Effect of exchanged MgAl-Hydrotalcite with carbonate on increases of acid neutralizing capacity: A good candidate as antacid

2021 ◽  
Vol 06 ◽  
Author(s):  
Mustapha Dib ◽  
Mohammed Naciri Bennani ◽  
Ouchetto Hajiba ◽  
Khadija Ouchetto ◽  
Hafid Abderrafia ◽  
...  

Background: In this study, we determined the acid neutralizing capacity (ANC) of Mg/Al-Hydrotalcite-like compounds. The MgAl-hydrotalcites were synthesized by co-precipitation method at room temperature using Mg/Al molar ratios 2 and 3. The synthesized bioactive nanomaterials were characterized by various physico-chemical techniques such as TG/dTG, DRX, FT-IR spectroscopy, BET/BHJ and MEB/EDX. The antacid activity assay was done by converting both synthesized samples into liquids, 1 g of which was added to 50 ml of deionized water at 37°C under vigorous agitation. The acid neutralizing capacity (ANC) was evaluated with 0.1N HCl. The pH was constantly measured using a pH meter and values were recorded every minute up to 35 min. In order to improve the neutralizing power of the samples, we performed on the MgAl-HT3 synthesized an exchange of chlorides by carbonates. The exchanged Mg/Al-Hydrotalcite (MgAl-HTE) shows a high acid neutralization capacity (up to 13.5 mEq/g). Objective: To synthesize an MgAl-hydrotalcite-like compounds and evaluation of their acid neutralizing capacity and thus can be good candidates for pharmaceutical applications as antacid drugs. Methods: Preparation of MgAl-hydrotalcite-like compounds by coprecipitation methods - Characterization of samples by physico-chemical techniques such as TG/dTG, DRX, FT-IR spectroscopy, BET/BHJ and MEB/EDX. - Evaluation of acid neutralizing capacity by titration procedure (Dose-titration) . Results: This protocol describes the preparation of MgAlhydrotalcite-like using the classical coprecipitation method. The synthesized samples were characterized by various physicochemical techniques such as TG/dTG, DRX, FT-IR spectroscopy, BET/BHJ and MEB/EDX. The as-synthetized samples were used for the evaluation of their acid-neutralizing capacity (ANC). Further, an exchanged MgAl-Hydrotalcite with carbonate was described for the purpose to increases the acid-neutralizing capacity. Conclusion: In summary, this study describes a simple synthesis of MgAl-Hydrotalcites compounds by a co-precipitation method at constant pH around 10, with a ratio Mg/Al = 3 and 2 (referred to as MgAl-HT3 and MgAl-HT2). An exchange of the chlorides (not eliminated by washing) by the carbonates was carried out on hydrotalcite with a ratio Mg/Al = 3 and the solid obtained was named MgAl-HT3E. The materials MgAl-HT2, MgAl-HT3 and MgAl-TH3E were used to evaluate their antacid activity. To this end, a study was conducted to determine the acid neutralizing capacity (ANC). As a result, the MgAl-HT3E was able to increase acid neutralizing capacity and maintaining an ideal pH. These results could be interesting to prepare novel antacid drugs (due to the low cost of synthesized materials) essentially the hydrotalcite of Mg/Al ratio equal to 3 because of its relatively slow kinetics of releasing basic species and therefore of its beneficial action as an antacid.

2016 ◽  
Vol 25 (6) ◽  
pp. 096369351602500 ◽  
Author(s):  
Ruimin Fu ◽  
Mingfu Zhu

Nowadays, the hummers method for preparation of graphene oxide (GO) was improved. The grapheme oxide @ Fe3O4 magnetic nanocomposites were synthesized by co-precipitation method. After analysing the morphology and structure of obtained nanocomposites by X-ray diffraction (XRD), transmission electron microscope (TEM) and Fourier transform infrared (FT-IR) spectroscopy, the result was shown as follows. The particle size of Fe3O4 in nanocomposites is 30 nm. Many functional groups are found in grapheme oxide, and such groups could be used to bind with the drug. In the test for magnetic properties, the nanocomposites gathered rapidly in the vicinity of the permanent magnet. The nanocomposites, with high superparamagnetism, can be used in the following applications: drug targeting transports, drug carrier, and diagnosis assistant system.


2017 ◽  
Vol 727 ◽  
pp. 663-669
Author(s):  
Zhi Yuan Cao ◽  
Yu Feng Song ◽  
Xia Shen ◽  
Jian Hui Fang

Ni-rich layer LiNi0.5Co0.2Mn0.3O2 cathode materials have been synthesized by Electrospinning and co-precipitation method. The physical, chemical, and electrochemical properties of the LiNi0.5Co0.2Mn0.3O2 nanofibers were investigated by X-ray diffraction, field emission−scanning electron microscopy (FESEM), Fourier transform infrared (FT-IR) spectroscopy,Brunauer, Emmett, and Teller (BET) measurements, and galvanostatic tests. The electrospun nanofibers with small particle size and hollow tubes provided fast lithium ion intercalation and de-intercalation properties, leading to an enhanced electrochemical capability for LiNi0.5Co0.2Mn0.3O2 nanofibers.


2005 ◽  
Vol 19 (1) ◽  
pp. 17-26 ◽  
Author(s):  
Chrystelle Lorin–Latxague ◽  
Anne–Marie Melin

Oxidative damage induced by ascorbic acid (AA) and hydrogen peroxide (H2O2) was monitored by Fourier transform infrared spectroscopy (FT‒IR); it appeared as a rapid and convenient means to follow the biochemical changes generated in the culture media of the yellow-pigmentedMicrococcus luteus. Beyond a threshold of 20 mM for AA and of 40 mM for H2O2(final concentration), antioxidant systems were overwhelmed and significant changes were observed in the bacterial spectra, particularly in the 1430–900 cm−1region; this spectral window provided large information about carboxylate groups, phosphate-carrying compounds and polysaccharides implicated in the radical process. The spectroscopic results indicated that for the same final concentration, the toxicity of H2O2was less important than that of AA towardM. luteuscells, although H2O2had a more damaging effect on proteins. Thus, FT-IR spectroscopy was an appropriate physico-chemical tool suitable in biochemical and clinical research for early characterization of any type of radical aggression, and for rapid detection of the damage intensity.


2017 ◽  
Vol 105 (2) ◽  
Author(s):  
Gehan E. Sharaf El-Deen ◽  
Neama G. Imam ◽  
Refaat R. Ayoub

AbstractSuperparamagnetic iron oxide nanoparticles (IO-MNPs) coated with natural polymers, starch (IO-S MNPs) and dextrin (IO-D MNPs), were synthesized by modified co-precipitation method. IO and hybrid-IO-MNPs were characterized by XRD, SEM, HRTEM, FT-IR spectroscopy, vibrating sample magnetometer (VSM) and zeta potential (ZP). IO-S MNPs and IO-D MNPs have IO core-shell structure with core of 10.8 nm and 13.8 nm and shell of 7.5 nm and 5.9 nm, respectively. The efficiency of the hybrid IO-MNPs for sorption of


Molecules ◽  
2020 ◽  
Vol 25 (20) ◽  
pp. 4602
Author(s):  
Paulina Sobierajska ◽  
Anna Serwotka-Suszczak ◽  
Damian Szymanski ◽  
Krzysztof Marycz ◽  
Rafal J. Wiglusz

In the present study, a nanoapatite-mediated delivery system for imatinib has been proposed. Nanohydroxyapatite (nHAp) was obtained by co-precipitation method, and its physicochemical properties in combination with imatinib (IM) were studied by means of XRPD (X-ray Powder Diffraction), SEM-EDS (Scanning Electron Microscopy-Energy Dispersive X-ray Spectroscopy), FT-IR (Fourier-Transform Infrared Spectroscopy), absorption spectroscopy as well as DLS (Dynamic Light Scattering) techniques. The obtained hydroxyapatite was defined as nanosized rod-shaped particles with high crystallinity. The amorphous imatinib was obtained by conversion of its crystalline form. The beneficial effects of amorphous pharmaceutical agents have been manifested in the higher dissolution rate in body fluids improving their bioavailability. Imatinib-to-hydroxyapatite interactions on the surface were confirmed by SEM images as well as absorption and FT-IR spectroscopy. The cytotoxicity of the system was tested on NI-1, L929, and D17 cell lines. The effectiveness of imatinib was not affected by nHAp modification. The calculated IC50 values for drug-modified nHAp were similar to those for the drug itself. However, higher cytotoxicity was observed at higher concentrations of imatinib, in comparison with the drug alone.


Author(s):  
Maciej Strzempek ◽  
Karolina A. Tarach ◽  
Kinga Góra-Marek ◽  
Fernando Rey ◽  
Miguel Palomino ◽  
...  

Abstract In this article the results of the statistical MC modelling corroborated by the FT-IR spectroscopy and gravimetric adsorption studies of the low aliphatic hydrocarbons in ZSM-5 (Si/Al =28 or...


Sign in / Sign up

Export Citation Format

Share Document