Abdelazeem Eltaweil’s scientific contributions

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Publications (2)


Fig. 3 (I) General structure of α-cyclodextrin, β-cyclodextrin, and γ-cyclodextrin, (II) Tridimensional structure of α-cyclodextrin, β-cyclodextrin, and γ-cyclodextrin with different sizes, (III) Digital structure of cyclodextrins, (IV) Digital representation of inclusion complex formation (Rajkumar et al. 2019; Crini 2014). Cyclodextrins have three types, including α-cyclodextrin, β-cyclodextrin, and γ-cyclodextrin. Cyclodextrin contains two faces, e.g., primary
Fig. 4 Solubility of α-cyclodextrin, β-cyclodextrin, and γ-cyclodextrin in water under different temperatures including 25, 45, and 60 °C (Poulson et al. 2022). Cyclodextrins can be dissolved in water. α-cyclodextrin can be dissolved in water by 12.8, 29.0, and 66.2 mg/100 mL at 25, 45, and 60 °C, respectively. β-cyclodextrin can be dissolved in water by 1.8, 4.5, and 9.1 mg/100 mL at 25, 45,
Fig. 8 Fabrication of cyclodextrin-based metal-organic framework@Ru(bpy) 3 2+
Description, types, advantages, and limitations of common synthesis methods for cyclodextrin-based metal-organic frameworks
Synthesis and potential applications of cyclodextrin‑based metal–organic frameworks: a review
  • Article
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September 2022

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457 Reads

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3 Citations

Environmental Chemistry Letters

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Abdelazeem Eltaweil

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Eman M. Abd El-Monaem

Metal–organic frameworks are porous polymeric materials formed by linking metal ions with organic bridging ligands. Metal–organic frameworks are used as sensors, catalysts for organic transformations, biomass conversion, photovoltaics, electrochemical applications, gas storage and separation, and photocatalysis. Nonetheless, many actual metal–organic frameworks present limitations such as toxicity of preparation reagents and components, which make frameworks unusable for food and pharmaceutical applications. Here, we review the structure, synthesis and properties of cyclodextrin-based metal– organic frameworks that could be used in bioapplications. Synthetic methods include vapor difusion, microwave-assisted, hydro/solvothermal, and ultrasound techniques. The vapor difusion method can produce cyclodextrin-based metal–organic framework crystals with particle sizes ranging from 200 nm to 400 μm. Applications comprise food packaging, drug delivery, sensors, adsorbents, gas separation, and membranes. Cyclodextrin-based metal–organic frameworks showed loading efcacy of the bioactive compounds ranging from 3.29 to 97.80%.

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Iron oxide nanoparticles and their pharmaceutical applications

August 2022

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58 Reads

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5 Citations

The importance of different polymorphic forms of iron oxide nanoparticles attracted a lot of attentions in various applications due to their unique electrical, optical and magnetic properties. Moreover, the excellent biocompatibility, high surface area, spherical shape, tunable nanoscale size and the availability of synthesis route make them desirable in various biological and pharmaceutical applications. To this aim, in this review, different synthesis methods of iron oxide nanoparticles were discussed, also the main characterization techniques used for elucidation of the iron oxide nanoparticles were reviewed. The exploitation of iron oxide nanoparticles-based systems as anticancer, antiviral, antimicrobial agents and its involvement in drug delivery system were reviewed in details. Additionally, the influence of nanoparticles size and the reagent type and conditions utilized in synthesis and their pharmaceutical applications was highlighted.

Citations (2)


... The cyclic oligosaccharides β-cyclodextrins (β-CD) contain six or more d-(+)-glucopyranose units binding through α-1,4 glycosidic bonds [17]. β-Cyclodextrins offer a range of advantages, such as water solubility, tastelessness, colorlessness, odorlessness, non-caloric nature, non-toxicity, biodegradability, biocompatibility, and non-carcinogenicity [18]. This unique set of characteristics creates cyclodextrins as promising encapsulation systems and significant complexation agents. ...

Reference:

Carboxymethyl cellulose hydrogel for pH-responsive drug release of curcumin
Synthesis and potential applications of cyclodextrin‑based metal–organic frameworks: a review

Environmental Chemistry Letters

... There are various ways to produce lipid nanovesicles: mechanical methods (microfluidization, ultrasonication, etc.); methods based on replacement of organic solvent(s) by aqueous media; methods based on detergent removal; methods based on size transformation and fusion and methods based on pH adjustment (Domb 2007). Among these preparation methods, a mechanical microfluidization technique provides many advantages in terms of scalability to batch production (Bachmann et al. 1993;Talsma et al. 1989), reproducibility of narrow size distribution (Masson 1989), handling higher lipid concentration over sonication (Talsma et al. 1989) and the preparation steps do not involve chemical substances, which is suitable for food application. ...

Iron oxide nanoparticles and their pharmaceutical applications
  • Citing Article
  • August 2022