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1.

Studies of kinetic models and adsorption isotherms: application on the interaction of insulin with synthetic hydroxyapatite Pages 445-458 Right click to download the paper Download PDF

Authors: Abdelhadi El Rhilassi, Mounia Bennani Ziatni

DOI: 10.5267/j.ccl.2022.11.001

Keywords: Hydroxyapatite, Insulin, Langmuir, Pseudo second order

Abstract:
The non-stoichiometric, calcium-deficient hydroxyapatite was prepared through a low-temperature from aqueous solutions method and characterized using Physico-chemical methods. The potential of this hydroxyapatite to adsorb and release insulin from aqueous solutions was evaluated under physiological conditions. The effect of contact time and initial concentration were studied in batch experiments. The adsorption rate reached up to 81±5% in the first half-hour of contact, while the release rate of insulin incubation was about 41 ± 5% after 1 hour. The pseudo-first-order, pseudo-second-order, Elovich equation, Weber and Morris intraparticle diffusion model and Bangham’s pore diffusion model were applied to study the kinetics of the adsorption process. The pseudo-second-order kinetic model provided the best correlation R2(0.998) of the used experimental data compared to the other models. The adsorption of insulin onto hydroxyapatite was correlated well R2(0.998) with the Langmuir model as compared to Freundlich, Temkin and Dubinin–Kaganer–Radushkevich (D-K-R) models, with a maximum adsorption capacity of 24.46 mg/g. The isotherms parameters values of ΔG0, b_t and E show that the adsorption process is favorable, spontaneous, exothermic, and controlled by physisorption. The point of zero charge (pHZPC) of hydroxyapatite and the isoelectric point (pI) of insulin indicate that the interaction of insulin molecules with prepared apatite can be well described as an ions exchange reaction.
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Journal: CCL | Year: 2023 | Volume: 12 | Issue: 2 | Views: 726 | Reviews: 0

 
2.

Experimental study on the interaction of insulin with apatitic calcium phosphates analogous to bone mineral: adsorption and release Pages 341-352 Right click to download the paper Download PDF

Authors: Abdelhadi El Rhilassi, Mounia Bennani-Ziatni

DOI: 10.5267/j.ccl.2022.6.003

Keywords: Apatite, Insulin, Adsorption, Kinetic, Isotherm

Abstract:
A series of isoxazole derivatives, 3-aryl-5-[5-(4-nitrophenyl)-2-furyl]-2,3-dihydroisoxazoles (5a-j) were synthesized by cyclocondensation reaction between 1-aryl-3-[5-(4-nitrophenyl)-2-furyl]prop-2-en-1-ones (4a-j) and hydroxylamine hydrochloride in presence of sodium acetate in glacial acetic acid at reflux temperature. Formerly, compounds (4a-j) were synthesized by the condensation of 5-(4-nitrophenyl) furan-2-carbaldehyde (3) with various aromatic ketones by using alkali as catalyst. The structures of the synthesized various isoxazole have been characterized by using elemental analysis, Infrared,1H-NMR spectroscopy and further supported by Mass spectroscopy. All the products have been screened for their in-vitro biological assay like antibacterial activity towards Gram-positive and Gram-negative bacterial strains and antifungal activity towards Aspergillus niger at a concentration of 40 µg/ml. It was exposed that the compounds 5a, 5c, 5e, 5f, and 5i showed inspiring antibacterial and antifungal activity compared to the used reference standard.
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Journal: CCL | Year: 2022 | Volume: 11 | Issue: 4 | Views: 988 | Reviews: 0

 

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