions Refer to list of materials supplied for storage conditions of individual components. Stable for at least 6 months at recommended temperature from date of shipment.
Shipping Gel pack with blue ice.
Precautions The product listed herein is for research use only and is not intended for use in human or clinical diagnosis. Suggested applications of our products are not recommendations to use our products in violation of any patent or as a license. We cannot be responsible for patent infringements or other violations that may occur with the use of this product.

Additional Information

Background Tubulin is the major building block of microtubules. This intracellular cylindrical filamentous structure is present in almost all eukaryotic cells. Microtubules function as structural and mobile elements in mitosis, intracellular transport, flagellar movement, and in the cytoskeleton. Tubulin is a heterodimer, which consists of a-tubulin and b-tubulin; both subunits have a molecular weight of 55 kDa and share considerable homology. The most studied tubulins have been isolated from vertebrate brains. The microtubules can be viewed in immunofluorescent microscopy, which enables the observation of the intracellular organization of proteins that are in the form of a supramolecular structure.

Image & description

Fig. Long time series images (a, c) and corresponding fluorescence bleaching curves (b, d) were obtained by using HiS SIM Abbkine TraKine™ Pro Live-cell Tubulin-traker kit (Red Fluorescence)and Spining disk confocal microscopy of Tubulin  and commercially available Tubulin Tracker Green on U-2 OS cells, respectively. Scale bars: 5 μM.

Fig. Long time series images (a, c) and corresponding fluorescence bleaching curves (b, d) were obtained by using HiS SIM Abbkine TraKine™ Pro Live-cell Tubulin-traker kit (Red Fluorescence)and Spining disk confocal microscopy of Tubulin and commercially available Tubulin Tracker Green on U-2 OS cells, respectively. Scale bars: 5 μM.

Fig.2.Confocal imaging results of other cells using TraKine™ Pro Live-cell Tubulin-traker kit (Red Fluorescence).

Fig.2.Confocal imaging results of other cells using TraKine™ Pro Live-cell Tubulin-traker kit (Red Fluorescence).

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