A Self-Forming Hydrogel from a Bactericidal Copolymer: Synthesis, Characterization, Biological Evaluations and Perspective Applications
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S. Alfei | A. Schito | D. Marimpietri | G. Zuccari | E. Russo | A. Zorzoli | D. Caviglia
[1] S. Alfei,et al. Mutual Jellification of Two Bactericidal Cationic Polymers: Synthesis and Physicochemical Characterization of a New Two-Component Hydrogel , 2022, Pharmaceutics.
[2] S. Alfei,et al. Synthesis, Characterization and Broad-Spectrum Bactericidal Effects of Ammonium Methyl and Ammonium Ethyl Styrene-Based Nanoparticles , 2022, Nanomaterials.
[3] S. Alfei,et al. Potent and Broad-Spectrum Bactericidal Activity of a Nanotechnologically Manipulated Novel Pyrazole , 2022, Biomedicines.
[4] C. Brullo,et al. Synthesis and Characterization of Pyrazole-Enriched Cationic Nanoparticles as New Promising Antibacterial Agent by Mutual Cooperation , 2022, Nanomaterials.
[5] L. D. Del Valle,et al. Antibacterial Hydrogels Derived from Poly(γ-glutamic acid) Nanofibers , 2022, Gels.
[6] S. Alfei,et al. Successful Dendrimer and Liposome-Based Strategies to Solubilize an Antiproliferative Pyrazole Otherwise Not Clinically Applicable , 2022, Nanomaterials.
[7] C. Brullo,et al. Preparation and Physicochemical Characterization of Water-Soluble Pyrazole-Based Nanoparticles by Dendrimer Encapsulation of an Insoluble Bioactive Pyrazole Derivative , 2021, Nanomaterials.
[8] Jintao Yang,et al. Cationic peptide-based salt-responsive antibacterial hydrogel dressings for wound healing. , 2021, International journal of biological macromolecules.
[9] S. Alfei,et al. Considerable Improvement of Ursolic Acid Water Solubility by Its Encapsulation in Dendrimer Nanoparticles: Design, Synthesis and Physicochemical Characterization , 2021, Nanomaterials.
[10] F. Turrini,et al. Increased Water-Solubility and Maintained Antioxidant Power of Resveratrol by Its Encapsulation in Vitamin E TPGS Micelles: A Potential Nutritional Supplement for Chronic Liver Disease , 2021, Pharmaceutics.
[11] Sang-Hyug Park,et al. Tunable porosity of covalently crosslinked alginate-based hydrogels and its significance in drug release behavior. , 2021, Carbohydrate polymers.
[12] Xuanhe Zhao,et al. Soft Materials by Design: Unconventional Polymer Networks Give Extreme Properties. , 2021, Chemical reviews.
[13] C. Villa,et al. Hydrogels in Hand Sanitizers , 2021, Materials.
[14] R. Vonberg,et al. Bacterial survival on inanimate surfaces: a field study , 2021, BMC Research Notes.
[15] Weiyi Chen,et al. The fabrication of antibacterial hydrogels for wound healing , 2021, European Polymer Journal.
[16] S. Alfei,et al. D-α-Tocopherol-Based Micelles for Successful Encapsulation of Retinoic Acid , 2021, Pharmaceuticals.
[17] S. Alfei,et al. From Nanobiotechnology, Positively Charged Biomimetic Dendrimers as Novel Antibacterial Agents: A Review , 2020, Nanomaterials.
[18] F. Turrini,et al. Dendrimer Nanodevices and Gallic Acid as Novel Strategies to Fight Chemoresistance in Neuroblastoma Cells , 2020, Nanomaterials.
[19] S. Alfei,et al. Positively Charged Polymers as Promising Devices against Multidrug Resistant Gram-Negative Bacteria: A Review , 2020, Polymers.
[20] E. Ahmadi,et al. Temperature-dependent formulation of a hydrogel based on Hyaluronic acid-polydimethylsiloxane for biomedical applications , 2020, Heliyon.
[21] C. Jin,et al. Protocol efficiently measuring the swelling rate of hydrogels , 2019, MethodsX.
[22] C. Villa,et al. Poloxamer Hydrogels for Biomedical Applications , 2019, Pharmaceutics.
[23] P. Oliveri,et al. Assessment of the Efficiency of a Nanospherical Gallic Acid Dendrimer for Long‐Term Preservation of Essential Oils: An Integrated Chemometric‐Assisted FTIR Study , 2019, ChemistrySelect.
[24] F. Fasina,et al. Antibacterial and antibiofilm activity of acetone leaf extracts of nine under-investigated south African Eugenia and Syzygium (Myrtaceae) species and their selectivity indices , 2019, BMC Complementary and Alternative Medicine.
[25] M. Bercea,et al. Physical Hydrogels of Oxidized Polysaccharides and Poly(Vinyl Alcohol) for Wound Dressing Applications , 2019, Materials.
[26] Christian Celia,et al. Mathematical Modeling of Release Kinetics from Supramolecular Drug Delivery Systems , 2019, Pharmaceutics.
[27] Oliver C. J. Andrén,et al. Antibiotic‐Free Cationic Dendritic Hydrogels as Surgical‐Site‐Infection‐Inhibiting Coatings , 2019, Advanced healthcare materials.
[28] N. Nayak,et al. Bacterial contamination of frequently touched objects in a tertiary care hospital of Pokhara, Nepal: how safe are our hands? , 2018, Antimicrobial Resistance & Infection Control.
[29] Xuesi Chen,et al. Antibacterial Hydrogels , 2018, Advanced science.
[30] P. Abioye,et al. Selecting the Most Appropriate Model for Rheological Characterization of Synthetic Based Drilling Mud , 2017 .
[31] L. Felton,et al. In vitro evaluation of sustained released matrix tablets containing ibuprofen: a model poorly water-soluble drug , 2016 .
[32] A. Caminade,et al. Well-defined poly(vinylidene fluoride) (PVDF) based-dendrimers synthesized by click chemistry: enhanced crystallinity of PVDF and increased hydrophobicity of PVDF films , 2016 .
[33] K. Suh,et al. Facile synthesis of monodisperse poly(MAA/EGDMA)/Fe3O4 hydrogel microspheres with hollow structures for drug delivery systems: the hollow structure formation mechanism and effects of various metal ions on structural changes , 2015 .
[34] D. Malagón-Romero,et al. Rheological characterization of a gel produced using human blood plasma and alginate mixtures. , 2014, Journal of the mechanical behavior of biomedical materials.
[35] V. Naidoo,et al. The antibacterial activity, antioxidant activity and selectivity index of leaf extracts of thirteen South African tree species used in ethnoveterinary medicine to treat helminth infections , 2014, BMC Veterinary Research.
[36] T. Kassa,et al. Bacterial contamination, bacterial profile and antimicrobial susceptibility pattern of isolates from stethoscopes at Jimma University Specialized Hospital , 2013, Annals of Clinical Microbiology and Antimicrobials.
[37] V. Granata,et al. Prevalence of hospital-associated infections can be decreased effectively in developing countries. , 2013, The Journal of hospital infection.
[38] J. Eloff,et al. Efficacy and toxicity of thirteen plant leaf acetone extracts used in ethnoveterinary medicine in South Africa on egg hatching and larval development of Haemonchus contortus , 2013, BMC Veterinary Research.
[39] K. Sepkowitz,et al. Sustained Reduction of Microbial Burden on Common Hospital Surfaces through Introduction of Copper , 2012, Journal of Clinical Microbiology.
[40] Martin Malmsten,et al. Antimicrobial and antiviral hydrogels , 2011 .
[41] V. Rosário,et al. Methods for assessment of antimalarial activity in the different phases of the Plasmodium life cycle , 2010 .
[42] F. Nogueira,et al. Métodos para avaliação da atividade antimalárica nas diferentes fases do ciclo de vida do Plasmodium , 2010 .
[43] Reinhard Hickel,et al. Real-time xCELLigence impedance analysis of the cytotoxicity of dental composite components on human gingival fibroblasts. , 2010, Dental Materials.
[44] Xiguang Chen,et al. Preparation and characteristics of novel porous hydrogel films based on chitosan and glycerophosphate , 2009 .
[45] S. Plon,et al. Sensitivity of RECQL4-deficient fibroblasts from Rothmund–Thomson syndrome patients to genotoxic agents , 2008, Human Genetics.
[46] D. Kohane,et al. HYDROGELS IN DRUG DELIVERY: PROGRESS AND CHALLENGES , 2008 .
[47] S. Dancer,et al. Importance of the environment in meticillin-resistant Staphylococcus aureus acquisition: the case for hospital cleaning. , 2008, The Lancet. Infectious diseases.
[48] M. Loeb,et al. Point prevalence survey for healthcare-associated infections within Canadian adult acute-care hospitals. , 2007, The Journal of hospital infection.
[49] K. Nishinari,et al. Influence of molecular structure imaged with atomic force microscopy on the rheological behavior of carrageenan aqueous systems in the presence or absence of cations , 2007 .
[50] A. Kramer,et al. How long do nosocomial pathogens persist on inanimate surfaces? A systematic review , 2006, BMC infectious diseases.
[51] Deborah Braccia,et al. Systematic review of economic analyses of health care-associated infections. , 2005, American journal of infection control.
[52] S. A. G. Alla,et al. Synthesis and characterization of novel gels based on carboxymethyl cellulose/acrylic acid prepared by electron beam irradiation , 2004 .
[53] J. Lefebvre,et al. Physicochemical and structural characterization of a polyionic matrix of interest in biotechnology, in the pharmaceutical and biomedical fields , 2004 .
[54] R. Barbucci,et al. Novel carboxymethylcellulose-based microporous hydrogels suitable for drug delivery , 2004, Journal of biomaterials science. Polymer edition.
[55] E. Morris,et al. Cryogelation of xanthan , 2003 .
[56] Jing Peng,et al. Radiation preparation and swelling behavior of sodium carboxymethyl cellulose hydrogels , 2002 .
[57] Wim E. Hennink,et al. Novel crosslinking methods to design hydrogels , 2002 .
[58] H. Mitomo,et al. Hydrogel of biodegradable cellulose derivatives. I. Radiation‐induced crosslinking of CMC , 2000 .
[59] J. Rosiak,et al. Hydrogels and their medical applications , 1999 .
[60] H. Kleinert,et al. AMERICAN Society for Surgery of the hand. , 1977, The Journal of bone and joint surgery. American volume.