| Literature DB >> 35889365 |
Chao-Yang Zhao1, Huimin Sui1, Endi Xue1, Li Li1, Jie Zhang1, Tao Xu1, Xin Liang1, Ying Yang1.
Abstract
Coupled with an azo coupling reaction, a simple, rapid, sensitive, and effective surface-enhanced resonance Raman scattering (SERRS) detection method for benzocaine was developed. In our study, benzocaine which is used clinically as a local anesthetic was derived with p-aminothiophenol into a corresponding azo product within 5 min, resulting in a strong SERRS response with the simple addition of Ag NPs excited with a 532 nm laser. The linear correlation between SERRS intensity of dominant bands and logarithm of benzocaine concentration was investigated for quantitative determination. The method reached a limit of detection (LOD) down to 0.139 and 0.0788 μg/mL calculated with two peak intensity ratios (I1568/I2260 and I1331/I2260), which is comparable to most studies reported previously, and meanwhile had superiority in simplicity and rapidness. The quantitative measurements for pharmaceutical preparations with benzocaine were conducted without complex extraction and enrichment processes. It was indicated that the SERRS assay combined with azo derivatization reaction has implications for practical applications in more complicated systems involving biological samples, in which appropriate and simplified pretreatments were conducted to remove interfering components.Entities:
Keywords: Raman; SERRS; azo coupling; benzocaine; derivatization
Mesh:
Substances:
Year: 2022 PMID: 35889365 PMCID: PMC9321682 DOI: 10.3390/molecules27144492
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.927
Figure 1SERS spectra of benzocaine at the concentration of 1 mg/mL with Ag NPs at the volume ratio of 1:100, 1:50, 1:30, 1:20, and 1:5. Raman spectra of benzocaine solid and Ag NPs. Excitation wavelength: 532 nm. The inset is the structure of benzocaine.
Figure 2Azo coupling reaction between diazonium ions and benzocaine.
Figure 3(A) UV–vis absorption spectra of Ag NPs (a), Ag NPs-azo mixture at a ratio of 10:1 (b), azo compound derived from 1 mg/mL benzocaine (c), blank sample (d) and diazonium ions from PATP (e). The inset is the visible color change of benzocaine-derived azo product. (B) Derivatization time-dependent UV–vis spectra of benzocaine-derived azo solution within 80 min. The concentration of benzocaine was 1 mg/mL and the solutions were diluted at the same multiple.
Figure 4Mixing ratio of azo solution and Ag NPs-dependent SERRS intensity ratio (I1568/I2260). The azo solution was derived from 1 mg/mL benzocaine. Excitation wavelength: 532 nm. The error bars were made according to at least three data sets.
Figure 5(A) Raman spectra of Ag NPs, benzocaine-derived azo solution, acetonitrile, benzocaine solid, and SERRS spectrum of benzocaine-derived azo solution. (B) Specific peak positions for Raman spectrum of benzocaine solid and SERRS spectrum of azo compound derived from 1 mg/mL benzocaine with Ag NPs at the volume ratio of 1:10. Excitation wavelength: 532 nm.
Figure 6(A) Benzocaine concentration-dependent SERRS spectra of the corresponding azo compound. The intensity ratio of SERRS peaks at 1568 cm−1 (B) and 1331 cm−1 (C) to 2260 cm−1 versus the negative log concentration of benzocaine. Each error bar indicates the standard deviation of the SERRS intensity ratio. The error bars were made with at least five sets of data.
Content of benzocaine in selected pharmaceuticals, determined using the method in this work together with content declared by the manufacturer.
| Pharmaceutical | Benzocaine Content by Our Method (g/g or mg/mL) | Declared Benzocaine Content (g/g or mg/mL) | |
|---|---|---|---|
| Lidinuo compound benzocaine gel | 0.210 ± 0.013 | 0.2 | 6.2 |
| Enemeez | 3.98 ± 0.21 | 4 | 5.3 |
| Americaine benzocaine topical anesthetic spray | 0.201 ± 0.018 | 0.2 | 9.0 |
Summary of current detection methods for benzocaine in the literature.
| Methods | Samples | Sample Treatment | Instrument Test Time | Reference | |
|---|---|---|---|---|---|
| HPLC-DAD | Bioadhesive gel | Stirred 90 min, ultrasonicated 10 min | 30 min | / | [ |
| HPLC-UV-DAD | Cosmetic creams | Dispersed, ultrasonicated 10 min | 30 min | 1.8 μg/g | [ |
| 1.7 ng/g | |||||
| HPLC-UV | Edible fillet tissue from rainbow trout | Inorganic salt treatment, a glass extraction column and a Baker SPE-24G column, rotary evaporation. Then solid-phase extraction | 7.5 min | 6 ng/g | [ |
| RP-HPLC-UV | Suppository | Extracted three times, centrifuged 5 min | 5 min | 0.22 μg/mL | [ |
| HPLC-UV | Cream | Ultrasonicated 10 min, centrifuged 20 min. Repeated three times. | 2.5 min | 6~15.6 μg/mL | [ |
| HPLC-ED | Pastilles and mouthwash | Dissolved then diluted | 10 min | 2.0 × 10−7 mol/L | [ |
| 12 min | 1.9 × 10−7 mol/L | ||||
| TiO2-GO/CPE-based ED | Ear drops, tablets, and oral fluid | Dissolved and diluted. | / | 2.48 × 10−7 mol/L | [ |
| BIA-amperometric method | Fish fillets | Freeze-drying, vortexed 5 min and centrifuged 5 min, frozen and thawed | / | 3.02 × 10−8 mol/L | [ |
| Capsaicin-modified MWCNT and | Analytical grade chemicals | Dissolved and diluted | / | 2.45 ± 0.2 μmol/L | [ |
| Chemiluminescence (MnO4−,H+) | Spray | Dissolved and diluted | / | 0.03 μg/mL | [ |
| SIA-CL (MnO4−,H+) | Babydent STADA solution | Diluted | 120 h−1 | 0.3 μg/mL | [ |
| Colorimetric method | Dentocalm ointment | Extract four times, evaporated to dryness, then dissolved. React for 10 min | 10~60 μg/mL | [ | |
| Kinetic-spectrophotometry (Stopped-flow method) | Tablets and solutions | Dissolved and diluted | 100 h−1 | 30 ng/mL | [ |
| First-derivative spectrophotometric method | Tablets | Dissolved then diluted | / | 10~25 μg/mL | [ |
| Surfactant-enhanced spectrophotometric method | Throat lozenges and lozenges of benzocaine | Dissolved, diluted, react 20 min | / | 0.0825~4.9558 μg/mL | [ |
| SAM nanocube-based plasmene nanosheets for SERS | Banknotes | Dissolved | / | 0.9 × 10−6 g/cm2 | [ |
| Gold film over PS spheres for SERS | Benzocaine in analytical grade | Dissolved | / | 4.3 × 10−7 mol/L | [ |
| Our method | Gel, enema, and spray | Dissolved, ultrasonicated 5 min (not for spray). React 5 min | 0.139 μg/mL (8.39 × 10−7 mol/L) |