Stability indicating UV visible spectrophotometric method for tezepelumab development and validation

Authors

  • Ch.Ajay Kumar,M Department of Pharmaceitical Analysis, A.M.Reddy Memorial College of Pharmacy, Narasaraopet, 522412, A.P, India
  • A.Naveena Department of Pharmaceitical Analysis, A.M.Reddy Memorial College of Pharmacy, Narasaraopet, 522412, A.P, India
  • D.Lalitha Department of Pharmaceitical Analysis, A.M.Reddy Memorial College of Pharmacy, Narasaraopet, 522412, A.P, India
  • K.Anand Department of Pharmaceitical Analysis, A.M.Reddy Memorial College of Pharmacy, Narasaraopet, 522412, A.P, India
  • Sk.Nagoor Basha Department of Pharmaceitical Analysis, A.M.Reddy Memorial College of Pharmacy, Narasaraopet, 522412, A.P, India

DOI:

https://doi.org/10.47957/ijpda.v11i2.539

Keywords:

Spectroscopy, electromagnetic radiation, Tezepelumab, ICH

Abstract

Spectroscopy is the study of how electromagnetic radiation interacts with matter. Electromagnetic radiation is frequently released as matter relaxes back to its initial (ground) state after being energised (stimulated) by the application of thermal, electrical, nuclear, or radiant energy. The purpose of this research with the results of this work, we verify a stability-indicating UV approach for the measurement of tezepelumab in bulk and pharmaceutical formulations. The determination of the Tezepelumab dosage form was a good fit for the proposed UV-Spectrophotometric approaches. Every parameter of the created methods complied with the requirements of the ICH standards for method validation. It is claimed that the developed UV methods for the estimate of tezepelumab are quick, easy to use, precise, accurate, sensitive, affordable, and repeatable within the defined method parameter.

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Published

2023-08-10
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How to Cite

M, C. K., N. A, L. D, A. K, and N. B. Sk. “Stability Indicating UV Visible Spectrophotometric Method for Tezepelumab Development and Validation”. International Journal of Pharmaceutics and Drug Analysis, vol. 11, no. 2, Aug. 2023, pp. 42-49, doi:10.47957/ijpda.v11i2.539.

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