Publications by authors named "Iordache Florin"

Cellular senescence is a permanent condition of cell cycle arrest caused by a progressive shortening of telomeres defined as replicative senescence. Stem cells may also undergo an accelerated senescence response known as premature senescence, distinct from telomere shortening, as a response to different stress agents. Various treatment protocols have been developed based on epigenetic changes in cells throughout senescence, using different drugs and antioxidants, senolytic vaccines, or the reprogramming of somatic senescent cells using Yamanaka factors.

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  • * Researchers found distinct patterns of miRNA expression after 4 weeks of AFSC differentiation into endothelial cells and smooth muscle cells, with several miRNAs being significantly upregulated or downregulated.
  • * Understanding these miRNA networks could lead to significant advancements in biomedical applications, particularly in areas related to cell growth, differentiation, and vascular health.
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The immune response encompasses innate and adaptive immunity, each with distinct and specific activities. The innate immune system is constituted by phagocytic cells, macrophages, monocytes and neutrophils, the cascade system, and different classes of receptors such as toll-like receptors that are exploited by the innate immune cells. The adaptive immune system is antigen-specific, encompassing memory lymphocytes and the corresponding specific receptors.

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  • There is a lack of discharge protocols for acute pancreatitis (AP) patients, which the Hungarian Pancreatic Study Group (HPSG) aims to address with a new, validated protocol based on laboratory data and symptoms.
  • An international survey revealed that 87.5% of participating medical centers do not have discharge protocols, but those that do see shorter hospital stays and lower readmission rates.
  • The HPSG discharge protocol resulted in the lowest average length of hospital stay and demonstrated safety through a low readmission rate, highlighting the need for developing and validating more standardized discharge protocols for AP care.
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A Ga-substituted spinel magnetite nanoparticles (NPs) with the formula GaFeO were synthesized using both the one-pot solvothermal decomposition method (TD) and the microwave-assisted heating method (MW). Stable colloidal solutions were obtained by using triethylene glycol, which served as a NPs stabilizer and as a reaction medium in both methods. A narrow size distribution of NPs, below 10 nm, was achieved through selected nucleation and growth.

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Injuries and diseases of the skin require accurate treatment using nontoxic and noninvasive biomaterials, which aim to mimic the natural structures of the body. There is a strong need to develop biodevices capable of accommodating nutrients and bioactive molecules and generating the process of vascularization. Electrospinning is a robust technique, as it can form fibrous structures for tissue engineering and wound dressings.

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The purpose of this study was to determine the link between insulin-like growth factor 1 (IGF-1), progesterone (PROG), non-esterified fatty acids (NEFAs), β-hydroxybutyrate (BHB), and glucose (GLU) and pregnancy probability after the first artificial insemination (AI) and during the first 100 days in milk (DIM), during the critical transition period. We determined levels of serum IGF-1, PROG, NEFA, BHB, and GLU in Holstein dairy cows via ELISA, using blood samples collected 7 days before parturition (DAP) until 21 days postparturition (DPP). The group was split into cows diagnosed pregnant at 100 DIM (PREG) and those that did not conceive at 100 and 150 DIM (NPREG).

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The risk of mycotoxins co-occurrence in extrusion-produced dry foods increases due to their composition based on various grains and vegetables. This study aimed to validate a risk estimation for the association between ingredients and the ELISA-detected levels of DON, FUM, ZEA, AFs, T2, and OTA in 34 dry dog food products. The main ingredients were corn, beet, and oil of different origins (of equal frequency, 79.

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Viral pathologies encompass activation of pro-oxidative pathways and inflammatory burst. Alleviating overproduction of reactive oxygen species and cytokine storm in COVID-19 is essential to counteract the immunogenic damage in endothelium and alveolar membranes. Antioxidants alleviate oxidative stress, cytokine storm, hyperinflammation, and diminish the risk of organ failure.

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Background: Biomarker profiles should represent a coherent description of the colorectal cancer (CRC) stage and its predicted evolution.

Methods: Using droplet digital PCR, we detected the allelic frequencies (AF) of KRAS, NRAS, BRAF, and EGFR mutations from 60 tumors. We employed a pair-wise association approach to estimate the risk involving AF mutations as outcome variables for clinical data and as predicting variables for tumor-staging.

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The aim of this analysis was to assess the factors that influence the severity of pancreatic trauma cases, also underlining the importance of early and accurate diagnosis and proper management of each case. This study is a retrospective analysis of patients that were presented to the Clinical Emergency Hospital of Bucharest, Romania, in several periods of time: 1985-1990 (50 patients); 1990-1999 (102 patients); 2000-2005 (56 patients); 2012-2019 (48 patients). The mean age was around 40 years old, with predominance of male incidence in all the groups and traffic accidents (blunt trauma) as the main cause of injury.

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oxidative stress is caused by an abundant generation of reactive oxygen species, associated to a diminished capacity of the endogenous systems of the organism to counteract them. Activation of pro-oxidative pathways and boosting of inflammatory cytokines are always encountered in viral infections, including SARS-CoV-2. So, the importance of counteracting cytokine storm in COVID-19 pathology is highly important, to hamper the immunogenic damage of the endothelium and alveolar membranes.

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This research focuses on the synthesis of multi-walled carbon nanotubes (MWCNTs) decorated with TiO nanoparticles (NPs) and incorporated in cellulose acetate-collagen film in order to obtain a new biomaterial with potential biomedical applications and improved antimicrobial activity. The successful decoration of the MWCNTs with TiO NPs was confirmed by several structural and morphological analysis, such as Fourier transformed infrared spectroscopy, Raman spectroscopy, X-ray diffraction and transmission electron microscopy. The obtained nanocomposites were further incorporated into cellulose acetate-collagen films, at different concentrations and absorption kinetics, antimicrobial activity and in vitro biocompatibility of the obtained films was investigated.

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This review of the literature aims to describe the main advantages and disadvantages of the trauma systems in Europe. Moreover, the purpose of this article is to present the last concepts regarding the management of the polytrauma patients and the newest sets of measures to prevent car crashes in European Union. The articles published regarding the management of the polytrauma patient and trauma systems were identified using PubMed search.

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Hemangiomas of the small intestine are tumors rarely found in practice. Patients usually present in emergency settings with anemia, gastrointestinal bleeding or abdominal pain. The purpose of this review of the literature is to evaluate the diagnostic modalities, therapeutic options and their results in cases of intestinal hemangiomas.

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  • - PMMA bone cements are used to secure prostheses and are now being modified with antibacterial agents like gentamicin, peppermint oil, and silver nanoparticles to combat infections.
  • - The study involved analyzing the structure and properties of these modified cements using techniques such as SEM, EDS, and MTT assays to assess toxicity and biocompatibility.
  • - Results indicated that the addition of antimicrobial agents did not compromise the cements' hydration or degradation, and showed effective antimicrobial properties, highlighting their potential for clinical use against infections.
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A new generation of biomaterials with terbium-doped hydroxyapatite was obtained using a coprecipitation method. The synthesis of new materials with luminescent properties represents a challenging but important contribution due to their potential applications in biomedical science. The main objective of this study was to revel the influence of terbium ions on the design and structure of hydroxyapatite.

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This research focused on the synthesis of apatite, starting from a natural biogenic calcium source (egg-shells) and its chemical and morpho-structural characterization in comparison with two commercial xenografts used as a bone substitute in dentistry. The synthesis route for the hydroxyapatite powder was the microwave-assisted hydrothermal technique, starting from annealed egg-shells as the precursor for lime and di-base ammonium phosphate as the phosphate precursor. The powders were characterized by Fourier-transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), scanning electron microscopy (SEM), energy-dispersive X-ray analysis (EDAX), transmission electron microscopy (TEM), X-ray fluorescence spectroscopy (XRF), and cytotoxicity assay in contact with amniotic fluid stem cell (AFSC) cultures.

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Improved compounds of Ce(III) and Ce(IV)-doped hydroxyapatite (CaCe(PO)(OH)) with different concentrations such as x = 0.5, 1, 2.5, 5, and 10%, obtained by the simple co-precipitation method were synthesized.

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  • Gram-positive and Gram-negative bacteria pose significant infection risks in hospitals due to their distribution and resistance to antibiotics.
  • This study investigates the use of polyvinylpyrrolidone/antibiotic/isoflavonoid thin films created using the MAPLE method as protective coatings on medical surfaces to prevent microbial attachment.
  • Results indicate that these laser-fabricated coatings are biocompatible and effectively inhibit the growth of bacteria and biofilms, suggesting their potential use in biomedical devices to reduce infection transmission.
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Therapeutic approaches focused on the inflammatory microenvironment are currently gaining more support, as biomolecules involved in the inflammatory colorectal cancer (CRC) tumor microenvironment are being explored. We analyzed tumor and paired normal tissue samples from CRC patients (n = 22) whom underwent tumor resection surgery. We assessed 39 inflammation-involved biomolecules (multiplex magnetic bead-based immunoassay), CEA and CA19-9 (ELISA assay) and the tissue expression levels of occludin and also pErk, STAT1 and STAT3 transcriptional factors (western blot).

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  • The study focuses on creating and testing composite coatings made of polylactic acid (PLA) that include iron oxide nanoparticles modified with Eucalyptus essential oil.
  • Various sophisticated techniques were used to analyze the composition and structure of these nanoparticles and the resulting thin films.
  • The coatings showed biocompatibility with stem cells and were effective against bacterial biofilms, indicating potential for medical applications.
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  • - Biopolymers like eggshell membrane (ESM) are being used to create eco-friendly wound care dressings due to their natural, biocompatible properties and unique 3D fibrous structure.
  • - Researchers functionalized ESM with metal oxides (Ag, ZnO, CuO) using a simple technique, which enhanced its antibacterial effectiveness against E. coli, especially when exposed to visible light.
  • - The study highlights that combining metal oxides creates a p-n junction, aiding in the generation of reactive oxygen species that enhance antibacterial action, pointing to cost-effective solutions for chronic wound healing.
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The bioactivity of scaffolds represents a key property to facilitate the bone repair after orthopedic trauma. This study reports the development of biomimetic paste-type inks based on wollastonite (CS) and fish gelatin (FG) in a mass ratio similar to natural bone, as an appealing strategy to promote the mineralization during scaffold incubation in simulated body fluid (SBF). High-resolution 3D scaffolds were fabricated through 3D printing, and the homogeneous distribution of CS in the protein matrix was revealed by scanning electron microscopy/energy-dispersive X-ray diffraction analysis (SEM/EDX) micrographs.

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  • The paper reviews how antioxidants can help mitigate oxidative stress, which occurs when there's an imbalance between harmful reactive species and protective antioxidants in the body.
  • Oxidative stress is linked to serious health issues like cancer, diabetes, and heart disease, and it causes damage to important biomolecules such as lipids, proteins, and DNA.
  • Antioxidants play a crucial role in fighting oxidative stress through various mechanisms, including scavenging harmful radicals and repairing oxidative damage, with different types categorized as primary and secondary antioxidants.
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