| Literature DB >> 24623977 |
Xiangning Liu1, Xiaosong Zhou2, Shaobing Li3, Renfa Lai1, Zhiying Zhou1, Ye Zhang1, Lei Zhou3.
Abstract
Modifying the surface of the transmuEntities:
Keywords: bovine serum albumin; human gingival fibroblast; modified surface; titania nanotubes; transmucosal area
Mesh:
Substances:
Year: 2014 PMID: 24623977 PMCID: PMC3949701 DOI: 10.2147/IJN.S55514
Source DB: PubMed Journal: Int J Nanomedicine ISSN: 1176-9114
Figure 1(A) Thermal field emission environmental SEM images of the titania nanotubular surfaces (top view of the nanotubular surface revealing the tube diameter approximately 80–100 nm): (a) 50,000× magnification, bar =500 nm; (b) 100,000× magnification, bar =300 nm. (B) The Ti 2p XPS spectra data for the (a) Ti 2p of the NT sample surface and the (b) XPS data for the O 1s of the NT sample surface.
Abbreviations: NT, uncoated titania nanotube arrays; SEM, scanning electron microscope; XPS, X-ray photoelectron spectroscopy.
Load efficiency of the different doses of BSA in the TiO2 nanotubes
| Group | Load efficiency η (%) |
|---|---|
| NTB1 | 100±0.00 |
| NTB2 | 99.98±0.01 |
| NTB3 | 99.29±0.30 |
Notes: Values are means ± standard deviation; n=4
P<0.05 versus NTB1.
Abbreviations: BSA, bovine serum albumin; NTB, titania nanotube arrays loaded with BSA.
The average content of titanium surface of the sample composition detected by XPS (%; n=3)
| Group | Ti | O | C | N | Ca | Si | Na | Cl | S | P |
|---|---|---|---|---|---|---|---|---|---|---|
| PT | 23.23 | 46.49 | 25.78 | 3.33 | 1.17 | 0 | 0 | 0 | 0 | 0 |
| NT | 22.14 | 54.70 | 20.21 | 0.58 | 1.02 | 1.34 | 0 | 0 | 0 | 0 |
| NTB1 | 16.22 | 42.80 | 32.15 | 7.08 | 0.22 | 0 | 0 | 0.41 | 0 | 1.13 |
| NTB2 | 0.05 | 17.18 | 65.72 | 13.97 | 0 | 0 | 1.25 | 1.29 | 0.54 | 0 |
| NTB3 | 0.10 | 16.28 | 62.25 | 13.90 | 0 | 0 | 3.72 | 3.30 | 0.45 | 0 |
Abbreviations: PT, polished Ti metal; NT, uncoated titania nanotube arrays; NTB, titania nanotube arrays loaded with bovine serum albumin; XPS, X-ray photoelectron spectroscopy; Ti, titanium; O, oxygen; C, carbon; N, nitrogen; Ca, calcium; Si, silicon; Na, natrium; Cl, chlorine; S, sulfur; P, phosphorus.
Figure 2(A) Three-dimensional contour of the samples (10.28×); (B) The surface roughness values for the samples.
Notes: #P<0.05 versus PT; *P<0.05 NTB versus NT.
Abbreviations: NT, uncoated titania nanotube arrays; NTB, titania nanotube arrays loaded with bovine serum albumin; PT, polished Ti metal; Ra, surface roughness; CI, confidence interval.
Figure 3(A) Image of the water contact angle on the sample surfaces. (B) Contact angles of probe liquids on the tested surfaces; data shown as means, and error bars represent 95% confidence intervals.
Notes: #P<0.05 versus PT; *P<0.05 NTB versus NT.
Abbreviations: NT, uncoated titania nanotube arrays; NTB, titania nanotube arrays loaded with bovine serum albumin; PT, polished Ti metal.
SFE (γs), polar (γsp), and dispersive (γsd) of the samples (mJ · m2)
| Group | Dispersive (γsd) | Polar (γsp) | SFE (γs) |
|---|---|---|---|
| PT | 39.67 | 24.20 | 63.87 |
| NT | 38.12 | 30.55 | 68.67 |
| NTB1 | 36.46 | 38.62 | 75.08 |
| NTB2 | 36.46 | 38.62 | 75.08 |
| NTB3 | 34.38 | 40.02 | 74.40 |
Abbreviations: PT, polished Ti metal; NT, uncoated titania nanotube arrays; NTB, titania nanotube arrays loaded with bovine serum albumin; SFE, surface free energy; XPS, X-ray photoelectron spectroscopy.
Figure 4Thermal field emission environmental SEM images of the HGF growth morphology after inoculation onto different titanium surfaces for 1 hour, 3 hours, 9 hours, and 24 hours. (A) 2,000× magnification, bar =10 μm; (a–d) PT; (e–h) NT; (i–l) NTB; (B) 10,000× magnification, bar =2 μm (a–d) NT; (e–h) NTB; (C) 30,000× magnification, bar =1 μm (a–d) NT; (e–h) NTB.
Abbreviations: NT, uncoated titania nanotube arrays; NTB, titania nanotube arrays loaded with bovine serum albumin ; PT, polished Ti metal; SEM, scanning electron microscope; HGF, human gingival fibroblast.
Figure 5(A) The stained nuclei of the HGFs adhered to the PT, NT, and NTB surfaces (200× magnification, bar =100 μm). (B) The early adhesion rate of the HGFs to the PT, NT, and NTB surfaces; data shown as means, and error bars represent 95% confidence intervals.
Notes: #P<0.05 versus PT; *P<0.05 NTB versus NT.
Abbreviations: HGF, human gingival fibroblast; NT, uncoated titania nanotube arrays; NTB, titania nanotube arrays loaded with bovine serum albumin; PT, polished Ti metal.
Figure 6(A) Proliferation of HGFs on PT, NT, and NTB surfaces (#P<0.05 versus PT, *P<0.05 NTB versus NT); (B) relative expression of the COL-1 gene mRNA in HGFs on PT, NT, and NTB surfaces (#P<0.05 versus PT, *P<0.05 NTB versus NT); (C) concentration of COL-1 secreted by HGFs on PT, NT, and NTB surfaces (#P<0.05 versus PT, *P<0.05 NTB versus NT).
Note: Values are means, error bars are 95% confidence intervals.
Abbreviations: HGF, human gingival fibroblast; mRNA, messenger ribonucleic acid; NT, uncoated titania nanotube arrays; NTB, titania nanotube arrays loaded with bovine serum albumin; OD, optical density; PT, polished Ti metal.