Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Larotrectinib or VITRAKVI is a first-generation pan-tropomyosin-related kinase (TRK) inhibitor. It is a highly selective, tumor-agnostic agent which has been approved in both adult and pediatric patients. Three different analytical methods for estimation of such important drug were developed. Two simple spectrophotometric methods were developed: Method I involves measuring the absorbance of different concentrations of the larotrectinib at 264 nm in concentrations ranging from 2 to 15 μg/mL in ethanol while first derivative peak amplitude (Method II) was derived and measured at 278 nm in concentration ranges from 2 to 15 μg/mL. A spectrofluorimetric technique was carried out by creating an ion pair complex through the interaction of larotrectinib with eosin Y in the presence of a Britton-Robinson buffer at pH 3.5. The fluorescence quenching of the resulting complex was then detected at 535 nm as the emission peak following excitation at 265 nm. The spectrofluorimetric technique exhibited high sensitivity and linearity across concentration ranging between 0.5 and 10 μg/mL. These three methods were effectively utilized to quantify larotrectinib in both its raw form and its pharmaceutical formulation. Greenness of the developed methodologies was concerned and evaluated via three different tools including analytical ecoscale, green analytical procedure index (GAPI), and analytical greenness metric approach (AGREE).

Download full-text PDF

Source
http://dx.doi.org/10.1002/bio.70141DOI Listing

Publication Analysis

Top Keywords

spectrofluorimetric technique
8
green sensitive
4
sensitive investigation
4
investigation estimation
4
estimation anticancer
4
anticancer medication
4
medication raw
4
raw material
4
material dosage
4
dosage form
4

Similar Publications

Photophysical studies on the interaction of small molecules with various forms of nucleic acids are attracting attention nowadays in order to delineate the molecular level mechanism of various biological processes occurring in vivo. Herein, we employed vivid steady-state and time-resolved spectroscopic techniques to elucidate the detailed characterization of the binding interaction of a biologically active cationic dye thioflavin T (ThT) with double and triple helical forms of RNA - A.U duplex and U.

View Article and Find Full Text PDF

Complexation-based spectrofluorimetric method for besifloxacin determination: Combined experimental and computational insights.

Anal Chim Acta

October 2025

Analytical Chemistry Department, Faculty of Pharmacy, Minia University, Minia, 61511, Egypt; Analytical Chemistry Department, Faculty of Pharmacy, Minia National University, New Minia, 61511, Egypt. Electronic address:

Fluorescence-based analytical methods offer high sensitivity, cost-effectiveness, and simplicity for pharmaceutical analysis. Besifloxacin hydrochloride (Bfln.HCl), a fluoroquinolone antibiotic used to treat eye infections, exhibits native fluorescence that can be enhanced in acidic media.

View Article and Find Full Text PDF

In the current study, the triazole antifungal terconazole (TRZ) was determined using a novel, extremely sensitive, and environmentally friendly spectrofluorimetric approach. A methanolic solution of TRZ exhibited strong native fluorescence at 373 nm when excited at 241 nm. With a correlation coefficient of 0.

View Article and Find Full Text PDF

A novel, eco-friendly deconvoluted synchronous spectrofluorimetric method has been developed and validated for the simultaneous determination of domperidone (DOM) and safinamide (SAF), a potential combination used to address Parkinson's disease-associated gastrointestinal dysfunction. Their combined administration necessitates a reliable analytical method for therapeutic monitoring and formulation quality control. Traditional spectrofluorimetric techniques fail to resolve the significant spectral overlap between these two compounds.

View Article and Find Full Text PDF

This study describes the development and validation of a novel photochemical sensing platform based on the fluorescence quenching mechanism between acid red 51 (AR51) and solifenacin succinate (SLF). Upon excitation at 530 nm, AR51 exhibits native fluorescence at 554 nm, which undergoes significant quenching in the presence of SLF through ion pair complex formation. The photophysical interaction was characterized by Stern-Volmer analysis, revealing a quenching constant of 1.

View Article and Find Full Text PDF