Analysis of capivasertib via ion-pairing with erythrocin B as a spectrofluorometric probe

  • Sci Rep. 2026 May 1;16(1):14019. doi: 10.1038/s41598-026-49688-5.
Hesham Salem  1 Hytham Raafat  2 Alyaa Alaa  2 Belal M Abdelghany  2 Anas Mahmoud  2 Abdelrahman Medhat  2 Omar Saied  2 Michael Amir  2 Amany Abdelaziz  2
Affiliations
  • 1. Pharmaceutical chemistry department, faculty of pharmacy, Deraya University, New Minia, Egypt. [email protected].
  • 2. Pharmaceutical chemistry department, faculty of pharmacy, Deraya University, New Minia, Egypt.
Abstract

A novel, eco-friendly spectrofluorimetric method has been developed for the sensitive determination of capivasertib, based on resonance Rayleigh scattering enhancement. Unlike previously reported methods, this approach utilizes erythrosine B as a safer ion-pairing reagent in an acidic aqueous medium, eliminating the need for organic Solvents or complex extraction steps. The interaction between capivasertib and erythrosine B leads to a stable ion-pair complex, producing a strong Rayleigh scattering signal measurable at λex530/λem550 nm. The method demonstrated excellent linearity over the range of 20-2000 ng mL⁻¹, with a detection limit of 5.61 ng mL⁻¹ and a quantification limit of 17 ng mL⁻¹. All analytical parameters were optimized and validated according to ICH guidelines. To holistically substantiate sustainability, the method's environmental and practical profiles were appraised using all contemporary greenness/whiteness/applicability metrics employed in this work: Analytical Eco-Scale (ESA), NEMI pictogram, GAPI, AGREE, and AGREE-prep for sample-preparation greenness; the White Analytical Chemistry RGB12 model (whiteness); and the Blue Applicability Grade Index (BAGI) (blueness/applicability). This work introduces a greener, simpler, and more accessible alternative for capivasertib analysis, with potential applications in pharmaceutical quality control and routine laboratory testing.

Keywords
AGREE; AGREE-prep; BAGI.; Capivasertib; Eco-Scale; Erythrosin B; GAPI; Green analytical chemistry; NEMI; RGB12; Resonance Rayleigh scattering.
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