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113 results for iFluor®

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iFluor® 647, Tyramide

iFluor® 647, Tyramide

Supplier: AAT BIOQUEST

For many immunohistochemical (IHC) applications, the traditional enzymatic amplification procedures are sufficient for achieving adequate antigen detection.

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iFluor® 790, Maleimide

iFluor® 790, Maleimide

Supplier: AAT BIOQUEST

In vivo fluorescence imaging uses a sensitive camera to detect fluorescence emission from fluorophores in whole-body living small animals.

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iFluor® 860, Acid

iFluor® 860, Acid

Supplier: AAT BIOQUEST

In vivo fluorescence imaging uses a sensitive camera to detect fluorescence emission from fluorophores in whole-body living small animals.

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iFluor® 800, Acid

iFluor® 800, Acid

Supplier: AAT BIOQUEST

In vivo fluorescence imaging uses a sensitive camera to detect fluorescence emission from fluorophores in whole-body living small animals.

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iFluor® 810, Acid

iFluor® 810, Acid

Supplier: AAT BIOQUEST

In vivo fluorescence imaging uses a sensitive camera to detect fluorescence emission from fluorophores in whole-body living small animals.

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iFluor® 560, Succinimidyl Ester

iFluor® 560, Succinimidyl Ester

Supplier: AAT BIOQUEST

Cy3 is the least fluorescent dyes among all the Cy dyes.

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iFluor® 568, Tyramide

iFluor® 568, Tyramide

Supplier: AAT BIOQUEST

For many immunohistochemical (IHC) applications, the traditional enzymatic amplification procedures are sufficient for achieving adequate antigen detection.

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iFluor® 488, Maleimide

iFluor® 488, Maleimide

Supplier: AAT BIOQUEST

Although FITC is still the most popular fluorescent labeling dye for preparing green fluorescent bioconjugates, there are certain limitations with FITC, such as severe photobleaching for microscope imaging and pH-sensitive fluorescence.

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iFluor® 790, Amine

iFluor® 790, Amine

Supplier: AAT BIOQUEST

In vivo fluorescence imaging uses a sensitive camera to detect fluorescence emission from fluorophores in whole-body living small animals.

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iFluor® 840, Maleimide fluorescent probe

iFluor® 840, Maleimide fluorescent probe

Supplier: AAT BIOQUEST

In vivo fluorescence imaging uses a sensitive camera to detect fluorescence emission from fluorophores in whole-body living small animals.

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iFluor® 840, Acid

iFluor® 840, Acid

Supplier: AAT BIOQUEST

in vivo fluorescence imaging uses a sensitive camera to detect fluorescence emission from fluorophores in whole-body living small animals.

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iFluor® 810, Maleimide

iFluor® 810, Maleimide

Supplier: AAT BIOQUEST

In vivo fluorescence imaging uses a sensitive camera to detect fluorescence emission from fluorophores in whole-body living small animals.

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iFluor® 594 fluorescent probe

iFluor® 594 fluorescent probe

Supplier: AAT BIOQUEST

The tetrazine-trans-cyclooctene (TCO) ligation constitutes a non-toxic biomolecule labeling method of unparalleled speed.

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iFluor® 555 fluorescent probe

iFluor® 555 fluorescent probe

Supplier: AAT BIOQUEST

The tetrazine-trans-cyclooctene (TCO) ligation constitutes a non-toxic biomolecule labeling method of unparalleled speed.

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iFluor® 488 fluorescent probe

iFluor® 488 fluorescent probe

Supplier: AAT BIOQUEST

The tetrazine-trans-cyclooctene (TCO) ligation constitutes a non-toxic biomolecule labeling method of unparalleled speed.

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iFluor® 555 fluorescent probe

iFluor® 555 fluorescent probe

Supplier: AAT BIOQUEST

The tetrazine-trans-cyclooctene (TCO) ligation constitutes a non-toxic biomolecule labeling method of unparalleled speed.

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iFluor® 594 fluorescent probe

iFluor® 594 fluorescent probe

Supplier: AAT BIOQUEST

The tetrazine-trans-cyclooctene (TCO) ligation constitutes a non-toxic biomolecule labeling method of unparalleled speed.

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iFluor® 594, Styramide *Superior Replacement for Alexa Fluor 594 tyramide*

iFluor® 594, Styramide *Superior Replacement for Alexa Fluor 594 tyramide*

Supplier: AAT BIOQUEST

Power Styramide™ Signal Amplification (PSA™) system is one of the most sensitive methods that can detect extremely low-abundance targets in cells and tissues with improved fluorescence signal 10 - 50 times higher than the widely used tyramide (TSA) reagents.

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iFluor® 546, Styramide "Superior Replacement for Alexa Fluor 546 tyramide"

iFluor® 546, Styramide "Superior Replacement for Alexa Fluor 546 tyramide"

Supplier: AAT BIOQUEST

Power Styramide™ signal amplification (PSA™) system is one of the most sensitive methods that can detect extremely low-abundance targets in cells and tissues with improved fluorescence signal 10 to 50 times higher than the widely used tyramide (TSA) reagents.

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iFluor® 450, Styramide *Superior Replacement for Opal Polaris 480*

iFluor® 450, Styramide *Superior Replacement for Opal Polaris 480*

Supplier: AAT BIOQUEST

Power Styramide™ Signal Amplification (PSA™) system is one of the most sensitive methods that can detect extremely low-abundance targets in cells and tissues with improved fluorescence signal 10 to 50 times higher than the widely used tyramide (TSA) reagents.

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iFluor® 750, Styramide *Superior Replacement for Alexa Fluor 750 tyramide*

iFluor® 750, Styramide *Superior Replacement for Alexa Fluor 750 tyramide*

Supplier: AAT BIOQUEST

Power Styramide™ Signal Amplification (PSA™) system is one of the most sensitive methods that can detect extremely low-abundance targets in cells and tissues with improved fluorescence signal 10 to 50 times higher than the widely used tyramide (TSA) reagents.

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iFluor® 440, Styramide *Superior Replacement for Alexa Fluor 440 tyramide*

iFluor® 440, Styramide *Superior Replacement for Alexa Fluor 440 tyramide*

Supplier: AAT BIOQUEST

Power Styramide™ Signal Amplification (PSA™) system is one of the most sensitive methods that can detect extremely low-abundance targets in cells and tissues with improved fluorescence signal 10 to 50 times higher than the widely used tyramide (TSA) reagents.

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iFluor® 568, Styramide *Superior Replacement for Alexa Fluor 568 tyramide*

iFluor® 568, Styramide *Superior Replacement for Alexa Fluor 568 tyramide*

Supplier: AAT BIOQUEST

Power Styramide™ Signal Amplification (PSA™) system is one of the most sensitive methods that can detect extremely low-abundance targets in cells and tissues with improved fluorescence signal 10 to 50 times higher than the widely used tyramide (TSA) reagents.

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