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Netarsudil

Netarsudil Impurities

Netarsudil is a Rho kinase inhibitor used in ophthalmology for the reduction of intraocular pressure in patients with open-angle glaucoma or ocular hypertension. Its impurity profile includes structurally related analogs, residual solvents, and degradation products formed under stress conditions such as hydrolysis, oxidation, and photolysis. Furthermore, typical degradation pathways involve oxidative modification of the amide bond, hydrolytic cleavage of ester linkages, and rearrangement of substituents within the heteroaromatic scaffold. These impurities may affect the drug’s potency, stability, and safety. Importantly, all impurities are structurally characterized and qualified according to ICH guidelines for toxicological assessment and analytical validation.

Netarsudil EP Impurities

Pharmacopeial and non-pharmacopeial Netarsudil impurity compounds are available in compliance with European Pharmacopoeia (EP) specifications. These standards support analytical method development, impurity profiling, and long-term stability studies. In addition, EP traceable materials are supplied with validated analytical data, including purity, structural confirmation, and spectral characterization.

Netarsudil Related Compounds

Structurally related compounds and synthetic analogs associated with Netarsudil are included for impurity identification, toxicological qualification, and regulatory submission. Consequently, these related substances are used in forced degradation studies, genotoxicity assessments, and impurity threshold evaluations. They are essential for understanding the impurity profile and ensuring compliance with regulatory limits.

Netarsudil Impurity Reference Standards

Netarsudil impurity reference standards are provided with validated analytical data, including purity, NMR, MS, and full Certificates of Analysis. These standards are used in pharmaceutical research, method validation, and GMP-compliant quality control. Additionally, EP/USP traceable entries are available upon request and are routinely re-tested to ensure consistency and reliability.

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CAS No.

: 611-01-8

Mol F.

: C9H10O2

Mol W.

: 150.2

Cat No.

: SA93503

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CAS No.

: 73401-74-8

Mol F.

: C9H10O3

Mol W.

: 166.2

Cat No.

: SA93512

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CAS No.

: 23687-26-5

Mol F.

: C9H8N2

Mol W.

: 144.2

Cat No.

: SA93507

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CAS No.

: 1254032-66-0

Mol F.

: C28H27N3O3

Mol W.

: 453.5

Cat No.

: SA93501

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CAS No.

: 2684301-49-1

Mol F.

: C19H21NO4

Mol W.

: 327.4

Cat No.

: SA93500

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CAS No.

: 2097334-18-2

Mol F.

: C28H27NO5

Mol W.

: 457.5

Cat No.

: SA93506

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CAS No.

: 2097334-21-7

Mol F.

: C28H27NO5

Mol W.

: 457.5

Cat No.

: SA93504

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CAS No.

: 2377238-62-3

Mol F.

: C19H19N3O2

Mol W.

: 321.4

Cat No.

: SA93511

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CAS No.

: 2309668-15-1

Mol F.

: C19H19N3O2

Mol W.

: 321.4

Cat No.

: SA93510

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CAS No.

: 2098444-97-2

Mol F.

: C24H29NO6

Mol W.

: 427.5

Cat No.

: SA93509

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CAS No.

: 2097334-22-8

Mol F.

: C34H38N2O7

Mol W.

: 586.7

Cat No.

: SA93505

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CAS No.

: 1253955-19-9

Mol F.

: C33H35N3O5

Mol W.

: 553.7

Cat No.

: SA93508

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CAS No.

: 1254032-67-1

Mol F.

: C28H27N3O3

Mol W.

: 453.5

Cat No.

: SA93502

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