| Literature DB >> 31906423 |
Andrea Fiorati1,2, Nicola Contessi Negrini1,2, Elena Baschenis1, Lina Altomare1,2, Silvia Faré1,2, Alberto Giacometti Schieroni3, Daniele Piovani3, Raniero Mendichi3, Monica Ferro1, Franca Castiglione1, Andrea Mele1,3, Carlo Punta1,2, Lucio Melone1,2.
Abstract
Stable hydrogels with tunable rheological properties were prepared by adding Ca2+ ions to aqueous dispersions of 2,2,6,6-tetramethylpiperidine 1-oxyl (TEMPO)-oxidized and ultra-sonicated cellulose nanofibers (TOUS-CNFs). The gelation occurred by interaction among polyvalent cations and the carboxylic units introduced on TOUS-CNFs during the oxidation process. Both dynamic viscosity values and pseudoplastic rheological behaviour increased by increasing the Ca2+ concentration, confirming the cross-linking action of the bivalent cation. The hydrogels were proved to be suitable controlled release systems by measuring the diffusion coefficient of a drug model (ibuprofen, IB) by high-resolution magic angle spinning (HR-MAS) nuclear magnetic resonance (NMR) spectroscopy. IB was used both as free molecule and as a 1:1 pre-formed complex with β-cyclodextrin (IB/β-CD), showing in this latter case a lower diffusion coefficient. Finally, the cytocompatibility of the TOUS-CNFs/Ca2+ hydrogels was demonstrated in vitro by indirect and direct tests conducted on a L929 murine fibroblast cell line, achieving a percentage number of viable cells after 7 days higher than 70%.Entities:
Keywords: TEMPO-oxidized nanocellulose; biomaterials; cytocompatibility; drug release; hydrogel
Year: 2020 PMID: 31906423 PMCID: PMC6981511 DOI: 10.3390/ma13010183
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623
Figure 1Production scheme of 2,2,6,6-tetramethylpiperidine 1-oxyl oxidized and ultra-sonicated cellulose nanofibers (TOUS-CNFs)-Ca2+ hydrogels.
Samples of TOUS-CNFs stock dispersions.
| ID | TOUS-CNFs Concentration ( | Cellulose (g) | NaOH 0.1 M (mL) | Water (mL) |
|---|---|---|---|---|
| A | 0.5 | 0.2 | 3.02 | 36.98 |
| B | 1 | 0.4 | 6.04 | 33.96 |
| C | 2 | 0.8 | 12.08 | 27.92 |
| D | 4 | 1.6 | 24.16 | 15.84 |
Samples of TOUS-CNFs/Ca2+ stock dispersions.
| ID | Cellulose Concentration (w/v) (%) | CaCl2 Final Concentration (mM) | TOUS-CNFs Dispersion (mg) | CaCl2 Solution 100 mM (µL) | Water (µL) |
|---|---|---|---|---|---|
| A1 | 0.5 | 10 | 450 | 50 | 0 |
| A2 | 0.5 | 5 | 450 | 25 | 25 |
| A3 | 0.5 | 2 | 450 | 10 | 40 |
| A4 | 0.5 | 0 | 450 | 0 | 50 |
| B1 | 1 | 10 | 450 | 50 | 0 |
| B2 | 1 | 5 | 450 | 25 | 25 |
| B3 | 1 | 2 | 450 | 10 | 40 |
| B4 | 1 | 0 | 450 | 0 | 50 |
| C1 | 2 | 10 | 450 | 50 | 0 |
| C2 | 2 | 5 | 450 | 25 | 25 |
| C3 | 2 | 2 | 450 | 10 | 40 |
| C4 | 2 | 0 | 450 | 0 | 50 |
Figure 2(a) Transmission electron microscope (TEM) image of TOUS-CNFs (scale bar: 500 nm); (b) Qualitative rheological behaviour of TOUS-CNFs aqueous suspensions at different CNF concentrations (i.e., 0.5, 1 and 2% w/v); (c) example of a cubic-shape TOUS-CNFs/Ca2+ hydrogel C1 (scale bar: 1 cm); (d) extrusion of TOUS-CNFs aqueous dispersion (2% w/v) into Ca2+ (100 mM) aqueous solution (indigo dye used to improve the visualization).
Figure 3Dynamic viscosity (η, Pa·s) as a log-log function of shear rates at different TOUS-CNFs and Ca2+ concentrations. A: TOUS-CNFs 0.5% w/v; B: TOUS-CNFs 1.0% w/v; C: TOUS-CNFs 2% w/v. Symbols: □ [Ca2+] = 10 mM; ■ [Ca2+] = 5 mM; ● [Ca2+] = 2 mM; ▲ [Ca2+] = 0 mM.
Figure 4G’ (elastic) and G’’ (viscous) modules as a function of frequency of samples: C1 (TOUS-CNFs = 2.0%, CaCl2 = 10 mM); B3 (TOUS-CNFs = 1.0%, CaCl2 = 2 mM); A3 (TOUS-CNFs = 0.5%, CaCl2 = 2 mM).
Figure 51H high-resolution magic angle spinning (HR-MAS) NMR spectra of: A) β-cyclodextrin (β-CD); B) ibuprofen (IB); C) IB /β-CD (1:1) complex loaded in C1 hydrogel (details in Supplementary Materials Figures S2–S4).
Figure 6Overlap of diffusion-ordered correlation spectroscopy (DOSY) maps of: IB loaded in C1 hydrogel (purple), β-CD loaded in C1 hydrogel (blue) and IB/β-CD (1:1) complex loaded in C1 hydrogel (red).
Figure 7In vitro tests of C1 hydrogels. (a) Percentage weight ratio of C1 hydrogel immersed in culture medium at 37 °C, up to 7 days (i.e., 168 h). (b) Percentage L929 cell viability of cell cultured in culture medium eluates in contact with C1 for 1, 3 and 7 days, compared to cells cultured in culture medium (i.e., control). (c,d) In vitro direct cytocompatibility tests of cells embedded in C1, in alginate/Ca2+ hydrogel (i.e., hydrogel control) and seeded on tissue culture plastic (i.e., tissue culture plastic (TCPS) as control): (c) percentage of viable L929 cells (* p < 0.05, comparing a sample to the others at the same time point) and (d) representative LIVE/DEAD staining images (scale bar: 100 µm).
Figure 8LIVE/DEAD staining of cells embedded in 2% w/v after 7 days of incubation (a) C1 hydrogel and (b) alginate/Ca2+ hydrogel (scale bar: 50 µm).