| Literature DB >> 32290315 |
Coral Salvo-Comino1,2, Alfonso González-Gil1, Javier Rodriguez-Valentin1,3, Celia Garcia-Hernandez1,2, Fernando Martin-Pedrosa2,3, Cristina Garcia-Cabezon2,3, Maria Luz Rodriguez-Mendez1,2.
Abstract
Biosensor platforms consisting of layer by layer films combining materials with different functionalities have been developed and used to obtain improved catechol biosensors. Tyrosinase (Tyr) or laccase (Lac) were deposited onto LbL films formed by layers of a cationic linker (chitosan, CHI) alternating with layers of anionic electrocatalytic materials (sulfonated copper phthalocyanine, CuPcS or gold nanoparticles, AuNP). Films with different layer structures were successfully formed. Characterization of surface roughness and porosity was carried out using AFM. Electrochemical responses towards catechol showed that the LbL composites efficiently improved the electron transfer path between Tyr or Lac and the electrode surface, producing an increase in the intensity over the response in the absence of the LbL platform. LbL structures with higher roughness and pore size facilitated the diffusion of catechol, resulting in lower LODs. The [(CHI)-(AuNP)-(CHI)-(CuPcS)]2-Tyr showed an LOD of 8.55∙10-4 μM, which was one order of magnitude lower than the 9.55·10-3 µM obtained with [(CHI)-(CuPcS)-(CHI)-(AuNP)]2-Tyr, and two orders of magnitude lower than the obtained with other nanostructured platforms. It can be concluded that the combination of adequate materials with complementary activity and the control of the structure of the platform is an excellent strategy to obtain biosensors with improved performances.Entities:
Keywords: catechol; gold nanoparticles; laccase; layer-by-layer; sulfonated phthalocyanine; tyrosinase
Mesh:
Substances:
Year: 2020 PMID: 32290315 PMCID: PMC7181025 DOI: 10.3390/s20072152
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1UV-Vis absorption spectra of LbL films of (a) [(CHI)-(CuPcS)-(CHI)-(AuNPs)]2 (dotted line) and [(CHI)-(AuNPs)-(CHI)-(CuPcS)]2 (solid line); (b) [(CHI)-(CuPcS)-(CHI)-(AuNPs)]2-Tyr. Inset shows a magnification of the band associated to the enzyme.
Figure 2AFM topographic images of (a) [(CHI)-(CuPcS)-(CHI)-(AuNPs)]2, (b) [(CHI)-(AuNPs)-(CHI)-(CuPcS)]2; (c) [(CHI)-(CuPcS)-(CHI)-(AuNPs)]2–Tyr and (d) [(CHI)-(AuNPs)-(CHI)-(CuPcS)]2–Tyr.
Figure 3CV curves registered in catechol 10−4 mol∙L−1 in 0.01 M phosphate buffer pH 7 as electrolyte at [(CHI)-(AuNPs)]2 (dashed line), [(CHI)-(CuPcS)]2 (solid grey line), [(CHI)-(CuPcS)-(CHI)-(AuNPs)]2 (solid line), (CHI)-(AuNPs)-(CHI)-(CuPcS)]2 (dotted line) electrodes at a scan rate of 0.1 V∙s−1 . The inset shows a magnification of the cathodic peak.
Figure 4Voltammetric response of catechol 10-4 M in 0.01 M phosphate buffer pH 7 at an (a) ITO-Tyr (solid line), [(CHI)-(CuPcS)-(CHI)-( AuNPs)]2-Tyr (dashed line), [(CHI)-(AuNPs)-(CHI)-(CuPcS)]2-Tyr (dotted line); and (b) ITO-Lac (solid line), [(CHI)-(CuPcS)-(CHI)-(AuNPs)]2-Lac (dashed line), [(CHI)-(AuNPs)-(CHI)-(CuPcS)]2-Lac (dotted line).
Figure 5Calibration curves of the amperometric response for increasing the concentration of catechol at (a) [(CHI)-(CuPcS)-(CHI)-(AuNPs)]2-Tyr; (b) [(CHI)-(AuNPs)-(CHI)-(CuPcS)]2-Tyr; (c) [(CHI)-(CuPcS)-(CHI)-(AuNPs)]2-Lac; and (d) [(CHI)-(AuNPs)-(CHI)-(CuPcS)]2-Lac. The insets show the amperometric responses obtained for each biosensor.
Analytical parameters of biosensors combining similar materials.
| Biosensor Description | R 2 | Sensitivity (A M−1) | LOD (µM) | Linear Range (µM) |
| Ref. |
|---|---|---|---|---|---|---|
|
| 0.969 | 1.500 | 9.55·10−3 | 2.4–14.9 | 11.04 | This work |
|
| 0.964 | 0.681 | 8.55·10−4 | 2.4–20.0 | 14.41 | This work |
|
| 0.991 | 0.384 | 5.89·10−2 | 2.4–16.6 | 8.76 | This work |
|
| 0.996 | 0.188 | 1.84·10−2 | 2.4–20.0 | 7.45 | This work |
|
| -- | 0.08 | 0.2 | 0.8–120.0 | -- | [ |
| 0.981 | 0.230 | 9.98·10−3 | 2.4–14.9 | 3.16 | [ | |
|
| 0.993 | 0.55 | 1.2 | 2.5–20.0 | -- | [ |
|
| 0.991 | 0.160 | 4.50·10−1 | 5.0–1000.0 | 1600.00 | [ |
|
| 0.960 | 0.012 | 1.10·10−1 | 0.1–0.5 | -- | [ |
|
| 0.992 | -- | 4.88·10−1 | 4.0–150.0 | -- | [ |
|
| 0.997 | -- | 5.18·10−1 | 4.0–150.0 | -- | [ |
|
| -- | -- | 1.71 | 1.9–27.5 | 63.72 | [ |
|
| -- | 0.002 | 7.5 | 30.0–320.0 | 120.00 | [ |
|
| 0.996 | 0.057 | 2.62·10−1 | 1.0–30.0 | 22.5 | [ |
|
| 0.999 | 0.279 | 3.34·10−2 | 0.1–165.0 | -- | [ |