BIOREpository (Faculty of Biology, University of Belgrade)
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HSALR MODEL GENE CO-EXPRESSION NETWORK AND COMPARATIVE TRANSCRIPTOMICS REVEAL KEY PATHWAYS IN DM1 PATHOLOGY
page: 75M6
Surviving mine tailings: antioxidative enzyme activities in selected plant species
Book of abstracts, P.0371M3
Preventing biodiversity loss: restoring wetlands with the help of 'egg bank' - the case of the Ramsar site "Bardača Wetland“ (Bosnia and Herzegovina)
Book of Proceedings: 45-51M3
In Vivo Experimental Models of Cerebral Ischemia: Analysis, Translational Potential and Clinical Relevance
Despite all current efforts in the field of cerebrovascular disease prevention, stroke remains the leading cause of disability and death worldwide. Animal models are essential tools in stroke research to mitigate its devastating effects. The novelty of this review is the comprehensiveness of the approach and the detailed analysis of progress in the field, translational potential and clinical relevance. Recent research aimed to refine and enhance animal models to better mimic clinical scenario and improve reproducibility. This review provides extensive overview of its classification, underlining their key features, advantages, limitations, and advancements. Additionally, characterization and validation of ischemia models are discussed. Therapeutic strategies such as hypothermia, pharmacological interventions, genetic and molecular approaches, and cell-based therapies are highlighted. This review analyse the challenges and future directions, as well as translational potential and clinical relevance of ischemia models. Incorporating patient-derived cells and genetic modifications in animal models can provide a more personalized and clinically relevant approach. Bridging the gap is challenging and requires careful consideration of multiple factors, including appropriate dose translation, understanding species differences, and aligning protocols. Future studies should focus on optimizing the translational process and conducting well-designed clinical trials to assess the safety and efficacy of promising interventions.3.259
Development and Characterization of Gelatin-Based Hydrogels Containing Triblock Copolymer and Phytic Acid
In recent research, significant interest has been directed towards gelatin-based hydrogels due to their affordable price, extensive availability, and biocompatibility, making them promising candidates for various biomedical applications. The development and characterization of novel hydrogels formed from varying ratios of gelatin, triblock copolymer Pluronic F-127, and phytic acid have been presented. Swelling properties were examined at different pH levels. The morphology of hydrogels and their thermal properties were analyzed using scanning electron microscopy (SEM), thermogravimetric analysis (TG), and differential scanning calorimetry (DSC). Fourier-transform infrared (FTIR) analysis of the hydrogels was also performed. The introduction of phytic acid in the hydrogel plays a crucial role in enhancing the intermolecular interactions within gelatin-based hydrogels, contributing to a more stable, elastic, and robust network structure.M214.629410
Genetic basis of antimicrobial resistance, virulence features and phylogenomics of carbapenem-resistant Acinetobacter baumannii clinical isolates
The worldwide emergence and clonal spread of carbapenem-resistant Acinetobacter baumannii (CRAB) is of great concern. In the present study, we determined the mechanisms of antimicrobial resistance, virulence gene repertoire and genomic relatedness of CRAB isolates circulating in Serbian hospitals.M217.