| Literature DB >> 27877802 |
Michelina Catauro1, Ferdinando Papale1, Flavia Bollino1, Simona Piccolella2, Sabina Marciano2, Paola Nocera2, Severina Pacifico2.
Abstract
The development of biomaterials with intrinsic antioxidant properties could represent a valuable strategy for preventing the onset of peri-implant diseases. In this context,Entities:
Keywords: antioxidant activity; bioactivity; biocompatibility; quercetin; sol–gel technique
Year: 2015 PMID: 27877802 PMCID: PMC5099839 DOI: 10.1088/1468-6996/16/3/035001
Source DB: PubMed Journal: Sci Technol Adv Mater ISSN: 1468-6996 Impact factor: 8.090
Composition and label of the synthesized systems.
| Label | Quercetin amount in the SiO2 matrix (wt%) |
|---|---|
| SiO2 | 0% |
| Si/Que5 | 5% |
| Si/Que10 | 10% |
| Si/Que15 | 15% |
Figure 1.SEM micrographs of: (a) Si/Que5, (b) Si/Que10, and (c) Si/Que15.
Figure 2.FTIR spectra of (a) pure quercetin, (b) Si/Que hybrid systems. Spectra are vertically shifted for clarity.
Figure 3.UV–vis spectra of quercetin (solid black curve) and extracts from quercetin-entrapped silica materials (dashed gray curve).
Figure 4.MS/MS spectrum of the protonated quercetin derivative at m/z 359.
Figure 5.(a) Proposed synthesis pathway of the tentatively identified quercetin derivative. (b) Proposed fragmentation pattern of the tentatively identified quercetin derivative ([M + H]+ at m/z 359).
Figure 6.Quercetin derivative release from Si/Que5, Si/Que10, and Si/Que15. Values, expressed as quercetin equivalents (Que Eq, mM), are the mean ±standard deviation (SD) of measurements carried out on three samples of each synthesized material analyzed three times.
Figure 7.SEM micrographs of Si/Que5, Si/Que10, and Si/Que15 systems after 7 days and 21 days of soaking in SBF. EDS analysis of the globule in the box.
Figure 8.Radical scavenging capacity (RSC, %) of Si/Que5, Si/Que10, and Si/Que15, and silica-free quercetin samples (Que5, Que10, and Que15) towards DPPH• radical, ABTS•+. Values, reported as percentage versus a blank, are the mean ±SD of measurements carried out on three samples (n = 3) analyzed three times.
Figure 9.Cell viability (CV, %) toward NIH-3T3 cells of Si/Que5, Si/Que10, and Si/Que15, and silica-free quercetin samples (Que5, Que10, and Que15) at 24 h and 48 h exposure times by means of MTT test results. Values, reported as percentage versus an untreated control, are the mean ±SD of measurements carried out on three samples (n = 3) analyzed 12 times.
Figure 10.Effect of Que15 and Si/Que15 on H2O2-induced ROS generation in NIH-3T3 cells. Values, reported as percentage versus the oxidized control, are the mean ±SD of measurements carried out on three samples (n = 3) analyzed 12 times.