Publications by authors named "Fazeli A"

Article Synopsis
  • This study highlights the development of innovative burn wound dressings using Zeolitic Imidazolate Framework-8 (ZIF-8) in alginate-gelatin hydrogels to combat antibiotic resistance and improve healing.
  • The optimal dressing, containing 4% ZIF-8, showed a significant reduction in swelling and a marked increase in degradation rates, alongside a remarkable 99% antibacterial effectiveness against common pathogens like E. coli and S. aureus.
  • In vivo testing in Wistar rats indicated that the 4% ZIF-8 dressing resulted in over 89% wound closure and enhanced tissue regeneration, suggesting its potential as a next-generation solution for burn care.
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Introduction: Concealed penis is a congenital anomaly that affects not only the appearance but also the function of the external genitalia in the male sex. Different surgical methods have been proposed to correct this disorder, including removal of the previous scar, penile shaft, penile trunk skin reconstruction with flap, penile skin fixation in penopubic and penoscrotal angles, and removal of extra pubic fat. In this study, we will discuss the results of definitive surgery in one stage using autogenous skin grafts and examine the details of this technique.

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Background: Biventricular dysfunction is frequent in patients with repaired tetralogy of Fallot, necessitating routine imaging to monitor for worsening conditions and determine whether procedures like pulmonary valve replacement (PVR) are needed. This study aimed to highlight the parameters of cardiac magnetic resonance imaging (CMR) and their association with adverse outcomes in the midterm follow-up of these patients.

Methods: This longitudinal study recruited all patients with a history of tetralogy of Fallot total correction (TFTC) who had two CMR images at a minimum three-month interval at Rajaie Center from 2007 through 2017.

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Article Synopsis
  • Extracellular vesicles (EVs) are involved in communication between and within species by transferring biomolecules; plant-derived EVs, in particular, show promise as biomarkers and are useful in various industries, but a detailed characterization of these vesicles is necessary for future applications.* -
  • The study focused on isolating EVs from hydroponically grown potato plants, observing similarities in morphology between EVs from roots and peels, while noting that root-derived EVs were larger and contained a higher concentration of proteins.* -
  • Analysis revealed that most proteins found in root and peel EVs were different, with both types showing enrichment in pathways related to stress responses, indicating that EVs may serve defensive roles in plants and
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Microencapsulation is one of the most important methods to enhance the survival of bacteria when exposed to various harsh conditions. The present study evaluated the viability of L. reuteri ATCC 23272 microencapsulated in polysaccharide-based bionanocomposite.

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Successful embryo implantation relies on synchronized dialog between the embryo and endometrium, and the role of extracellular vesicles (EVs) in facilitating this cross-talk has been recently established. In our previous study, milk fat globule-EGF factor 8 protein (MFGE8) was identified as increasing in receptive endometrial epithelial cells (EECs) in response to trophoblastic EVs. However, the dynamics of MFGE8 protein in this context are not completely understood.

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  • Crohn's disease perianal fistulae often don't respond well to standard therapies, but mesenchymal stem cell (MSC)-derived exosomes have shown potential as a treatment, being deemed safe in previous studies.
  • A phase II clinical trial was conducted with 23 patients suffering from refractory perianal fistulas, where exosomes were injected directly into the fistula tracts over a period of 6 months.
  • Results indicated that 60% of patients achieved complete fistula closure, and overall, 69.7% of treated fistula tracts showed significant closure, along with some observed improvements in discharge from the tracts.
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The pivotal role of extracellular vesicles (EVs) in facilitating effective communication between the embryo and maternal cells during the preimplantation stage of pregnancy has been extensively explored. Nonetheless, inquiries persist regarding the alterations in EV cargo from endometrial cells under stress conditions and its potential to elicit specific stress responses in trophoblast cells. Thus, the aim of this study was to elucidate the involvement of EV miRNA miRNAs in transmitting stress signals from maternal cells to trophoblasts.

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Purpose: Colorectal cancer is the second leading cause of cancer death worldwide. Standard treatments for locally advanced rectal cancer include neoadjuvant chemoradiotherapy and total mesorectal excision (TME), which are associated with significant morbidity. After neoadjuvant therapy, one-third of patients achieve a pathological complete response (pCR) and are eligible for a watch-and-wait approach without TME.

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Extracellular vesicles (EVs) serve as messengers for intercellular communication, yet the precise mechanisms by which recipient cells interpret EV messages remain incompletely understood. In this study, we explored how the origin of EVs, their protein cargo, and the recipient cell type influence the cellular response to EVs within an embryo implantation model. We treated two types of EVs to 6 different recipient cell types and expression of zinc finger protein 81 (ZNF81) gene expression in the recipient cells were quantified using quantitative polymerase chain reaction (qPCR).

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Cow uterine infections pose a challenge in dairy farming, resulting in reproductive disorders. Uterine fluid extracellular vesicles (UF-EVs) play a key role in cell-to-cell communication in the uterus, potentially holding the signs of aetiology for endometritis. We used mass spectrometry-based quantitative shotgun proteomics to compare UF-EV proteomic profiles in healthy cows (H), cows with subclinical (SE) or clinical endometritis (CLE) sampled at 28-35 days postpartum.

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Mammalian reproduction relies on precise maternal-fetal communication, wherein immune modifications foster tolerance toward the semi-allogeneic embryo. Extracellular vesicles (EVs), including exosomes and microvesicles, have emerged as crucial mediators, transporting molecules like microRNAs securely. EVs influence various reproductive stages, from gamete maturation to implantation, and impact pathologies like pregnancy loss.

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The growing understanding of the role of extracellular vesicles (EVs) in embryo-maternal communication has sparked considerable interest in their therapeutic potential within assisted reproductive technology, particularly in enhancing implantation success. However, the major obstacle remains the large-scale production of EVs, and there is still a gap in understanding how different culture systems affect the characteristics of the EVs. In the current study, trophoblast analogue human chorionic carcinoma cell line was cultivated in both conventional monolayer culture (2D) and as spheroids in suspension culture (3D) and how the cell growth environment affects the physical, biochemical and cellular signalling properties of EVs produced by them was studied.

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Article Synopsis
  • The study aimed to evaluate the flexural strength of monolithic zirconia in different thicknesses (0.5 mm and 1.2 mm) and using two sintering techniques (fast and conventional).
  • The results showed that thicker specimens (1.2 mm) had significantly greater flexural strength compared to thinner ones (0.5 mm), while the sintering time did not exhibit a significant impact on strength within the same thickness group.
  • Overall, the findings suggest that increasing the thickness of monolithic zirconia enhances its strength, whereas varying sintering times does not significantly alter it.
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Background: pathological complete response (pCR) is achieved in 10%-30% of rectal cancer patients following neoadjuvant chemoradiotherapy and surgery. Residual mucosal abnormalities, which make patients ineligible for nonoperative management, may not be an accurate indicator of the pCR. The purpose of this study was to report the gross findings of rectal cancer patients with pathological complete responses.

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Milk is a fundamental component of the human diet, owing to its substantial nutritional content. In addition, milk contains nanoparticles called extracellular vesicles (EVs), which have indicated their potential beneficial roles such as cell-to-cell communication, disease biomarkers, and therapeutics agents. Amidst other types of EVs, milk EVs (MEVs) have their significance due to their high abundance, easy access, and stability in harsh environmental conditions, such as low pH in the gut.

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Electromagnetically propelled helical nanoswimmers offer great potential for nanorobotic applications. Here, the effect of confinement on their propulsion is characterized using lattice-Boltzmann simulations. Two principal mechanisms give rise to their forward motion under confinement: (i) pure swimming and (ii) the thrust created by the differential pressure due to confinement.

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Increasing antimicrobial resistance (AMR) challenges conventional antibiotics, prompting the search for alternatives. Extracellular vesicles (EVs) from pasteurised cattle milk offer promise, due to their unique properties. This study investigates their efficacy against five pathogenic bacteria, including ATCC 25923, aiming to combat AMR and to develop new therapies.

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The bacterium Burkholderia pseudomallei is the cause of melioidosis infectious disease. In this bacterium, the BLF1 protein wide inhibits the synthesis of proteins in human cells. This disease is reported to cause a death rate of 40% in some parts of the world.

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Expression of concern for 'Highly porous copper-supported magnetic nanocatalysts: made of volcanic pumice textured by cellulose and applied for the reduction of nitrobenzene derivatives' by Reza Taheri-Ledari , , 2021, , 25284-25295, https://doi.org/10.1039/D1RA03538J.

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Article Synopsis
  • * A key challenge for probiotics is ensuring their viability during digestion and proper storage, prompting research into effective preservation techniques.
  • * Microencapsulation using polysaccharides and proteins in bionanocomposites is highlighted as a promising method to enhance probiotic survival and delivery in tough gastrointestinal environments.
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Objective: This study aims to compare the effectiveness of cognitive-behavioral therapy (CBT) and low-frequency (LF) repetitive transcranial magnetic stimulation (rTMS) in reducing symptom severity and depression and improving working memory in adults with obsessive-compulsive disorder (OCD).

Methods: This is a randomized clinical trial conducted on 24 adults with OCD, randomly assigned into two groups of CBT ( = 12, received CBT with exposure and response prevention (ERP) individually at 20 sessions) and rTMS ( = 12, received LF (1-Hz) rTMS over the right dorsolateral prefrontal cortex (DLPFC) at 10 sessions). They completed the Yale-Brown Obsessive Compulsive Scale, the Hamilton Depression Rating Scale, and two N-Back tasks before, immediately, and 1 month after interventions.

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Uterine environment is tightly and finely regulated via various signaling pathways mediated through endocrine, exocrine, autocrine, juxtacrine, and paracrine mechanisms. In utero signaling processes are paramount for normal and abnormal physiology which involves cell to cell, cells to gametes, cells to embryo, and even interkingdom communications due to presence of uterine microbiota. Extracellular vesicles (EVs) in the uterine fluid (UF) and their cargo components are known to be mediators of in utero signaling and communications.

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Plants respond to water shortage by regulating biochemical pathways which result in the biosynthesis of osmotic compounds. Active metabolites and compatible osmolytes control the inhibition of oxygen free radicals and dehydration. The physiological response of scrophularia striata to drought stress, a factorial completely randomized design (FCRD) experiment was conducted in three replication.

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