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Synthesis and structural characterization of s-triazine derivatives and their photophysical properties
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Comparison of mechanical properties and shaping performance of ProGlider and ProTaper ultimate slider
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Synthetic peptides as valuable and versatile tools for research: our 20 year journey in Chile
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Hyaluronic Acid-Based Hybrid Nanoparticles as Promising Carriers for the Intranasal Administration of Dimethyl Fumarate
Published 2025-01-01“…Carla Serri,1 Miriam Piccioni,2 Vincenzo Guarino,3 Pamela Santonicola,2 Iriczalli Cruz-Maya,3 Stefania Crispi,2 Massimiliano Pio Di Cagno,4 Luca Ferraro,5 Alessandro Dalpiaz,6 Giada Botti,6 Paolo Giunchedi,1 Giovanna Rassu,1 Elisabetta Gavini1 1Department of Medicine, Surgery and Pharmacy, University of Sassari, Sassari, Italy; 2Institute of Biosciences and Bio-Resources, National Research Council (CNR-IBBR), Naples, Italy; 3Institute of Polymers, Composites and Biomaterials, National Research Council of Italy, Naples, Italy; 4Department of Pharmacy, University of Oslo, Oslo, Norway; 5Department of Life Sciences and Biotechnology, University of Ferrara and LTTA Center, Ferrara, Italy; 6Department of Chemical, Pharmaceutical and Agricultural Sciences, University of Ferrara, Ferrara, ItalyCorrespondence: Giovanna Rassu, Department of Medicine, Surgery and Pharmacy, University of Sassari, Sassari, Italy, Email grassu@uniss.itPurpose: Dimethyl fumarate (DMF), the first-line oral therapy for relapsing-remitting multiple sclerosis, is rapidly metabolized into monomethyl fumarate. …”
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Utilization of refuse-derived fuel in industrial applications: Insights from Uttar Pradesh, India
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Activity of Antiseptics Against <i>Pseudomonas aeruginosa</i> and Its Adaptation Potential
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Bacterial Diversity in Native Heart Valves in Infective Endocarditis
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Synthesis of Fe3O4@MIL-101-OH/Chitosan for adsorption and release of doxorubicin
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MXene-based materials for enhanced water quality: Advances in remediation strategies
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3D-Printed PCL-Based Scaffolds with High Nanosized Synthetic Smectic Clay Content: Fabrication, Mechanical Properties, and Biological Evaluation for Bone Tissue Engineering
Published 2025-01-01“…André SA Furtado,1,* Manuel HS Cunha,1,* Luciana MR Sousa,1 Guilherme C Brito,1 Thiago FCL Verde,1 Livia Alves Filgueiras,2 Leonardo A Sobral-Silva,3 Moisés V Santana,1 Gustavo F Sousa,1 Francisco EP Santos,4 Anderson N Mendes,2 José Figueredo-Silva,5 Antônio LM Maia Filho,5 Fernanda R Marciano,1,4 Luana MR Vasconcellos,3 Anderson O Lobo1 1Interdisciplinary Laboratory for Advanced Materials (LIMAV), Materials Science and Engineering Graduate Program (PPGCM), Federal University of Piauí (UFPI), Teresina, PI, Brazil; 2Laboratory of Innovation in Science and Technology, Department of Biophysics and Physiology, Federal University of Piauí, Teresina, PI, Brazil; 3Institute of Science and Technology, São Paulo State University (UNESP), São Paulo, SP, Brazil; 4Department of Physics, Federal University of Piauí (UFPI), Teresina, PI, Brazil; 5Biotechnology Research Center - State University of Piauí, Teresina, PI, Brazil*These authors contributed equally to this workCorrespondence: Anderson O Lobo, Interdisciplinary Laboratory for Advanced Materials, UFPI - Federal University of Piaui, Teresina, Brazil, Email lobo@ufpi.edu.brBackground: The 3D printing of macro- and mesoporous biomimetic grafts composed of polycaprolactone (PCL) infused with nanosized synthetic smectic clay is a promising innovation in biomaterials for bone tissue engineering (BTE). The main challenge lies in achieving a uniform distribution of nanoceramics across low to high concentrations within the polymer matrix while preserving mechanical properties and biological performance essential for successful osseointegration.Methods: This study utilized 3D printing to fabricate PCL scaffolds enriched with nanosized synthetic smectic clay (LAP) to evaluate its effects on structural, chemical, thermal, mechanical, and degradative properties, with a focus on in vitro biological performance and non-toxicity. …”
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