Date published: 2026-6-6

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CruzFluor Conjugates

Santa Cruz Biotechnology now offers a broad range of CruzFluor Conjugates for use in various applications. CruzFluor conjugates represent a sophisticated class of fluorescent dyes linked to molecules that target specific biological structures or molecules, providing essential tools in the field of molecular biology and biochemistry for visualizing complex biological processes. These conjugates are utilized extensively in fluorescence microscopy, flow cytometry, and other imaging techniques to study protein localization, cellular tracking, and biomolecular interactions within live and fixed cells. The unique property of CruzFluor conjugates lies in their ability to emit bright, stable fluorescence, which allows for the detailed observation of cellular components and dynamics over extended periods without significant photobleaching. This makes them invaluable in live-cell imaging experiments where real-time tracking of cellular events is crucial. In addition to their use in basic biological research, CruzFluor conjugates are employed in material science to investigate biomaterial interactions and in environmental science to trace biological contaminants. Their versatility extends to the study of cellular mechanics, where they illuminate the intricacies of cell movement and organization under various physiological conditions. By enabling precise and vibrant imaging, CruzFluor conjugates enhance our understanding of molecular and cellular architecture, contributing significantly to advancements in non-medical scientific research. View detailed information on our available CruzFluor Conjugates by clicking on the product name.

Items 11 to 14 of 14 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Phalloidin CruzFluor™ 700 Conjugate

sc-363799
300 tests
$301.00
(0)

Phalloidin CruzFluor™ 700 Conjugate is a specialized fluorescent probe designed to selectively bind to F-actin, offering exceptional sensitivity for visualizing cytoskeletal architecture. Its unique CruzFluor™ 700 conjugation enhances signal intensity and stability under various imaging conditions. The distinct spectral properties allow for precise differentiation in multi-color experiments, enabling in-depth analysis of actin dynamics and cellular morphology with remarkable clarity and detail.

Phalloidin CruzFluor™ 750 Conjugate

sc-363800
300 tests
$578.00
1
(0)

Phalloidin CruzFluor™ 750 Conjugate is an advanced fluorescent marker that exhibits a high affinity for F-actin, facilitating detailed studies of cytoskeletal structures. Its unique CruzFluor™ 750 conjugation provides enhanced brightness and photostability, making it ideal for prolonged imaging sessions. The distinct emission spectrum allows for effective multiplexing in fluorescence microscopy, enabling researchers to explore complex cellular interactions and actin filament organization with unparalleled resolution.

Phalloidin CruzFluor™ 514 Conjugate

sc-363792
300 tests
$181.00
(0)

Phalloidin CruzFluor™ 514 Conjugate is a highly specialized fluorescent marker that exhibits exceptional binding affinity for F-actin, facilitating detailed studies of cytoskeletal dynamics. The unique CruzFluor™ 514 conjugation enhances photostability and brightness, enabling prolonged observation of cellular structures. Its distinct spectral properties allow for multiplexing in imaging applications, providing insights into actin filament organization and cellular behavior with remarkable clarity.

Phalloidin CruzFluor™ 680 Conjugate

sc-363798
300 tests
$375.00
(0)

Phalloidin CruzFluor™ 680 Conjugate is a highly specific fluorescent marker that targets F-actin, allowing for detailed examination of cytoskeletal dynamics. Its unique conjugation with CruzFluor™ 680 provides enhanced brightness and photostability, making it ideal for long-term imaging studies. The distinct emission spectrum facilitates effective multiplexing in fluorescence assays, enabling researchers to explore intricate cellular structures and actin filament interactions with high clarity and resolution.