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iFluor® 560, Succinimidyl Ester
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Cy3 is the least fluorescent dyes among all the Cy dyes.
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iFluor® 594 sonde fluorescente
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The tetrazine-trans-cyclooctene (TCO) ligation constitutes a non-toxic biomolecule labeling method of unparalleled speed.
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iFluor® 555 sonde fluorescente
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The tetrazine-trans-cyclooctene (TCO) ligation constitutes a non-toxic biomolecule labeling method of unparalleled speed.
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iFluor® 488 sonde fluorescente
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 sonde fluorescente
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 sonde fluorescente
Supplier: AAT BIOQUEST
The tetrazine-trans-cyclooctene (TCO) ligation constitutes a non-toxic biomolecule labeling method of unparalleled speed.
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iFluor® 647 sonde fluorescente
Supplier: AAT BIOQUEST
The tetrazine-trans-cyclooctene (TCO) ligation constitutes a non-toxic biomolecule labeling method of unparalleled speed.
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iFluor® 840, Succinimidyl Ester
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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, Succinimidyl Ester
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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® 647, Styramide *Superior Replacement for Alexa Fluor 647 tyramide*
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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® 700, Styramide *Superior Replacement for Alexa Fluor 700 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® 840, Maleimide sonde fluorescente
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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® 790, Styramide *Superior Replacement for Alexa Fluor 790 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® 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® 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*
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*
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*
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® 350, Styramide *Superior Replacement for Alexa Fluor 350 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® 488, Styramide *Superior Replacement for Alexa Fluor 488 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® 555, Styramide *Superior Replacement for Alexa Fluor 555 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® 680, Styramide *Superior Replacement for Alexa Fluor 680 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® 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.