| Literature DB >> 35745622 |
Radosław Balwierz1, Dawid Bursy2, Paweł Biernat2, Nataliia Hudz1,3, Mariia Shanaida4, Łukasz Krzemiński5, Paweł Skóra6, Monika Biernat7, Wioletta Ochędzan Siodłak1.
Abstract
Silica nanoparticles were applied as the carrier of chloramphenicol (2,2-dichloro-N-[(1R,2R)-1,3-dihydroxy-1-(4-nitrophenyl)propan-2-yl]acetamide), and were loaded in a 1% carbopol-based gel (poly(acrylic acid)), which allowed obtainment of an upgraded drug form. The samples of silica materials were obtained by means of modified Stöber synthesis, and their morphological properties were analyzed using Fourier transform infrared spectroscopy (FTIR), Brunauer-Emmett-Teller (BET) method, elemental analysis (EA), thermogravimetric analysis (TGA), analysis of the specific surface properties, X-ray diffraction study (XRD), scanning electron microscope (SEM), and dynamic light scattering (DLS) methods, which permitted the selection of the drug carrier. The two obtained silica carriers were coated with chloramphenicol and loaded into 1% carbopol gel. The release studies were then performed. The release results were evaluated using mathematical models as well as model-independent analysis. It was found that the modification of the synthesis of the silica by the sol-gel method to form a product coated with chloramphenicol and further grinding of the silica material influenced the release of the active substance, thus allowing the modification of its pharmaceutical availability. The change in the parameters of silica synthesis influenced the structure and morphological properties of the obtained silica carrier. The grinding process determined the way of adsorption of the active substance on its surface. The studies showed that the proper choice of silica carrier has a considerable effect on the release profile of the prepared hydrogel formulations.Entities:
Keywords: Stöber method; carbopol; chloramphenicol nanoparticles; dissolution study; drug delivery; release profile; silica carrier; sol
Year: 2022 PMID: 35745622 PMCID: PMC9230014 DOI: 10.3390/ph15060703
Source DB: PubMed Journal: Pharmaceuticals (Basel) ISSN: 1424-8247
Parameters of the synthesis of silica nanoparticles.
| Parameters | Synthesis 1 Carrier A | Synthesis 2 Carrier B | Synthesis 3 Carrier C | |
|---|---|---|---|---|
| Temperature [°C] | 65 | 25 | 35 | |
| Volume of added reagents [mL] | ammonium hydroxide 25% | 4.8 | 6.0 | 4.8 |
| water | 4.8 | 6.0 | 4.8 | |
| ethanol 96% | 72.0 | 90.0 | 72.0 | |
| TEOS | 6.4 | 8.0 | 6.4 | |
| TEOS insertion rate [mL/min] | 3.2 | 4.0 | 3.2 | |
| Volume of added ammonia solution [mL] | prior to the application of TEOS | 2.4 | 13.0 | 0 |
| after TEOS application | 14.5 | 15.0 | 13.0 | |
Results of the nitrogen adsorption–desorption analysis (BET method).
| Material | A | B | C | D | E | F | D_ClPh |
|---|---|---|---|---|---|---|---|
| Specific surface [m2/g] | 0.1871 | 13.8976 | 23.8035 | 35.0244 | 32.8918 | 32.7435 | 3.3736 |
| One-point analysis of specific surface area | 0.1571 | 13.5829 | 22.9921 | 34.0508 | 32.2388 | 31.9001 | 3.1355 |
| Total pore volume in the range 1–300 nm | 0.000327 | 0.027005 | 0.050779 | 0.106719 | 0.105568 | 0.104813 | 0.010528 |
| Total pore volume in the range 1–300 nm | 0.000292 | 0.029091 | 0.068072 | 0.134964 | 0.129747 | 0.121554 | 0.011746 |
| Average pore diameter (BJH adsorption) [nm] | 5.5172 | 6.8381 | 7.3497 | 10.5674 | 11.5499 | 11.2547 | 8.3944 |
| Average pore diameter (BJH desorption) [nm] | 12.9577 | 7.7064 | 10.1059 | 13.6115 | 13.1257 | 12.8671 | 11.7519 |
Materials A–C obtained using Stöber’s synthesis; materials D–F obtained by means of grinding materials A–C; A_ClPh—formulation based on silica A and chloramphenicol (1:1); D_ClPh—formulation based on ground silica A (carrier D) and chloramphenicol (1:1).
Statistical summary of the particle size measurements (nm) for silica nanoparticles obtained using the dynamic light scattering (DLS) method.
| Material | Average [nm] | Std. Dev. | RSD | Minimum [nm] | Median [nm] | Maximum [nm] |
|---|---|---|---|---|---|---|
| A | 107.7 | 22.0 | 20.4% | 62.8 | 112.8 | 131.0 |
| B | 181.4 | 16.0 | 8.8% | 143.8 | 186.6 | 196.9 |
| C | 125.1 | 16.0 | 12.8% | 84.2 | 131.9 | 137.3 |
| D | 389.7 | 139.3 | 35.7% | 112.2 | 438.0 | 556.5 |
| E | 215.3 | 23.3 | 10.8% | 188.8 | 212.9 | 289.2 |
| F | 260.0 | 77.8 | 29.9% | 168.7 | 257.3 | 440.4 |
| A_ClPh | 178.2 | 22.14 | 12.0% | 141.8 | 182.2 | 241.2 |
| D_ClPh | 156.3 | 32.3 | 20.7% | 100.3 | 151.8 | 229.1 |
Materials A–C obtained using Stöber’s synthesis; material D–F obtained by means of grinding materials A–C; A_ClPh—formulation based on carrier A and chloramphen-icol (1:1); D_ClPh—formulation based on carrier D and chloramphenicol (1:1).
Figure 1The thermogravimetric analysis (TG) of the silica carriers (A–F).
Figure 2The FT-IR spectra of the studied silica materials A–F.
Figure 3SEM images of the studied silica materials (A–F).
Figure 4The thermogravimetric analysis (TG) of the materials A_ClPh and D_ClPh coated with chloramphenicol.
Figure 5SEM images of the carriers A and D coated with chloramphenicol: (A) unground, coated carrier; (B) EDS mapping of unground, coated (A_ClPh); (C) ground, coated carrier; and (D) EDS mapping of ground, coated (D_ClPh).
Content of the active substance in a 1% carbpol gel as determined by the HPLC method.
| Sample | Weight [mg] | AUC Average | CAP [mg] | Content [mg/100 g] | Content Relative to Expected [%] |
|---|---|---|---|---|---|
| Only ClPh 0.5% (BN) | 100.36 | 566.0223 | 0.3955 | 492.6371 | 98.53% |
| A_ClPh (1:1) 0.5% | 103.24 | 624.4009 | 0.4368 | 528.8567 | 105.77% |
| D_ClPh (1:1) 0.5% | 101.35 | 582.7027 | 0.4073 | 502.3668 | 100.47% |
BN—formulation based only on chloramphenicol (without the silica carriers); A_ClPh—formulation based on carrier A and chloramphenicol (1:1); D_ClPh—formulation based on carrier D and chloramphenicol (1:1); CAP—capacity; AUC—area under the curve.
Statistical summary of the apparent viscosity measurements and the pH of gels.
| Type of Gel | Average [Pa·s] | S.D. [Pa·s] | Coefficient of Variation [%] | pH |
|---|---|---|---|---|
| Without the silica and chloramphenicol | 272.71 | 20.45 | 7.50 | 7.02 |
| Without the silica and containing only chloramphenicol BN | 248.85 | 0.79 | 1.62 | 6.91 |
| Silica and chloramphenicol A_ClPh | 262.01 | 6.47 | 2.47 | 6.78 |
| Silica ground with chloramphenicol D_ClPh | 361.77 | 27.52 | 7.61 | 6.89 |
Chloramphenicol concentration = 0.5 [wt.%].
Figure 6Q diagram for the values of the released percentage over time. Mean; Whisker: Mean ± 0.95 Conf. Interval. ○ mean release points of D_ClPh; □ mean release points of BN; ◊ mean release points of A_ClPh.
In vitro release kinetic models of silica carriers.
| Analysis Based on Mathematical Models [R2] | Model Independent Analysis | ||||||
|---|---|---|---|---|---|---|---|
| Formulation | First-Order Kinetics | 0-Order Kinetics | Higuchi | Hixson–Crowell | Pepas | Release Efficiency D.E. | Mean Dissolution Time MDT [min] |
| BN | 0.98274 | 0.93977 | 0.9968 | 0.97108 | 0.98975 | 0.45618 | 107.18720 |
| D_ClPh | 0.99026 | 0.89692 | 0.98464 | 0.96958 | 0.99338 | 0.65125 | 90.186017 |
| A_ClPh | 0.99600 | 0.93182 | 0.99622 | 0.99437 | 0.98206 | 0.62205 | 117.80174 |
BN—formulation based only on chloramphenicol (without the silica carriers); A_ClPh—formulation based on carrier A and chloramphenicol (1:1); D_ClPh—formulation based on carrier D and chloramphenicol (1:1).
Values of the estimated matching parameters for profiles along with statistics, significance level, and confidence interval.
| Sample | Parameter | Estimate | Standard Error | t-Statistic | Confidence Interval (−) | Confidence Interval (+) | |
|---|---|---|---|---|---|---|---|
| BN | k | 0.00282 | 0.00016 | 18.115 | 1.82121 × 10−6 | 0.00244 | 0.00320 |
| BN | b | 0.54563 | 0.02018 | 27.033 | 1.69271 × 10−7 | 0.49624 | 0.59501 |
| D_ClPh | k | 0.00834 | 0.00042 | 20.077 | 9.91565 × 10−7 | 0.00732 | 0.00935 |
| D_ClPh | b | 0.55761 | 0.02187 | 25.496 | 2.39898 × 10−7 | 0.50409 | 0.61112 |
| A_ClPh | k | 0.006992 | 0.000185 | 37.8444 | 2.27263 × 10−8 | 0.00654 | 0.00654 |
| A_ClPh | b | 0.896888 | 0.025522 | 35.1416 | 3.53872 × 10−8 | 0.834438 | 0.834438 |
BN—formulation based only on chloramphenicol (without the silica carriers); A_ClPh—formulation based on carrier A and chloramphenicol (1:1); D_ClPh—formulation based on carrier D and chloramphenicol (1:1).
Mahalanobis distance (MSD).
| Comparison of the Profiles | Distance between the Profiles | Lower Limit of the Confidence Interval | Upper Limit of the Confidence Interval | Acceptable Distance between Profiles |
|---|---|---|---|---|
| BN vs. A_ClPh | 13.1292 | 6.29682 | 19.9616 | 8.06196 |
| BN vs. D_ClPh | 16.502 | 9.670 | 23.334 | 9.709 |
BN—formulation based only on chloramphenicol (without the silica carriers); A_ClPh—formulation based on carrier A and chloramphenicol (1:1); D_ClPh—formulation based on carrier D and chloramphenicol (1:1).