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1.
BMC Cardiovasc Disord ; 24(1): 374, 2024 Jul 18.
Artículo en Inglés | MEDLINE | ID: mdl-39026176

RESUMEN

BACKGROUND: Expanding the number of biomarkers is imperative for studying the etiology and improving venous thromboembolism prediction. In this study, we aimed to identify promising biomarkers or targeted therapies to improve the detection accuracy of early-stage deep vein thrombosis (DVT) or reduce complications. METHODS: Quantibody Human Cytokine Antibody Array 440 (QAH-CAA-440) was used to screen novel serum-based biomarkers for DVT/non-lower extremity DVT (NDVT). Differentially expressed proteins in DVT were analyzed using bioinformatics methods and validated using a customized array. Diagnostic accuracy was calculated using receiver operating characteristics, and machine learning was applied to establish a biomarker model for evaluating the identified targets. Twelve targets were selected for validation. RESULTS: Cytokine profiling was conducted using a QAH-CAA-440 (RayBiotech, USA) quantimeter array. Cross-tabulation analysis with Venn diagrams identified common differential factors, leading to the selection of 12 cytokines for validation based on their clinical significance. These 12 biomarkers were consistent with the results of previous array analysis: FGF-6 (AUC = 0.956), Galectin-3 (AUC = 0.942), EDA-A2 (AUC = 0.933), CHI3L1 (AUC = 0.911), IL-1 F9 (AUC = 0.898), Dkk-4 (AUC = 0.88), IG-H3 (AUC = 0.876), IGFBP (AUC = 0.858), Gas-1 (AUC = 0.858), Layilin (AUC = 0.849), ULBP-2 (AUC = 0.813)and FGF-9 (AUC = 0.773). These cytokines are expected to serve as biomarkers, targets, or therapeutic targets to differentiate DVT from NDVT. CONCLUSIONS: EDA-A2, FGF-6, Dkk-4, IL-1 F9, Galentin-3, Layilin, Big-h3, CHI3L1, ULBP-2, Gas-1, IGFBP-5, and FGF-9 are promising targets for DVT diagnosis and treatment.


Asunto(s)
Biomarcadores , Citocinas , Valor Predictivo de las Pruebas , Análisis por Matrices de Proteínas , Trombosis de la Vena , Humanos , Trombosis de la Vena/sangre , Trombosis de la Vena/diagnóstico , Biomarcadores/sangre , Citocinas/sangre , Masculino , Persona de Mediana Edad , Femenino , Reproducibilidad de los Resultados , Anciano , Aprendizaje Automático , Estudios de Casos y Controles , Proteómica , Adulto
2.
Sci Rep ; 14(1): 13298, 2024 06 10.
Artículo en Inglés | MEDLINE | ID: mdl-38858401

RESUMEN

Herein, we aimed to identify blood biomarkers that compensate for the poor specificity of D-dimer in the diagnosis of deep vein thrombosis (DVT). S100A8 was identified by conducting protein microarray analysis of blood samples from patients with and without DVT. We used ELISA to detect S100A8, VCAM-1, and ICAM-1 expression levels in human blood and evaluated their correlations. Additionally, we employed human recombinant protein S100A8 to induce human umbilical vein endothelial cells and examined the role of the TLR4/MAPK/VCAM-1 and ICAM-1 signaling axes in the pathogenic mechanism of S100A8. Simultaneously, we constructed a rat model of thrombosis induced by inferior vena cava stenosis and detected levels of S100A8, VCAM-1, and ICAM-1 in the blood of DVT rats using ELISA. The associations of thrombus tissue, neutrophils, and CD68-positive cells with S100A8 and p38MAPK, TLR4, and VCAM-1 expression levels in vein walls were explored. The results revealed that blood S100A8 was significantly upregulated during the acute phase of DVT and activated p38MAPK expression by combining with TLR4 to enhance the expression and secretion of VCAM-1 and ICAM-1, thereby affecting the occurrence and development of DVT. Therefore, S100A8 could be a potential biomarker for early diagnosis and screening of DVT.


Asunto(s)
Biomarcadores , Calgranulina A , Molécula 1 de Adhesión Intercelular , Molécula 1 de Adhesión Celular Vascular , Trombosis de la Vena , Trombosis de la Vena/diagnóstico , Trombosis de la Vena/metabolismo , Trombosis de la Vena/sangre , Humanos , Calgranulina A/sangre , Calgranulina A/metabolismo , Biomarcadores/sangre , Animales , Molécula 1 de Adhesión Celular Vascular/metabolismo , Molécula 1 de Adhesión Celular Vascular/sangre , Molécula 1 de Adhesión Intercelular/sangre , Molécula 1 de Adhesión Intercelular/metabolismo , Masculino , Ratas , Células Endoteliales de la Vena Umbilical Humana/metabolismo , Persona de Mediana Edad , Femenino , Receptor Toll-Like 4/metabolismo , Transducción de Señal , Modelos Animales de Enfermedad , Adulto , Proteínas Quinasas p38 Activadas por Mitógenos/metabolismo
3.
ACS Sens ; 8(10): 3952-3963, 2023 10 27.
Artículo en Inglés | MEDLINE | ID: mdl-37801040

RESUMEN

Developing a respiratory analysis disease diagnosis platform for the H2S biomarker has great significance for the real-time detection of various diseases. However, achieving highly sensitive and rapid detection of H2S gas at the parts per billion level at low temperatures is one of the most critical challenges for developing portable exhaled gas sensors. Herein, Cu2O-multiwalled carbon nanotube (MWCNT) heterostructures with excellent gas sensitivity to H2S at room temperature and a lower temperature were successfully synthesized by a facile two-dimensional (2D) electrodeposition in situ assembly method. The combination of Cu2O and MWCNTs via the principle of optimal conductance growth not only reduced the initial resistance of the material but also provided an ideal interfacial barrier structure. Compared to the response of the pure Cu2O sensor, that of the Cu2O-MWCNT sensor to 1 ppm of H2S increased nearly 800 times at room temperature, and the response time decreased by more than 500 s. In addition to the excellent sensitivity with detection limits as low as 1 ppb, the Cu2O-MWCNT sensor was extremely selective with low-temperature adaptability. The sensor had a response value of 80.6 to 0.1 ppm of H2S at -10 °C, which is difficult to achieve with sensors based on oxygen adsorption/desorption mechanisms. The sensor was used for the detection of real oral exhaled breath, confirming its feasibility as a real-time disease monitoring sensor. The Cu2O-MWCNT heterostructures maximized the advantages of the individual components and laid the experimental foundation for future applications of highly sensitive portable breath analysis platforms for monitoring H2S.


Asunto(s)
Líquidos Corporales , Nanotubos de Carbono , Adsorción , Pruebas Respiratorias , Frío
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