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1335110-44-5

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1335110-44-5 Usage

General Description

Rosuvastatin EP impurity H is a chemical impurity that is commonly found in pharmaceutical preparations of rosuvastatin, a medication used to lower cholesterol levels in the blood. It is a byproduct of the synthesis of rosuvastatin and is classified as an impurity based on its presence in the final drug product at a level above a specified threshold. The exact structure and properties of rosuvastatin EP impurity H are not publicly disclosed due to proprietary reasons, but it is important for pharmaceutical manufacturers to monitor and control its presence in rosuvastatin formulations to ensure product quality and safety for patients. Additionally, regulatory authorities such as the European Pharmacopoeia (EP) set limits for impurities like rosuvastatin EP impurity H in drug products to ensure their safety and efficacy.

Check Digit Verification of cas no

The CAS Registry Mumber 1335110-44-5 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,3,3,5,1,1 and 0 respectively; the second part has 2 digits, 4 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 1335110-44:
(9*1)+(8*3)+(7*3)+(6*5)+(5*1)+(4*1)+(3*0)+(2*4)+(1*4)=105
105 % 10 = 5
So 1335110-44-5 is a valid CAS Registry Number.

1335110-44-5Upstream product

1335110-44-5Downstream Products

1335110-44-5Relevant articles and documents

Potential phototoxicity of rosuvastatin mediated by its dihydrophenanthrene-like photoproduct

Nardi, Giacomo,Lhiaubet-Vallet, Virginie,Leandro-Garcia, Paula,Miranda, Miguel Angel

, p. 1779 - 1785 (2011)

In this work, rosuvastatin has been used to gain insight into the molecular basis of statin photosensitization. This lipid-lowering drug, also known as "superstatin", contains a 2-vinylbiphenyl-like moiety and has been previously described to decompose under solar irradiation, yielding stable dihydrophenanthrene analogues. During photophysical characterization of rosuvastatin, only a long-lived transient at ca. 550 nm was observed and assigned to the primary photocyclization intermediate. Thus, the absence of detectable triplet-triplet absorption and the low yield of fluorescence rules out the role of the parent drug as an efficient sensitizer. In this context, the attention has been placed on the rosuvastatin main photoproduct (ppRSV). Indeed, the photobehavior of this dihydrophenanthrene-like compound presents the essential components needed for an efficient biomolecule photosensitizer i.e. (i) a high intersystem crossing quantum yield (ΦISC = 0.8), (ii) a triplet excited state energy of ca. 67 kcal mol-1, and (iii) a quantum yield of singlet oxygen formation (ΦΔ) of 0.3. Furthermore, laser flash photolysis studies revealed a triplet-triplet energy transfer from the triplet excited state of ppRSV to thymidine, leading to the formation of cyclobutane thymidine dimers, an important type of DNA lesion. Finally, tryptophan has been used as a probe to investigate the type I and/or type II character of ppRSV-mediated oxidation. In this way, both an electron transfer process giving rise to the tryptophanyl radical and a singlet oxygen mediated oxidation were observed. On the basis of the obtained results, rosuvastatin, through its major photoproduct ppRSV, should be considered as a potential sensitizer.

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