LEADER 00816nam0 2200265 450 001 9910280634103321 005 20180726231637.0 100 $a20180726g20042005km y0itay50 ba 101 0 $aita 102 $aIT 200 1 $aIl diabete in età evolutiva$etesi di specializzazione in Pediatria$fFrancesco Califano$gAdriana Franzese 210 $aNapoli$cUniversità degli studi di Napoli "Federico II"$d2004-2005 215 $a54 p.$d30 cm 610 0 $aPediatria 610 0 $aMalattie del metabolismo 610 0 $aDiabete 700 1$aCalifano,$bFrancesco$0751203 702 1$aFranzese,$bAdriana 801 0$aIT$bUNINA$gREICAT$2UNIMARC 901 $aBK 912 $a9910280634103321 952 $a2004-2005 Califano$fDMEPE 959 $aDMEPE 996 $aIl diabete in età evolutiva$91510654 997 $aUNINA LEADER 04509nam 2200385 450 001 9910674373703321 005 20230622223251.0 035 $a(CKB)4100000002744014 035 $a(NjHacI)994100000002744014 035 $a(EXLCZ)994100000002744014 100 $a20230622d2018 uy 0 101 0 $aeng 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aBioinspired Catechol-Based Systems $eChemistry and Applications /$fMarco d'Ischia, Daniel Ruiz-Molina 210 1$aBasel, Switzerland :$cMDPI - Multidisciplinary Digital Publishing Institute,$d2018. 215 $a1 online resource (v, 196 pages) 311 $a3-03842-813-2 327 $aAbout the Special Issue Editors . v Preface to "Bioinspired Catechol-Based Systems: Chemistry and Applications" . vii Chapter 1: Chemistry of Catechol-Based Systems Vincenzo Barone, Ivo Cacelli, Alessandro Ferretti and Giacomo Prampolini Noncovalent Interactions in the Catechol Dimer Reprinted from: Biomimetics 2017, 2(3), 18; doi: 10.3390/biomimetics2030018 . 1 Orlando Crescenzi, Marco d'Ischia and Alessandra Napolitano Kaxiras's Porphyrin: DFT Modeling of Redox-Tuned Optical and Electronic Properties in a Theoretically Designed Catechol-Based Bioinspired Platform Reprinted from: Biomimetics 2017, 2(4), 21; doi: 10.3390/biomimetics2040021 . 14 Riccardo Amorati, Andrea Baschieri, Adam Cowden and Luca Valgimigli The Antioxidant Activity of Quercetin in Water Solution Reprinted from: Biomimetics 2017, 2(3), 9; doi: 10.3390/biomimetics2030009 . 42 Chapter 2: Catechol-Based Biomechanisms and Bioactivity Natalie A. Hamada, Victor A. Roman, Steven M. Howell and Jonathan J. Wilker Examining Potential Active Tempering of Adhesive Curing by Marine Mussels Reprinted from: Biomimetics 2017, 2(3), 16; doi: 10.3390/biomimetics2030016 . 57 Raffaella Micillo, Valeria Pistorio, Elio Pizzo, Lucia Panzella, Alessandra Napolitano and Marco d'Ischia 2-S-Lipoylcaffeic Acid, a Natural Product-Based Entry to Tyrosinase Inhibition via Catechol Manipulation Reprinted from: Biomimetics 2017, 2(3), 15; doi: 10.3390/biomimetics2030015 . 68 Matteo Ramazzotti, Paolo Paoli, Bruno Tiribilli, Caterina Viglianisi, Stefano Menichetti and Donatella Degl'Innocenti Catechol-Containing Hydroxylated Biomimetic 4-Thiaflavanes as Inhibitors of Amyloid Aggregation Reprinted from: Biomimetics 2017, 2(2), 6; doi: 10.3390/biomimetics2020006 . 79 Chapter 3: Catechol Applications in Materials Science Vincent Ball Composite Materials and Films Based on Melanins, Polydopamine, and Other Catecholamine-Based Materials Reprinted from: Biomimetics 2017, 2(3), 12; doi: 10.3390/biomimetics2030012 . 93 Salvio Sua?rez-Garci?a, Josep Sedo?, Javier Saiz-Poseu and Daniel Ruiz-Molina Copolymerization of a Catechol and a Diamine as a Versatile Polydopamine-Like Platform for Surface Functionalization: The Case of a Hydrophobic Coating Reprinted from: Biomimetics 2017, 2(4), 22; doi: 10.3390/biomimetics2040022 . 109 Jun Feng, Xuan-Anh Ton, Shifang Zhao, Julieta I. Paez and Ara?nzazu del Campo Mechanically Reinforced Catechol-Containing Hydrogels with Improved Tissue Gluing Performance Reprinted from: Biomimetics 2017, 2(4), 23; doi: 10.3390/biomimetics2040023 . 126 Maria P. Sousa and Joa?o F. Mano Cell-Adhesive Bioinspired and Catechol-Based Multilayer Freestanding Membranes for Bone Tissue Engineering Reprinted from: Biomimetics 2017, 2(4), 19; doi: 10.3390/biomimetics2040019 . 142 Devang R. Amin, Caroline Sugnaux, King Hang Aaron Lau and Phillip B. Messersmith Size Control and Fluorescence Labeling of Polydopamine Melanin-Mimetic Nanoparticles for Intracellular Imaging Reprinted from: Biomimetics 2017, 2(3), 17; doi: 10.3390/biomimetics2030017 . 162 Eunkyoung Kim, Zhengchun Liu, Yi Liu, William E. Bentley and Gregory F. Payne Catechol-Based Hydrogel for Chemical Information Processing Reprinted from: Biomimetics 2017, 2(3), 11; doi: 10.3390/biomimetics2030011 . 181. 330 $aBioinspired Catechol-Based Systems: Chemistry and Applications. 517 $aBioinspired Catechol-Based Systems 517 $aBioinspired Catechol- Based Systems 606 $aBiomimetics 615 0$aBiomimetics. 676 $a570.15195 700 $ad'Ischia$b Marco$0352476 702 $aRuiz-Molina$b Daniel 801 0$bNjHacI 801 1$bNjHacl 906 $aBOOK 912 $a9910674373703321 996 $aBioinspired Catechol-Based Systems$93392614 997 $aUNINA LEADER 00652oam 2200205z- 450 001 996575070103316 010 $a1-72818-711-7 010 $a1-7281-8711-7 035 $a(CKB)4100000011963637 035 $a(EXLCZ)994100000011963637 100 $a20230516c2021uuuu -u- - 101 0 $aeng 200 00$a2021 IEEE/ACM 8th International Conference on Mobile Software Engineering and Systems (MobileSoft) 210 $cIEEE 311 $a1-66542-986-0 517 $a2021 IEEE/ACM 8th International Conference on Mobile Software Engineering and Systems 906 $aPROCEEDING 912 $a996575070103316 996 $a2021 IEEE$92518023 997 $aUNISA