Background: Fluoropyrimidines are widely used in the treatment of various solid tumors. One-third of cancer patients develop severe treatment-related toxicity. A part of fluoropyrimidine-related toxicity arises due to impaired activity of dihydropyrimidine dehydrogenase (DPD) caused by genetic variants in the DPYD gene. Objective: This study aims to determine the frequency of DPYD mutations among patients with adverse effects of 5-fluorouracil therapy. Materials and Methods: This cross-sectional study recruited 46 patients with 5-FU adverse effects. All demographic, clinical, and laboratory findings were recorded. Molecular testing was conducted to detect the DPYD mutation using the PGX-5FU StripAssay® kit, which identifies the IVS14 + 1G>A DPYD variant (DPYD*2A), the most common DPYD mutation. Results: The majority of the 46 recruited Iraqi Arab patients were females (71.74%), and the most common age groups were 41–50 and 51–60 years (26.08%) each. The most common cancer was breast cancer (45.65%). Poorly differentiated tumors were the most common grade (60.86%), and stage 3 was the most common tumor stage (47.82%). 5-FU was used as a single agent in 19.57%. The most common adverse effects reported were alopecia, vomiting, anemia, fatigue, diarrhea, and neutropenia. Molecular testing revealed that all patients had the wild-type DPYD IVS14 + 1G>A genotype. Conclusions: This study supports the evidence that routine testing for DPYP mutation in patients receiving 5-FU is not cost-effective and that selected patients can be tested if they show toxic reactions suggestive of DPD deficiency. Testing for four common variants of the DPYD gene can achieve better results.
New mixed ligand complexes of New Schiff base 4,4'- ((naphthalen-1-ylimino) methylene) dibenzene-1,3-diol and 8-hydroxy quinoline: Synthesis, Spectral Characterization, Thermal studies and Biological Activities
Green biosynthesized selenium nanoparticles from
The Co (II), Ni (II) ,Cu(II), Zn(II) ,Cd(II) and Hg(II) complexes of mixed of amino acid (L-Alanine ) and Trimethoprim antibiotic were synthesized. The complexes were characterized using melting point, conductivity measurement and determination the percentage of the metal in the complexes by flame (AAS). Magnetic susceptibility, Spectroscopic Method [FTIR and UV-Vis]. The general formula have been given for the prepared mixed ligand complexes [M(Ala)2(TMP)(H2O)] where L- alanine (abbreviated as (Ala ) = (C5H9NO2) deprotonated primary ligand, L- Alanine ion .= (C5H8NO2 -) Trimethoprim (abbreviated as (TMP ) = C10H11N3O3S M(II) = Co (II),Ni(II) ,Cu(II), Zn(II) ,Cd(II) and Hg(II). The results showed that the deprotonated L- Alanine by KOH (Ala
... Show MoreThe adsorption ability of Iraqi initiated calcined granulated montmorillonite to adsorb Symmetrical Schiff Base Ligand 4,4’-[hydrazine-1, 2-diylidenebis (methan-1-yl-1-ylidene)) bis (2-methoxyphenol)] derived from condensation reaction of hydrazine hydrate and 4-hydroxy-3-methoxybenzaldehyde, from aqueous solutions has been investigated through columnar method.The ligand (H2L) adsorption found to be dependent on adsorbent dosage, initial concentration and contact time.All columnar experiments were carried out at three different pH values (5.5, 7and 8) using buffer solutions at flow rate of (3 drops/ min.),at room temperature (25±2)°C. The experimental isotherm data were analyzed using Langmuir, Freundlich and Temkin equations. The monol
... Show MoreEnticed by the present scenario of infectious diseases, four new Co(II), Ni(II), Cu(II), and Cd(II) complexes of Schiff base ligand were synthesized from 6,6′-((1E-1′E)(phenazine-2,3-dielbis(azanylidene)-bis-(methanylidene)-bis-(3-(diethylamino)phenol)) (
This research explores the use of solid polymer electrolytes (SPEs) as a conductive medium for sodium ions in sodium‐ion batteries, presenting a possible alternative to traditional lithium‐ion battery technology. The researchers prepare SPEs with varying molecular weight ratios of polyacrylonitrile (PAN) and sodium tetrafluoroborate (NaBF4) using a solution casting method with dimethyl formamide as the solvent. Through optical absorbance measurements, we identified the PAN:NaBF4 (80:20) SPE composition as having the lowest energy band gap value (4.48 eV). This composition also exhibits high thermal stability based on thermogravimetric analysis results.