Publications by authors named "Seyed A Sheikholeslami"

Purpose: This study aimed to develop an innovative, intelligent wound dressing capable of signaling infections through color changes.

Design/methodology/approach: Using response surface methodology, the Rhodamine B fluorescence colorant was encapsulated within colloidal nanoparticles and integrated into a sodium alginate patch at various concentrations. The physical and chemical characteristics of the nanoparticles and the wound dressing were thoroughly analyzed via dynamic light scattering (DLS), zeta potential measurements, scanning electron microscopy (SEM), and Fourier transform infrared spectroscopy (FTIR).

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Soft grippers, a rapidly growing subfield of soft robotics, utilize compliant and flexible materials capable of conforming to various shapes. This feature enables them to exert gentle yet, if required, strong gripping forces. In this study, we elaborate on the material selection and fabrication process of gripping fingers based on the dielectric elastomer actuation technique.

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Microneedle patches are attractive drug delivery systems that give hope for treating skin disorders. In this study, to first fabricate a chitosan-based low-cost microneedle patch (MNP) using a CO laser cutter for in vitro purposes was tried and then the delivery and impact of Glycyrrhiza glabra extract (GgE) on the cell population by this microneedle was evaluated. Microscopic analysis, swelling, penetration, degradation, biocompatibility, and drug delivery were carried out to assess the patch's performance.

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Background And Aim: Glioblastoma multiform (GBM) is considered as one of the malignant brain tumors that affect a wide range of people every year. Cancer stem cells, as essential factors, are resistant to chemotherapy drugs and complicate treatments. Therefore, finding critical molecular pathways in GBM-derived stem cells, and selecting the appropriate drug agents can prove more effective treatment approaches for GBM.

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Tamoxifen is one of the most used drugs for breast cancer. This study aimed to investigate the effect of the Tamoxifen mechanism on the epithelial-mesenchymal transition (EMT) pathway among breast cancer patients due to its resistance to breast cancer cells. We selected the appropriate datasets from the GEO database using continuous and integrated bioinformatics analysis.

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Introduction: It is important to identify the relationship between COVID-19 and gastrointestinal symptoms for health organizations in different communities.

Aim: To assess the relationship between gastrointestinal symptoms and COVID-19.

Material And Methods: It was a cross-sectional descriptive-analytical study that was conducted on 381 patients those where admitted to Imam Hossein Hospital with a confirmed diagnosis of COVID-19 on nasopharyngeal polymerase chain reaction testing for SARS-CoV-2 from first March to end of June in Tehran city; 2020.

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Although immunosurveillance mechanisms are doing their best to counteract with the development of malignant cells, immune checkpoints may serve as the "Achilles' heel" that are exploited by malignant cells. Notably, a deep understanding of this fragile site of the immune system later led to the development of immune checkpoint blockades (ICBs). At the beginning of the discovery, it seemed that these agents could push the boundaries of cancer treatment, however, their life-threatening adverse events have muted the enthusiasm into their application in cancer.

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Background: Anthracyclines, a widely used chemotherapy agent with a definite survival improvement, can result in cardiac toxicity presenting with HF (heart failure).

Objective: We aim to assess the predictive value of cardiac biomarkers assessment in combination with myocardial two-dimensional strain echocardiography for early detection of cardiac toxicity in patients who underwent Anthracycline-based chemotherapy.

Methods: Fifty-two consecutive adult patients scheduled to undergo the first course of Anthracycline-based chemotherapy were subjected to the study.

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