Date published: 2025-9-5

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Isotopically Labeled Laboratory Reagents

Santa Cruz Biotechnology now offers a broad range of isotopically labeled laboratory compounds for use in various applications. Isotopically labeled compounds are molecules in which specific atoms have been substituted with their isotopes, serving as indispensable tools in scientific research for tracing and analyzing intricate chemical, biological, and environmental processes. These compounds are essential in the field of analytical chemistry, where they are utilized as internal standards to enhance the precision and accuracy of mass spectrometry and nuclear magnetic resonance (NMR) spectroscopy. In biochemistry and molecular biology, isotopically labeled compounds enable researchers to investigate metabolic pathways, protein dynamics, and molecular interactions, providing profound insights into the fundamental mechanisms of life. Environmental scientists rely on these compounds to trace the movement and transformation of elements within ecosystems, thereby improving our understanding of biogeochemical cycles and the behavior of pollutants. Furthermore, in materials science, isotopically labeled compounds are pivotal in studying material degradation mechanisms and in the development of novel materials with superior properties. These compounds also find applications in forensic science, where they aid in the identification and quantification of substances in complex mixtures. The use of isotopically labeled compounds allows researchers to conduct highly specific and sensitive studies, significantly contributing to advancements across various scientific disciplines. The ability to track atoms and molecules with unparalleled precision makes isotopically labeled laboratory compounds invaluable in driving innovation and expanding our knowledge in numerous research areas. View detailed information on our available isotopically labeled laboratory compounds by clicking on the product name.

Items 41 to 44 of 44 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Diisononyl Phthalate-d4

1332965-90-8sc-498727
sc-498727A
sc-498727B
5 mg
100 mg
250 mg
$240.00
$505.00
$964.00
(0)

Diisononyl Phthalate-d4 is a deuterated phthalate that exhibits unique isotopic labeling properties, enhancing its utility in tracing molecular pathways. The incorporation of deuterium modifies its NMR characteristics, allowing for precise monitoring of reaction dynamics. Its robust hydrophobic nature promotes interactions with lipid membranes, making it ideal for studying partitioning behaviors. Furthermore, its distinct isotopic signature aids in elucidating metabolic pathways and environmental interactions in complex systems.

1-Methylnicotinamide-d3 Iodide

6456-44-6 unlabeledsc-484030
sc-484030A
10 mg
100 mg
$300.00
$2040.00
(0)

1-Methylnicotinamide-d3 Iodide serves as a valuable isotopically labeled compound for probing metabolic pathways. Its deuterated structure facilitates advanced tracing techniques in biochemical research, allowing for detailed analysis of metabolic flux. The compound's unique interactions with specific receptors and transport proteins can alter cellular signaling dynamics. Furthermore, its stability under various conditions makes it an ideal candidate for kinetic studies, providing insights into reaction mechanisms and enzyme activity.

(R,S)-N-Nitroso Anatabine-2,4,5,6-d4 (Major)

1020719-69-0sc-477563
sc-477563A
1 mg
10 mg
$404.00
$2862.00
(0)

(R,S)-N-Nitroso Anatabine-2,4,5,6-d4 is an isotopically labeled compound notable for its unique isotopic signature, which enhances its utility in tracing molecular interactions. The presence of deuterium alters reaction kinetics, allowing for detailed studies of reaction mechanisms and pathways. Its nitroso functionality can engage in selective electrophilic reactions, providing insights into its role in redox processes and interactions with nucleophiles in various experimental setups.

(R)-N′-Nitrosonornicotine-d4

61601-78-3 unlabeledsc-478067
sc-478067A
1 mg
10 mg
$700.00
$5600.00
(0)

(R)-N'-Nitrosonornicotine-d4 is a deuterated analog of nor-nicotine, characterized by its nitroso functionality, which introduces distinct electronic properties and steric effects. The incorporation of deuterium enhances the stability of reaction intermediates, allowing for detailed kinetic studies. Its isotopic labeling facilitates advanced spectroscopic techniques, enabling researchers to investigate molecular interactions and reaction pathways with greater precision, thereby providing insights into complex biochemical processes.