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chemistry, physical (28) 28
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chemistry, multidisciplinary (20) 20
inverted colloidal crystals (20) 20
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Journal Article
Biomaterials, ISSN 0142-9612, 2018, Volume 182, pp. 299 - 311
...), immortalized cell lines and resultant structures that are difficult to control or scale. To address these challenges, we aimed to develop a fully defined liver organoid platform using inverted colloid crystal (ICC... 
Bioengineering | Liver stem cells | Biomimetic materials | Organogenesis | SYSTEM | STEM-CELLS | IN-VITRO | MATERIALS SCIENCE, BIOMATERIALS | ENGINEERING, BIOMEDICAL | MODEL | Tissue Engineering - methods | Biocompatible Materials - chemistry | Humans | Cells, Cultured | Crystallization | Organoids - cytology | Polyethylene Glycols - chemistry | Liver - cytology | Induced Pluripotent Stem Cells - cytology | Induced Pluripotent Stem Cells - metabolism | Tissue Scaffolds - chemistry | Fibronectins | Drug resistance in microorganisms | Medical colleges | RNA | Microbiology | Developmental biology | Liver | Low density lipoproteins | Genetic transcription | Transforming growth factors | Sulfates | Proteins | Keratin | Laminin | Polyethylene glycol | Analysis | Stem cells | Physiological aspects | Hepatitis C virus | Hepatitis C | Health aspects | PCA, principle component analysis | TGZ, Troglitazone | PEG, polyethylene glycol | Col, collagen | ICC, inverted colloidal crystal | LDLR, low-density lipoprotein receptor | ECM, extracellular matrix | HCV, hepatitis C virus | HSGP, heparin sulfate glycoprotein | CYC, cyclopamine | CK19, keratin 19 | RNA-seq, RNA-sequence | MRP2, multidrug resistance protein 1 | 2D, two-dimensional | HNF4a, hepatocyte nuclear factor 4-alpha | IH, iPSC derived hepatic progenitors | MSC, mesenchymal stem cell | iPSC, induced pluripotent stem cell | OCLN, occludin | CLDN1, claudin 1 | CLF, cholyl-lysyl-flourescence | RT-qPCR, reverse transcription-quantitative polymerase chain reaction | TGFβ, transforming growth factor beta | BSEP, bile-salt efflux pump | AFP, alpha-fetoprotein | FDA, food and drug administration | DE, iPSC derived definitive endoderm | H&E, haematoxylin and eosin | Fn, fibronectin | ZO-1, tight junction protein 1 | 3D, three-dimensional | ASGR1, asialoglycoprotein receptor 1 | ALB, albumin | SCARB1, scavenger receptor class B type 1 | Ln, laminin | ECAM, epithelial cell adhesion molecule | HUVEC, human umbilical endothelial cell
Journal Article
Materials Letters, ISSN 0167-577X, 12/2016, Volume 185, Issue C, pp. 407 - 410
Hydroxyapatite (HAp) scaffolds with uniform pore size and interconnected pore network were constructed based on the inverted colloidal crystal (ICC... 
Inverted colloidal crystals | Hydroxyapatite | Bone tissue engineering | Sol-gel | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | SCAFFOLDS | Tissue engineering | Surgical implants | Biomedical materials | Sol gel process | Colloids | Crystals | Bones | Scaffolds
Journal Article
Materials Letters, ISSN 0167-577X, 04/2017, Volume 193, pp. 50 - 53
...) was used to develop biodegradable Inverted Colloidal Crystal (ICC) scaffolds with uniform pore size and interconnected pore network... 
Chitosan | Inverted Colloidal Crystals | Hydrolytic degradation | Polymers | Compression modulus | Porous materials | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | BIOLOGICAL-PROPERTIES
Journal Article
Journal of Colloid And Interface Science, ISSN 0021-9797, 2010, Volume 344, Issue 2, pp. 298 - 307
Highly ordered non-close-packed inverted opals are fabricated directly by silica infiltration of non-close-packed polymerized crystalline colloidal arrays allowing for lattice constant tuning... 
CCA | PCCA | Photonic crystal | Inverted | Electrostatic stabilization | Non-close-packed | siPCCA | PARTICLES | SPHERES | LIGHT | CHEMISTRY, PHYSICAL | OPAL | MOTIF | BANDGAP CRYSTALS | NANOCAVITY | DIFFRACTION | SILICA | SCALE | Particle Size | Colloids - chemistry | Silicon Dioxide - chemistry | Surface Properties | Crystallization | Polystyrenes - chemistry | Refractometry - methods | Face centered cubic lattice | Colloids | Modulation | Photonic crystals | Charge | Inverse | Arrays | Silicon dioxide
Journal Article
Journal of Visualized Experiments, ISSN 1940-087X, 08/2016, Volume 2016, Issue 114
.... There has been growing interest in the inverted colloidal crystal (ICC) scaffold, a recent development, which allows high spatial organization, homotypic and heterotypic cell interaction, as well as cell-extracellular matrix (ECM) interaction... 
Bioengineering | Liver tissue engineering | Cell culture | Issue 114 | Biofunctionalization | Hepatocyte | Inverted colloidal crystal | Poly(ethylene glycol) hydrogel | MIGRATION | hepatocyte | MULTIDISCIPLINARY SCIENCES | COLLAGEN SANDWICH | PRIMARY HEPATOCYTES | PORE SIZES | HYDROGEL | biofunctionalization | MICROENVIRONMENT | SPHEROIDS | cell culture | poly(ethylene glycol) hydrogel | NEOVASCULARIZATION | OPAL SCAFFOLDS | MORPHOLOGY | inverted colloidal crystal
Journal Article
Energy Procedia, ISSN 1876-6102, 2011, Volume 10, pp. 292 - 296
Monolayer colloidal crystals are formed using silica- and polystyrene beads and used as etch masks for the formation of regular, _m period hexagonal arrays of indentations in a silicon wafer... 
light trapping | solar cells | nanosphere lithography | di_raction gratings | inverted opals | colloidal crystals | Solar cells | Colloidal crystals | Diffraction gratings | Light trapping | Inverted opals | Nanosphere lithography
Journal Article
by Pelaz, Beatriz and Alexiou, Christoph and Alvarez-Puebla, Ramon A and Alves, Frauke and Andrews, Anne M and Ashraf, Sumaira and Balogh, Lajos P and Ballerini, Laura and Bestetti, Alessandra and Brendel, Cornelia and Bosi, Susanna and Carril, Monica and Chan, Warren C. W and Chen, Chunying and Chen, Xiaodong and Chen, Xiaoyuan and Cheng, Zhen and Cui, Daxiang and Du, Jianzhong and Dullin, Christian and Escudero, Alberto and Feliu, Neus and Gao, Mingyuan and George, Michael and Gogotsi, Yury and Grünweller, Arnold and Gu, Zhongwei and Halas, Naomi J and Hampp, Norbert and Hartmann, Roland K and Hersam, Mark C and Hunziker, Patrick and Jian, Ji and Jiang, Xingyu and Jungebluth, Philipp and Kadhiresan, Pranav and Kataoka, Kazunori and Khademhosseini, Ali and Kopeček, Jindřich and Kotov, Nicholas A and Krug, Harald F and Lee, Dong Soo and Lehr, Claus-Michael and Leong, Kam W and Liang, Xing-Jie and Ling Lim, Mei and Liz-Marzán, Luis M and Ma, Xiaowei and Macchiarini, Paolo and Meng, Huan and Möhwald, Helmuth and Mulvaney, Paul and Nel, Andre E and Nie, Shuming and Nordlander, Peter and Okano, Teruo and Oliveira, Jose and Park, Tai Hyun and Penner, Reginald M and Prato, Maurizio and Puntes, Victor and Rotello, Vincent M and Samarakoon, Amila and Schaak, Raymond E and Shen, Youqing and Sjöqvist, Sebastian and Skirtach, Andre G and Soliman, Mahmoud G and Stevens, Molly M and Sung, Hsing-Wen and Tang, Ben Zhong and Tietze, Rainer and Udugama, Buddhisha N and VanEpps, J. Scott and Weil, Tanja and Weiss, Paul S and Willner, Itamar and Wu, Yuzhou and Yang, Lily and Yue, Zhao and Zhang, Qian and Zhang, Qiang and Zhang, Xian-En and Zhao, Yuliang and Zhou, Xin and Parak, Wolfgang J
ACS Nano, ISSN 1936-0851, 03/2017, Volume 11, Issue 3, pp. 2313 - 2381
Journal Article
Advanced healthcare materials, ISSN 2192-2659, 2020, Volume 9, Issue 6, pp. 1901556 - n/a
Journal Article
Tissue engineering. Part C, Methods, ISSN 1937-3384, 03/2020, Volume 26, Issue 3, pp. 143 - 155
Journal Article
Advanced Healthcare Materials, ISSN 2192-2640, 03/2020, Volume 9, Issue 6, pp. 2070016 - n/a
In article number 1901556 by Jun‐Goo Kwak and Jungwoo Lee, thermoresponsive inverted colloidal crystal hydrogel scaffolds with rapid response rate and large volumetric change are reported... 
PNIPAM | stimuli‐responsive materials | hydrogel scaffolds | lymphoid tissue | inverted colloidal crystals
Journal Article