Publications by authors named "Awatif R Z Almotairy"

A new class of pyrazolylmethylene-2-thioxoimidazolidin-4-one derivatives were rationally designed and synthesized with the aim of exploring their potential as treatments for prostate cancer. The synthesized compounds were biologically analyzed for their anticancer effects against ARLNCaP, ARPC-3, and Wi38 cell lines. The observed IC values against ARLNCaP ranged between 10.

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To eliminate the hazardous pesticide 2,4-dichlorophenylacetic acid (2,4-D) through aqueous solutions, stacked nanorods known as hetero bimetallic organic frameworks (MOFs) of 2-methyl imidazole based on lanthanum and zinc are created. The research's convincing discoveries displayed that La/Zn-MOF is an actual adsorbent for the removal of 2,4-D through aqueous solutions. The La/Zn-MOF was investigated using a variability of techniques, with scanning electron microscope (SEM), powered X-ray diffraction (PXRD), and Brunauer-Emmett-Teller (BET) investigation.

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Highly effective AgNPs@C was efficiently synthesized by electrical arc powered by single spark unit which was sufficient to ionize the dielectric media (deionized water) through applying strong electric field between the electrodes (silver and carbon). The AgNPs@C shell was characterized in terms of stability, morphology and phase structure. All characterizations showed that the prepared silver nanoparticles were spherical with average size reached 17 nm coated with carbon shell.

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A nickel-vanadium-based bimetallic precursor was produced using the polymerization process by urea-formaldehyde copolymers. The precursor was then calcined at 800 °C in an argon ambiance to form a NiVO-NC magnetic nanocomposite. Powerful techniques were used to study the physical characteristics and chemical composition of the fabricated NiVO-NC electrode.

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Article Synopsis
  • - The last 40 years have seen rapid growth in nanotechnology, influencing various aspects of daily life, especially in medicine and the food industry, by introducing innovations like extended food shelf life and improved drug delivery systems.
  • - Nanoparticles play a significant role in enhancing the effectiveness of treatments, such as anticancer drugs, and their applications extend to developing new pharmaceutical products approved by the FDA.
  • - The review discusses both the beneficial and potentially harmful biological effects of nanoparticles, alongside concerns about ongoing exposure and proposes possible solutions to mitigate risks associated with their increased usage.
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Simple and green strategy was described for the development of multifunctional polyester nanofibers (PNFs). Solution blow spinning (SBS) technology was applied to in situ immobilize nanocomposites of polyaniline (PANi) and silver nanoparticles (AgNPs) into plasma-treated polyester nanoscaled fibers prepared. The polyester nanofibers were prepared from recycled polyethylene terephthalate waste, which was exposed plasma-curing and a REDOX reaction in the presence of AgNO, aniline, and CHCOONH.

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As their manufacturing and consumption have increased, pharmaceutical chemicals have increasingly been found in wastewater. It is necessary to look into more effective methods, including adsorption, because current therapies can't completely eliminate these micro contaminants. This investigation aims to assess the diclofenac sodium (DS) adsorption onto an FeO@TAC@SA polymer in a static system.

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Alkaline earth aluminates (AEAs) as photoluminescent agents and silicon dioxide-based electrospun glass nanofibers with an average diameter of 150-450 nm as a roughening agent were prepared and applied to reinforce an epoxy resin toward the development of long-persistent photoluminescent and photochromic smart materials, such as smart windows and anticounterfeiting barcodes. With the physical immobilization of lanthanide-doped aluminate nanoparticles (NPs), a light-induced luminescent transparent glass@epoxy film was developed. The glass@epoxy samples were able to alter their color to green beneath ultraviolet rays and greenish-yellow in the dark, as explored by CIE Lab and luminescence spectral analyses.

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Epigenetic agents such as histone deacetylase (HDAC) inhibitors are widely investigated for use in combined anticancer therapy and the co-administration of Pt drugs with HDAC inhibitors has shown promise for the treatment of resistant cancers. Coordination of an HDAC inhibitor to an axial position of a Pt(IV) derivative of cisplatin allows the combination of the epigenetic drug and the Pt chemotherapeutic into a single molecule. In this work we carry out mechanistic studies on the known Pt(IV) complex cis,cis,trans-[Pt(NH)Cl(PBA)] (B) with the HDAC inhibitor 4-phenylbutyrate (PBA) and its derivatives cis,cis,trans-[Pt(NH)Cl(PBA)(OH)] (A), cis,cis,trans-[Pt(NH)Cl(PBA)(Bz)] (C), and cis,cis,trans-[Pt(NH)Cl(PBA)(Suc)] (D) (Bz = benzoate, Suc = succinate).

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Five new platinum(IV) derivatives of carboplatin each incorporating the histone deacetylase inhibitor 4-phenylbutyrate in axial position were synthesized and characterized by H and Pt NMR spectroscopy, electrospray ionization mass spectrometry and elemental analysis, namely cis,trans-[Pt(CBDCA)(NH)(PBA)(OH)] (1), cis,trans-[Pt(CBDCA)(NH)(PBA)] (2), cis,trans-[Pt(CBDCA)(NH)(PBA)(bz)] (3), cis,trans-[Pt(CBDCA)(NH)(PBA)(suc)] (4) and cis,trans-[Pt(CBDCA)(NH))(PBA)(ac)] (5) (PBA=4-phenylbutyrate, CBDCA=1,1-cyclobutane dicarboxylate, bz=benzoate, suc=succinate and ac=acetate). The reduction behavior in the presence of ascorbic acid was studied by high performance liquid chromatography. The cytotoxicity against a panel of human tumor cell lines, histone deacetylase (HDAC) inhibitory activity, cellular accumulation and the ability to induce apoptosis were evaluated.

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