Publications by authors named "Fourati N"

Article Synopsis
  • The study shows that electrical charges from redox couples are not needed to detect electroactive proteins using a specialized electrochemical sensor.
  • Researchers created a polydopamine-based biosensor to detect bovine serum albumin, finding better results without redox probes in phosphate-buffered solutions.
  • The findings suggest that adding redox probes can interfere with protein interactions, and the method was verified by detecting other proteins like human serum albumin and immunoglobulin G, indicating a new approach for quantifying electroactive proteins.
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Covalent Organic Frameworks (COF) having conjugated backbone are an interesting class of metal-free, visible light active, heterogeneous photocatalysts. Interestingly, synthesis of COF using continuous flow process has emerged as an efficient, alternative method when compared to the traditional batch process. Here, we demonstrate the possibility to engineer the physical properties and hence the adsorption and catalytic activities of a β-ketoenamine COF by varying monomer flow rate and microreactor design during the continuous flow synthesis.

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This study investigates the feasibility of a simple electrochemical detection of Prostate Cancer Antigen 3 (PCA3) fragments extracted from patients' urine, using a thiolated single-strand DNA probe immobilized on a gold surface without using a redox probe. To enhance the PCA3 recognition process, we conducted a comparative analysis of the hybridization location using two thiolated DNA probes: Probe 1 targets the first 40 bases, while Probe 2 targets the fragment from bases 47 to 86. Hybridization with PCA3 followed, using square wave voltammetry.

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Microbial surfactants are natural amphiphilic compounds with high surface activities and emulsifying properties. Due to their structural diversity, low toxicity, biodegradability, and chemical stability in different conditions, these molecules are potential substitutes for chemical surfactants; their interest has grown significantly over the last decade. The current study focuses on the isolation, identification, and characterization of a lactic acid bacteria that produce two forms of biosurfactants.

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Helicobacter pylori () is a highly contagious pathogenic bacterium that can cause gastrointestinal ulcers and may gradually lead to gastric cancer. expresses the outer membrane HopQ protein at the earliest stages of infection. Therefore, HopQ is a highly reliable candidate as a biomarker for detection in saliva samples.

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Purpose: Radiation therapy with chemotherapy (CCR) is currently the gold standard treatment for nasopharyngeal carcinoma (NPC). Anatomical changes are mainly due to weight loss. Our prospective study aimed to evaluate the nutritional status and the quality of weight loss in our patients to adapt the subsequent nutritional management of patients during treatment for NPC.

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Engrailed 2 (EN2) is a homeodomain-containing transcription factor expressed in prostate cancer (PCa) cell lines and is secreted into the urines. It is nowadays considered as a promising non-invasive biomarker for PCa early diagnosis. Herein, we report the design of an electrochemical immunosensor for EN2 detection.

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Bacterial contamination and biofilm formation generate severe problems in many fields. Among these biofilm-forming bacteria, () has emerged as a major cause of nosocomial infection (NI). However, with the dramatic rise in resistance toward conventional antibiotics, there is a pressing need for developing effective anti-biofilms.

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Purpose: The pre- and post-induction chemotherapy tumor volumes of nasopharyngeal carcinomas may be prognostic indicators for adapting the therapeutic strategy. The objective of our study is to assess the prognostic impact of pre- and post-induction chemotherapy volumes in patients treated for locally advanced nasopharyngeal carcinomas.

Patients And Methods: This is a retrospective study including 52 patients with locally advanced nasopharyngeal carcinoma treated with 3 courses of induction chemotherapy (TPF) followed by intensity modulated radiotherapy associated with concomitant chemotherapy.

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Nasopharyngeal carcinoma diagnosis is often made at a locally advanced stage (75 to 90% of cases) due to its deep localization. Concomitant radio-chemotherapy is the cornerstone of the treatment of locally advanced forms. The advent of intensity-modulated radiotherapy has improved oncological outcomes and reduced toxicity and is currently the gold standard for irradiation technique.

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The data presented here are related to the article entitled "New contributions to the drug profile of TNFα inhibitor SPD304: affinity, selectivity ADMET considerations" published in the European Journal of pharmacology. As DMSO is usually used as a co-solvent to dissolve low aqueous soluble small molecules, such as SPD304, we have investigated the influence of its concentration on the kinetic of interaction between tumor necrosis factor α (TNF-α) and its inhibitor, SPD304. The presented data, acquired using a surface acoustic wave sensor, can be used in further biological studies to compare the kinetic of interaction between proteins/small molecules in general and TNFα/inhibitors in particular.

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Background: Cardiotoxicity following breast cancer radiotherapy (RT) represents one of the most redoubtable toxicities. The Global longitudinal strain measurement (GLS) based on 2D speckle tracking imaging (STI) allows detection of left ventricular (LV) dysfunction at a subclinical stage. The aim of this prospective study was to detect patients at risk of cardiotoxicity using echocardiographic parameters and to determine the association between segmental RT doses and early cardiac toxicity.

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"Warn, inform, and prevent" are three essential elements to remember when designing sensors for real-time and in situ monitoring of organic, inorganic, and macromolecular compounds as well as micro-nanoparticles and microorganisms [...

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This review critically summarizes the knowledge of imprinted polymer-based electrochemical sensors for the detection of pesticides, metal ions and waterborne pathogenic bacteria, focusing on the last five years. MIP-based electrochemical sensors exhibit low limits of detection (LOD), high selectivity, high sensitivity and low cost. We put the emphasis on the design of imprinted polymers and their composites and coatings by radical polymerization, oxidative polymerization of conjugated monomers or sol-gel chemistry.

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Tumor necrosis factor alpha (TNFα) is a relevant clinical target for the treatment of chronic inflammatory diseases. Currently, only few small molecules are known as direct inhibitors of TNFα. To date, none of these molecules has shown both an efficient activity and a low toxicity to be considered for clinical trials.

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The HER2 receptor (Human Epidermal Growth Receptor 2) is a transmembrane receptor with tyrosine kinase activity that is over-expressed in 25-30 % of breast carcinomas. Its activation is associated with an exaggeration of cell proliferation with an increase in repair capacity resulting in increased radioresistance. On cardiac tissues, HER2 receptor activation plays a cardio-protective role.

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Several studies were devoted to the design of molecularly imprinted polymer (MIP)-based sensors for the detection of a given protein. Here, we bring elements that could contribute to the understanding of the interaction mechanism involved in the recognition of a protein by an imprint. For this purpose, a polydopamine (PDA)-MIP was designed for bovine serum albumin (BSA) recognition.

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Sensitivity is one of the most important parameters to put in the foreground in all sensing applications. Its increase is therefore an ongoing challenge, particularly for surface acoustic wave (SAW) sensors. Herein, finite element method (FEM) simulation using COMSOL Multiphysics software is first used to simulate the physical and electrical properties of SAW delay line.

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Modern high-precision radiotherapy techniques have recently incorporated the notion of anatomical variations of the patient during treatment and have tried to adapt the treatment planning to them. Adaptive radiotherapy for nasopharyngeal tumors is starting to prove its benefit nowadays. His interest is constantly being evaluated.

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Rapid and accurate detection of proteins in biological fluids is increasingly required in the biomedical environment. Actually, it is performed with conventional techniques, which are generally run by robotized platforms at centralized laboratories. In this work, molecular dynamics calculations and an experimental procedure were conducted to set up electrochemical sensors based on polypyrrol (PPy) molecular imprinted polymers (MIP) for proteins detection.

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Purpose: The aim of this work is to evaluate the anatomical changes of the glandular structures during the NPC IMRT and to study their dosimetric impacts.

Patients And Methods: Twenty patients receiving IMRT for NPC were included. For each patient, a second dosimetric CT was performed at a dose of 38Gy, which was fused with the initial planning dosimetric CT.

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Background And Purpose: To assess anatomic changes during intensity modulated radiotherapy (IMRT) for nasopharyngeal carcinoma (NPC) and to determine its dosimetric impact.

Patients And Methods: Twenty patients treated with IMRT for NPC were enrolled in this study. A second CT was performed at 38 Gy.

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Purpose: We report in this study, the dosimetric and carcinologic results of intensity-modulated technique for the reirradiation of nasopharyngeal carcinomas.

Patients And Methods: Eight patients reirradiated with intensity-modulation technique between January 2015 and December 2017 were included. We noted for each patient: the minimum, maximum and average doses, the dose received by 95% (D95%), 98% (D98%) and 2% (D2%) of the volume to be irradiated, the homogeneity and conformity indices and doses to the organs at risk.

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