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Ibandronate-[13C,d3] sodium

General Information
Catalog: BLP-012683
CAS: 1261395-45-2
Molecular Formula: C8[13C]H19D3NNaO7P2
Molecular Weight: 345.22
Chemical Structure
Ibandronate-[13C,d3] sodium
Description Ibandronate-[13C,d3] sodium is the labelled analogue of Ibandronate sodium. Ibandronate sodium is a potent bisphosphonate drug and it can be used in the treatment of osteoporosis and metastasis-associated skeletal fractures in people with cancer.
Synonyms Ibandronate 13C D3 sodium
Related CAS 138844-81-2 (unlabelled)
Purity 95% by HPLC; 98% atom 13C; 98% atom D

Ibandronate-[13Cd3] sodium, an isotopically labeled compound with wide-ranging applications in scientific and medical fields, is a marvel of modern research. Here are the key applications of Ibandronate-[13Cd3] sodium:

Pharmacokinetic Studies: Delving into the intricate world of pharmacokinetics, Ibandronate-[13Cd3] sodium plays a pivotal role in unraveling the absorption, distribution, metabolism, and excretion pathways of ibandronate. By meticulously tracking the labeled compound, researchers gain unparalleled insights into the drug's behavior within the body. This knowledge is instrumental in refining dosing strategies and enhancing therapeutic outcomes, paving the way for more effective treatment regimens.

Bone Metabolism Research: Embarking on a journey through bone metabolism research, scientists harness the power of this labeled compound to explore the intricate mechanisms underlying bisphosphonates like ibandronate. By tracing the incorporation of the labeled drug into bone tissue, researchers can evaluate its impact on both bone resorption and formation processes. This nuanced understanding contributes significantly to elucidating the efficacy of these drugs in combating osteoporosis and other bone-related ailments.

Metabolomics: Within the realm of metabolomics, Ibandronate-[13Cd3] sodium emerges as a beacon serving as an internal standard for quantifying ibandronate and its metabolites in biological samples. The distinctive isotopic label acts as a guiding light, enabling researchers to distinguish the compound from endogenous substances with unparalleled clarity. This enhanced accuracy and reproducibility in metabolomics analyses are indispensable for unraveling the complexities of metabolic alterations in disease states and understanding responses to treatment, paving the way for breakthroughs in personalized medicine.

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