Alexa Fluor™ 488 Tyramide SuperBoost™ Kit, goat anti-mouse IgG
Alexa Fluor™ 488 Tyramide SuperBoost™ Kit, goat anti-mouse IgG
Invitrogen™

Alexa Fluor™ 488 Tyramide SuperBoost™ Kit, goat anti-mouse IgG

SuperBoost™ tyramide signal amplification is the most sensitive method for detection of low abundant targets in multiplexable fluorescent immunocytochemistry (ICC),深入閱讀
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產品號碼Quantity
B40941Sufficient for 50 Slides
B40912Sufficient for 150 Slides
產品號碼 B40941
價格 (TWD)
13,950.00
線上優惠
Ends: 31-Dec-2025
18,600.00
您節省 4,650.00 (25%)
Each
新增至購物車
Quantity:
Sufficient for 50 Slides
價格 (TWD)
13,950.00
線上優惠
Ends: 31-Dec-2025
18,600.00
您節省 4,650.00 (25%)
Each
新增至購物車
SuperBoost™ tyramide signal amplification is the most sensitive method for detection of low abundant targets in multiplexable fluorescent immunocytochemistry (ICC), immunohistochemistry (IHC ), and in situ hybridization (ISH). SuperBoost kits combine the brightness of AlexaFluor™ dyes with the superior signal amplification of a poly-HRP-mediated tyramide labeling reaction to produce a sensitivity 10-200 times greater than standard methods. SuperBoost kit sensitivity is also 2-10 times greater than regular tyramide amplification techniques like TSA™. For standout research, SuperBoost kits sharpen your results for clear visibility into critical areas that standard imaging methods fail to reveal.

SuperBoost kits are simple to use and easily adapted to standard ICC, IHC, or FISH experimental protocols, using any cell or tissue type. Cells labeled using a SuperBoost kit can be imaged using any type of microscope, producing high-resolution multiplex images. This particular kit features AlexaFluor 488 tyramide (496/524 ex/em), detected using a standard Green/FITC/GFP filter cube. This kit also features poly-HRP-conjugated goat anti-mouse IgG secondary antibody.

Features of the SuperBoost kits include:
• Superior sensitivity for detection of low-level or hard-to-detect targets by fluorescent imaging
• Simple protocol and detection using standard filters
• Suitable for high-resolution multiplex images—co-label with DAPI, secondary antibodies, and other SuperBoost kits
• Requires 10-100 times less primary antibody then standard ICC/IHC/ISH experiments

SuperBoost kits are based on the tyramide signal amplification system, which uses the catalytic activity of horseradish peroxidase (HRP) to generate high density labeling of a target protein or nucleic acid sequence in situ. A typical ICC/IHC/ISH experiment using a SuperBoost kit requires 10-100 times less primary antibody then standard ICC/IHC/ISH experiments. SuperBoost kits offer superior specific signal intensity over background, so the protocol is easily optimized to detect specific signal in samples where high endogenous autofluorescence is observed.

Benefits of SuperBoost kits

Enhancement of signal using Alexa Fluor tyramides: SuperBoost kits utilize Alexa Fluor tyramides, which react with HRP to ultimately deposit bright and photostable Alexa Fluor dye on surrounding proteins and other similar molecules. SuperBoost kits are the only kits that combine the brightness of Alexa Fluor dyes with the enhancement of tyramide signal amplification to produce a superior signal.

Poly-HRP enhancement: Unlike TSA, SuperBoost kits employ poly-HRP-conjugated secondary antibodies. In such systems, several HRP enzymes are conjugated with short polymers, enhancing the signal by several fold over regular HRP systems. The poly-HRP is structured in such a way that the antibodies penetrate cells or tissue as efficiently as regular HRP-conjugated secondary antibodies. The molar enzyme/antibody protein ratio has an average value of '4'.

Reaction stop solution: Like any enzyme-based labeling system, it is possible to overdevelop the signal. SuperBoost kits include an HRP stop solution to halt the HRP reaction. HRP stop solution can be used to obtain maximum signal, without increase of background signal. Images produced with optimized HRP reaction times are as sharp as images produced with standard ICC/IHC/ISH methods, but with 10-200 times more sensitivity.

Reduction of background: SuperBoost kits include blockers for the elimination or reduction of endogenous peroxidase and fluorescent background signals. These blockers help ensure that only specific signals are enhanced while keeping non-specific/background signals in check.

For Research Use Only. Not for use in diagnostic procedures.
規格
Product TypeTyramide Kit
QuantitySufficient for 50 Slides
Shelf Life6 Months
Shipping ConditionApproved for shipment at Room Temperature or on Wet Ice
ConjugateAlexa Fluor 488
Product LineSuperBoost
Unit SizeEach
內容物與存放
1 kit sufficient for 50 microscope slides (18 x 18 mm), containing: Blocking buffer (1X), 22.5 mL
  • Poly-HRP-conjugated goat anti-mouse secondary antibody (1X), 22.5 mL
  • Alexa Fluor tyramide reagent
  • Hydrogen peroxi
  • 常見問答集 (常見問題)

    With a SuperBoost tyramide kit, I got excessive and non-specific labeling. What can I do to limit background and acquire a more localized labeling?

    To limit background, we recommend performing a pre-blocking step with 3% H2O2 for 60 mins to inactivate endogenous peroxidases. To limit the localization of labeling, we recommend optimizing the final concentration of the primary and secondary antibodies and the dye-tyramide. You may also limit the incubation time of the dye-tyramide on the sample.

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

    Is it possible to perform dual TSA labeling with SuperBoost tyramide kits?

    Yes. This involves the sequential application of the antibodies and the tyramides with a HRP-quenching step between antibodies using H2O2.

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

    How are SuperBoost tyramide kits different from the original TSA labeling kits?

    The SuperBoost tyramide kits utilize poly-HRP labeled antibodies. This provides a greater number of horseradish peroxidase (HRP) molecules per antibody. The original kits used antibodies and streptavidin that were directly conjugated with HRP and thus, limited the number per antibody or streptavidin.

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

    引用資料與參考文獻 (2)

    引用資料與參考文獻
    Abstract
    SZT2 dictates GATOR control of mTORC1 signalling.
    Authors:Peng M, Yin N, Li MO
    Journal:Nature
    PubMed ID:28199315
    'Mechanistic target of rapamycin complex 1 (TORC1) integrates nutrient signals to control cell growth and organismal homeostasis across eukaryotes. The evolutionarily conserved GATOR complex regulates mTORC1 signalling through Rag GTPases, and GATOR1 displays GTPase activating protein (GAP) activity for RAGA and RAGB (RAGA/B) and GATOR2 has been proposed to be ... More
    Ionizing radiation induces endothelial transdifferentiation of glioblastoma stem-like cells through the Tie2 signaling pathway.
    Authors:Deshors P, Toulas C, Arnauduc F, Malric L, Siegfried A, Nicaise Y, Lemarié A, Larrieu D, Tosolini M, Cohen-Jonathan Moyal E, Courtade-Saidi M, Evrard SM
    Journal:Cell Death Dis
    PubMed ID:31659157
    'Glioblastomas (GBM) are brain tumors with a poor prognosis despite treatment that combines surgical resection and radio-chemotherapy. These tumors are characterized by abundant vascularization and significant cellular heterogeneity including GBM stem-like cells (GSC) which contribute to tumor aggressiveness, resistance, and recurrence. Recent data has demonstrated that GSC are directly involved ... More