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Lornoxicam Impurity 20

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For Research Use Only | Not For Clinical Use
CATAPB106820591
CAS106820-59-1
Molecular Weight307.34
Molecular FormulaC10H13NO6S2

What is the molecular weight of Lornoxicam Impurity 20?

The molecular weight of Lornoxicam Impurity 20 is 307.34.

What is the CAS number of Lornoxicam Impurity 20?

The CAS number of Lornoxicam Impurity 20 is 106820-59-1.

What is the molecular formula of Lornoxicam Impurity 20?

The molecular formula of Lornoxicam Impurity 20 is C10H13NO6S2.

What is the chemical structure of Lornoxicam Impurity 20?

The chemical structure of Lornoxicam Impurity 20 consists of 10 carbon atoms, 13 hydrogen atoms, 1 nitrogen atom, 6 oxygen atoms, and 2 sulfur atoms.

Is Lornoxicam Impurity 20 a pure compound?

No, Lornoxicam Impurity 20 is an impurity of lornoxicam.

What role does Lornoxicam Impurity 20 play in pharmaceutical manufacturing?

Lornoxicam Impurity 20 is a known impurity that needs to be monitored and controlled in the manufacturing of lornoxicam to ensure product quality.

How is Lornoxicam Impurity 20 synthesized?

The synthesis of Lornoxicam Impurity 20 may involve multiple steps using specific starting materials and reaction conditions.

What are some analytical techniques used to detect Lornoxicam Impurity 20 in pharmaceutical products?

Analytical techniques such as chromatography (HPLC, GC), spectroscopy (NMR, MS), and elemental analysis may be employed to detect Lornoxicam Impurity 20.

What are the potential risks associated with the presence of Lornoxicam Impurity 20 in pharmaceutical products?

The presence of impurities like Lornoxicam Impurity 20 may affect the efficacy, safety, and stability of pharmaceutical products.

How can pharmaceutical companies ensure the quality and purity of lornoxicam products with respect to Lornoxicam Impurity 20?

Pharmaceutical companies can develop and validate analytical methods for detecting and quantifying Lornoxicam Impurity 20, establish stringent quality control measures, and conduct regular monitoring and testing throughout the manufacturing process.

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