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Thiram, an oxidized dimer of dithiocarbamate, has fungicidal and ectoparasiticidal roles. This study aimed to determine the effects of thiram on the development of zebrafish (ZF) embryos. The developmental toxicity test was performed in accordance with the OECD 236 test guidelines, and ZF embryos were subjected to several thiram concentrations and a DMSO (0.01%) control. Subsequently, embryo mortalities and developmental anomalies were evaluated at different hours post fertilization (hpf). Thiram was highly toxic to ZF, with calculated median lethal concentrations (LC) of thiram at 48 and 96 h as 13.10 ± 2.17 and 8.87 ± 2.09 μg/L, respectively. Thiram-treated embryos/larvae exhibited a variety of deformities, such as abnormal somites, reduced eye pigment, abnormal tail shape, yolk sac edema, hatching defects, and curved spines, with a median effective concentration (EC) of 3.88 ± 1.23, 5.04 ± 1.82, 6.23 ± 0.92, 5.24 ± 2.22, 1.39 ± 0.25, and 2.60 ± 0.82 μg/L, respectively. Teratogenic index (TI) values ranged from 1.42 to 6.66 for the scored deformities. At 48 hpf, the average heartbeat of the control group was 177.20 ± 5.63 per minute, while the highest thiram-treated group (40 μg/L) was 99.50 ± 18.12 per minute. In addition, cardiac-related issues, such as pericardial edema and abnormal blood flow, were observed in thiram-treated ZF embryos. Overall, these findings suggest that thiram is teratogenic to ZF.
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http://dx.doi.org/10.3390/toxics10070369 | DOI Listing |
Spectrochim Acta A Mol Biomol Spectrosc
August 2025
State Key Laboratory of Metastable Materials Science and Technology, Key Laboratory for Microstructural Material Physics of Hebei Province, School of Science, Yanshan University, Qinhuangdao 066004, China. Electronic address:
Combining the advantages of semiconductors and precious metals to produce highly sensitive Surface-enhanced Raman scattering (SERS) substrates. In this paper, CuO@Ag core-shell particles were prepared, optical fibers were selected as substrates to strengthen the portability of SERS substrates, optical fiber SERS probes were prepared by electrostatic adsorption method and chemical bonding method, and the performance of SERS probes prepared by the two methods under the same deposition time was discussed, which it was found that the optical fiber probes prepared by chemical bonding method had better Raman enhancement effect. Rhodamine 6G(R6G) was used as the detection molecule to investigate the detection limit, uniformity, reproducibility of fiber SERS probe.
View Article and Find Full Text PDFSpectrochim Acta A Mol Biomol Spectrosc
January 2026
School of Chemistry and Environmental Engineering, School of Chemical Engineering and Pharmacy, Wuhan Institute of Technology, Wuhan 430205, China. Electronic address:
In surface-enhanced Raman scattering (SERS) measurements, the creation of "hot spots" and the effective concentration of analytes in these areas are crucial for enhancing detection sensitivity. In this work, a novel composite with highly SERS activity, Ag nanospheres decorated Ag nanostar/ZIF-8 composite (Ag NS/ZIF-8/Ag) was achieved via first coating the Ag nanostars with the metal-organic framework ZIF-8, known for its strong molecular adsorption capabilities, followed by the electrostatic self-assembly of Ag nanospheres. The composites produce numerous hotspots due to the abundant plasmonic nanogaps, including the interstitial space between the Ag nanostar and Ag nanospheres, as well as internanogaps between neighboring Ag nanospheres, resulting in outstanding SERS performance.
View Article and Find Full Text PDFJ Colloid Interface Sci
August 2025
School of Materials and Chemical Engineering, Anhui Jianzhu University, Hefei 230601, PR China; Anhui Province Key Laboratory of Advanced Building Materials, Anhui Jianzhu University, Hefei 230601, PR China.
Electrically Modulated Surface-enhanced Raman spectroscopy (E-SERS) technology can effectively increase Raman signal intensity. Compared with conventional E-SERS, self-powered E-SERS sensors provide an electric field through energy conversion, which reduces the dependence on external power sources and thus facilitates the development of portable real sample detection. Herein, high-performance piezoelectric lead zirconate titanate (PZT) with dopamine-functionalized reduced graphene oxide (rGO@PDA) was embedded into a polyvinylidene fluoride-trifluoroethylene (PVDF-TrFE) matrix, which was innovatively used for E-SERS technology.
View Article and Find Full Text PDFFood Chem
August 2025
Key Laboratory of Digital-Intelligence and Dynamic Perception for Food Quality of China Light Industry, Beijing Technology and Business University, Beijing 100048, PR China.
A dual-emission ratiometric sensing platform was developed for sensitive and selective detection of thiram, a toxic dithiocarbamate fungicide, by integrating fluorescence and room temperature phosphorescence (RTP) signals. The system employs boron-doped silane-functionalized carbon dots (RhB-CDs@SiO@BA) with Rhodamine B (RhB) to establish Förster resonance energy transfer (FRET)-mediated dual emission at 440/570 nm (fluorescence) and 490/590 nm (phosphorescence). The Cu-thiram complex selectively quenched both signals via inner filter effect (IFE), enabling precise quantification of thiram within a linear range of 0.
View Article and Find Full Text PDFAppl Spectrosc
August 2025
Duke University, Fitzpatrick Institute for Photonics, 101 Science Drive, Durham, North Carolina, 27708-0187, USA.
In this study, we have developed a plasmonic hybrid heterostructure integrating two elements: Two-dimensional (2D) reduced graphene oxide-gold nanostars composite (rGO-GNS), and gold nanostars (GNS) substrate. By harnessing the unique plasmonic properties of rGO in chemical enhancement and that of GNS in electromagnetic enhancement, the hybrid heterostructure offers synergistic enhancement effects that enable ultra-low sensitivity and accurate identification and analysis of trace quantities of target substances. It is noteworthy that the high-density hotspots generated by strong plasmonic coupling of rGO-GNS and GNS results in ultra-high surface-enhanced Raman spectroscopy (SERS) enhancement compared to individual substrate either GNS or rGO-GNS substrate.
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