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1.
Talanta ; 278: 126494, 2024 Oct 01.
Artículo en Inglés | MEDLINE | ID: mdl-38955100

RESUMEN

The spread of the SARS-CoV-2 virus has had an unprecedented impact, both by posing a serious risk to human health and by amplifying the burden on the global economy. The rapid identification of the SARS-CoV-2 virus has been crucial to preventing and controlling the spread of SARS-CoV-2 infections. In this study, we propose a multilayered plasmonic nanotrap (MPNT) device for the rapid identification of single particles of SARS-CoV-2 virus in ultra-high sensitivity by surface-enhanced Raman scattering (SERS). The MPNT device is composed of arrays of concentric cylindrical cavities with Ag/SiO2/Ag multilayers deposited on the top and at the bottom. By varying the diameter of the cylinders and the thickness of the multilayers, the resonant optical absorption and local electric field were optimized. The SERS enhancement factors of the proposed device are of the order of 108, which enable the rapid identification of SARS-CoV-2 N protein in concentrations as low as 1.25 × 10-15-12.5 × 10-15 g mL-1 within 1 min. The developed MPNT SERS device provides a label-free and rapid detection platform for SARS-CoV-2 virus. The general nature of the device makes it equally suitable to detect other infectious viruses.


Asunto(s)
COVID-19 , SARS-CoV-2 , Plata , Espectrometría Raman , Espectrometría Raman/métodos , SARS-CoV-2/aislamiento & purificación , Plata/química , Humanos , COVID-19/diagnóstico , COVID-19/virología , Proteínas de la Nucleocápside de Coronavirus/análisis , Dióxido de Silicio/química , Fosfoproteínas/análisis , Fosfoproteínas/química , Nanopartículas del Metal/química , Límite de Detección , Proteínas de la Nucleocápside/química
2.
Int J Biol Macromol ; 269(Pt 1): 131826, 2024 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-38679256

RESUMEN

The tumor microenvironment (TME) of pancreatic ductal adenocarcinoma (PDAC) is characterized by deposition of desmoplastic matrix (including collagen and hyaluronic acid). And the interactions between tumor-associated macrophages (TAMs) and tumor cells play a crucial role in progression of PDAC. Hence, the appropriate model of tumor cell-macrophage interaction within the unique PDAC TME is of significantly important. To this end, a 3D tumor niche based on dual-crosslinking gelatin methacrylate and hyaluronic acid methacrylate hydrogels was constructed to simulate the desmoplastic tumor matrix with matching compressive modulus and composition. The bionic 3D tumor niche creates an immunosuppressive microenvironment characterized by the downregulation of M1 markers and upregulation of M2 markers in TAMs. Mechanistically, RNA-seq analysis revealed that the PI3K-AKT signaling pathway might modulate the phenotypic balance and recruitment of macrophages through regulating SELE and VCAM-1. Furthermore, GO and GSEA revealed the biological process of leukocyte migration and the activation of cytokine-associated signaling were involved. Finally, the 3D tumor-macrophage niches with three different ratios were fabricated which displayed increased M2-like polarization and stemness. The utilization of the 3D tumor niche has the potential to provide a more accurate investigation of the interplay between PDAC tumor cells and macrophages within an in vivo setting.


Asunto(s)
Carcinoma Ductal Pancreático , Gelatina , Ácido Hialurónico , Metacrilatos , Microambiente Tumoral , Macrófagos Asociados a Tumores , Gelatina/química , Ácido Hialurónico/química , Ácido Hialurónico/farmacología , Humanos , Macrófagos Asociados a Tumores/metabolismo , Macrófagos Asociados a Tumores/efectos de los fármacos , Microambiente Tumoral/efectos de los fármacos , Carcinoma Ductal Pancreático/patología , Carcinoma Ductal Pancreático/metabolismo , Metacrilatos/química , Metacrilatos/farmacología , Neoplasias Pancreáticas/patología , Neoplasias Pancreáticas/metabolismo , Hidrogeles/química , Línea Celular Tumoral , Materiales Biomiméticos/química , Materiales Biomiméticos/farmacología , Transducción de Señal/efectos de los fármacos
3.
Waste Manag ; 178: 26-34, 2024 Apr 15.
Artículo en Inglés | MEDLINE | ID: mdl-38377766

RESUMEN

Municipal sludge contains abundant amounts of carbon, with contents ranging from 14 % to 38 %. The various carbon-containing group compounds can be converted into beneficial products, but pollutants and greenhouse gases are also released through the municipal sludge pyrolysis process. Ascertaining the pathways by which carbon-containing group compounds is converted and transformed is crucial for addressing pollution concerns and promoting recycling. This study explored the transformation pathways of carbon-containing group compounds during the pyrolysis process of municipal sludge. The results showed that the three major carbon-containing group compounds including protein (61 %), cellulose (9 %), and hemicellulose (7 %), had significantly different pyrolysis temperature of 600 °C, 400 °C and 300 °C. In terms of gas pollution, most carbon was fully pyrolyzed into CO2. While the temperature raised up to 500 °C, a part of the CO2 converted into CO. Meanwhile, the various carbon-containing compounds exhibited distinct effects on gas production, which CH4 was produced more with cellulose and protein presenting in the sludge. When temperature increased to 700 °C, the 60 % of the carbon-containing group compounds were transformed into liquid and solid. The pyrolysis liquid in the low-temperature stage (30-300 °C) contained a relatively high aliphatics content and lower organooxygen species (OOSs) content (at 200 °C), suggesting a potential for resource utilization. The yield of CO in the gas rapidly increased as the temperature increased in the high-temperature stage (500-700 °C). The insights from this study hold practical implications for enhancing municipal sludge pyrolysis efficiency, reducing pollution, and facilitating more sustainable and resource-efficient practices.


Asunto(s)
Pirólisis , Aguas del Alcantarillado , Dióxido de Carbono , Compuestos Orgánicos , Carbono , Celulosa
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