Design and Characterization of Chitosan-Based Smart Injectable Hydrogel for Improved Sustained Release of Antinarcotics
Разработка и характеристика интеллектуального инъекционного гидрогеля на основе хитозана для улучшенного пролонгированного высвобождения препаратов для лечения наркотической зависимости
2024-06-07
SCID: 54.1/ub7ftwce
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Korsmeyer–Peppas modelchitosan-based injectable hydrogeldisulfiramnaltrexonesustained drug release
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Abstract (AI)
The treatment adherence of narcotics-addicted individuals with reduced incidences of relapse can be enhanced by a sustained drug release formulation of antinarcotics. So far, different drug formulations have been reported with sustained drug release periods of 28 and 35 days. To further enhance this duration, different formulations of injectable hydrogels (IHs) have been developed by combining low molecular weight (LMW) and high molecular weight (HMW) chitosan (CS) with guar gum (GG) and crosslinking them by sodium bi phosphate dibasic. The structural, morphological, and physicochemical properties of LMW-CS IH, and HMW-CS IH were evaluated using Fourier transform infrared spectroscopy (FT-IR), thermo-gravimetric analysis (TGA), scanning electron microscopy (SEM), and rheological, swelling, and biodegradation analysis. The HMW-CS IH showed high crosslinking, increased thermal stability, high mechanical strength, elevated swelling, and low biodegradation. The antinarcotic drugs naltrexone (NTX) and disulfiram (DSF) were loaded separately into the HMW-CS IH and LMW-CS IH. The release of NTX and DSF was investigated in phosphate buffer saline (PBS) and ethanol (0.3%, 0.4%, and 0.5%) over a 56-day period using an UV spectrophotometer. The drug release data were tested in zero-order, first-order, and Korsemeyer-Peppas mathematical models. In PBS, all prepared formulations followed non-Fickian drug release, while in ethanol, only NTX HMW-CS IH followed non-Fickian release in all three different concentrations of ethanol.
Key Findings
1
High-molecular-weight chitosan hydrogel exhibited greater crosslinking, thermal stability, mechanical strength, and swelling, alongside lower biodegradation than low-molecular-weight chitosan hydrogel.
2
In ethanol, only the naltrexone-loaded high-molecular-weight chitosan hydrogel consistently showed non-Fickian release across 0.3%, 0.4%, and 0.5% ethanol concentrations.
3
In phosphate-buffered saline, all formulations exhibited non-Fickian drug-release behavior according to the tested mathematical models.
4
Injectable hydrogels combining chitosan, guar gum, and sodium biphosphate were developed to extend antinarcotic drug release beyond previously reported 28–35-day durations.
5
Naltrexone and disulfiram were separately loaded into high- and low-molecular-weight chitosan hydrogels, respectively, and evaluated for sustained release over 56 days.
Research Object
Chitosan-based injectable hydrogels incorporating guar gum and loaded with the antinarcotic drugs naltrexone or disulfiram
Research Subject
Structural, physicochemical, mechanical, swelling, biodegradation, and sustained drug-release properties of the hydrogels, including release kinetics under PBS and varying ethanol concentrations
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2024-06-07
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