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Статті в журналах з теми "MODIFIED HYDROGELS"
Tang, Yuanhan, Junjie Ding, Xun Zhou, Xintao Ma, Yi Zhao, Qiyu Mu, Zixu Huang, Qian Tao, Fangjie Liu, and Ling Wang. "Injectable hydrogels of enzyme-catalyzed cross-linked tyramine-modified gelatin for drug delivery." Australian Journal of Chemistry 76, no. 2 (February 28, 2023): 88–99. http://dx.doi.org/10.1071/ch22188.
Повний текст джерелаHuang, Anshan, Yehong Chen, and Chaojun Wu. "Wound Dressing Double-Crosslinked Quick Self-Healing Hydrogel Based on Carboxymethyl Chitosan and Modified Nanocellulose." Polymers 15, no. 16 (August 13, 2023): 3389. http://dx.doi.org/10.3390/polym15163389.
Повний текст джерелаHan, Xiaoman, Guihua Meng, Qian Wang, Lin Cui, Hao Wang, Jianning Wu, Zhiyong Liu, and Xuhong Guo. "Mussel-inspired in situ forming adhesive hydrogels with anti-microbial and hemostatic capacities for wound healing." Journal of Biomaterials Applications 33, no. 7 (November 22, 2018): 915–23. http://dx.doi.org/10.1177/0885328218810552.
Повний текст джерелаZhou, Jian, Fu Lu, and Zhengwei Wu. "Effects of a plasma jet on electrochemical properties of silk fibroin hydrogel doped with graphene oxide." Polymers and Polymer Composites 30 (January 2022): 096739112211465. http://dx.doi.org/10.1177/09673911221146599.
Повний текст джерелаHejčl, Aleš, Jiří Růžička, Kristýna Kekulová, Barbora Svobodová, Vladimír Proks, Hana Macková, Kateřina Jiránková, et al. "Modified Methacrylate Hydrogels Improve Tissue Repair after Spinal Cord Injury." International Journal of Molecular Sciences 19, no. 9 (August 22, 2018): 2481. http://dx.doi.org/10.3390/ijms19092481.
Повний текст джерелаDinić, Ana, Vesna Nikolić, Ljubiša Nikolić, Snežana Ilić-Stojanović, Stevo Najman, Maja Urošević, and Ivana Gajić. "Modified Sulfanilamide Release from Intelligent Poly(N-isopropylacrylamide) Hydrogels." Pharmaceutics 15, no. 6 (June 16, 2023): 1749. http://dx.doi.org/10.3390/pharmaceutics15061749.
Повний текст джерелаZielińska, Aleksandra, Piotr Eder, Lucas Rannier, Juliana C. Cardoso, Patrícia Severino, Amélia M. Silva, and Eliana B. Souto. "Hydrogels for Modified-release Drug Delivery Systems." Current Pharmaceutical Design 28, no. 8 (March 2022): 609–18. http://dx.doi.org/10.2174/1381612828666211230114755.
Повний текст джерелаSukhanova, T. V., A. A. Artyukhov, I. A. Prudchenko, A. C. Golunova, M. A. Semenikhina, M. I. Shtilman, and E. A. Markvicheva. "Delta-sleep inducing peptide entrapment and release from polymer hydrogels based on modified polyvinyl alcohol." Biomeditsinskaya Khimiya 59, no. 1 (January 2013): 65–75. http://dx.doi.org/10.18097/pbmc20135901065.
Повний текст джерелаAstudillo-Ortiz, Esteban, Pedro S. Babo, Rui L. Reis, and Manuela E. Gomes. "Evaluation of Injectable Hyaluronic Acid-Based Hydrogels for Endodontic Tissue Regeneration." Materials 14, no. 23 (November 30, 2021): 7325. http://dx.doi.org/10.3390/ma14237325.
Повний текст джерелаVitale, Mattia, Cosimo Ligorio, Ian P. Smith, Stephen M. Richardson, Judith A. Hoyland, and Jordi Bella. "Incorporation of Natural and Recombinant Collagen Proteins within Fmoc-Based Self-Assembling Peptide Hydrogels." Gels 8, no. 5 (April 21, 2022): 254. http://dx.doi.org/10.3390/gels8050254.
Повний текст джерелаДисертації з теми "MODIFIED HYDROGELS"
Pinardag, Fatma Esra. "Modified Acrylic Hydrogels As Controlled Release Systems." Master's thesis, METU, 2006. http://etd.lib.metu.edu.tr/upload/12607362/index.pdf.
Повний текст джерелаone is the pH-dependent solubility of CPFX and the other is EDS of the hydrogel samples. For porous samples drug loading and release rates were higher when compared to the control samples and CPFX solubility dominated over release kinetics. Plasma treatment resulted in prolonged release rates in acidic medium.
Lu, Xing. "Controlled Release of Cyclosporine A from Hydrophobically-modified Hydrogels." University of Akron / OhioLINK, 2013. http://rave.ohiolink.edu/etdc/view?acc_num=akron1386631060.
Повний текст джерелаGustafsson, Carla Astrid. "Modified polyethylene glycol hydrogels for growth factor delivery and controlled tissue invasion." Master's thesis, Faculty of Health Sciences, 2019. http://hdl.handle.net/11427/31068.
Повний текст джерелаTuesca, Anthony D. Lowman Anthony M. "Synthesis, characterization, and application of polyethylene glycol modified insulin for oral delivery using complexation hydrogels /." Philadelphia, Pa. : Drexel University, 2008. http://hdl.handle.net/1860/2715.
Повний текст джерелаDavila, Ramos Johanna. "Syntheses and uses of modified polyelectrolytes for therapeutic hydrogels and films with controlled and selective protein adsorption." Thesis, Strasbourg, 2012. http://www.theses.fr/2012STRAF005/document.
Повний текст джерелаThe first part of this thesis is dedicated to the modification of polyelectrolytes to form polyelectrolyte films with controlled and stretch responsive cell and protein adsorption properties. Poly(acrylic acid) (PAA) was modified with side phosphorylcholine groups (PC) at rates of 25 % or with oligo(ethylene oxide) chains ended by biotin ((EO)nBiotin, (n =0, 3, 9 and 18) at 1, 5, 10 and 25 % modification rates. Polyelectrolytes multilayer films (PEM) containing these polyelectrolytes bind selectively streptavidin but repel all other proteins. The adsorption properties and selectivity were measured by quartz crystal microbalance. On a stretchable PDMS substrate, we have built PEM ended by PAA bearing RGD, covered by two PAA-PC layers on the top. Under rest, only the PC groups are exposed and prevent cell adhesion; when the film is stretched, the underlying RGD groups are exposed, and trigger adhesion of fibroblasts.The second part was consecrated to the study of poly(methacrylic acid) hydrophobically modified with alkyl chains connected through an ester moiety to the main chain. Three different chains were grafted -C12H25; -C18H35 and -C4H8- OOC-C11H23 with a rate of 1, 5 and 10 %. These polymers associate in water and form hydrogels in physiological buffer, for modification rates higher than 5 % and polymer concentrations higher than 4 wt. %. The gels were characterized by rheology. Their incubation with lipases resulted in a decrease of their viscosity, which could be interpreted by the cleavage of the hydrophobic side chains, by rheological tests. When the gels with PAA-C12 were incubated with a culture of Pseudomonas aeruginosa, their viscosity decreased, which shows that alkyle chains are also cleaved in vivo
Huang, Henry. "Exploring New Therapeutic Strategies for Osteoarthritis: From Genetic Manipulation of Skeletal Tissues to Chemically-modified Synthetic Hydrogels." eScholarship@UMMS, 2017. https://escholarship.umassmed.edu/gsbs_diss/919.
Повний текст джерелаDesprez, Valérie. "Caractérisations, applications et modélisation d'électrodes modifiées par des hydrogels : laponite-oligosilsesquioxanes(-enzyme)." Université Joseph Fourier (Grenoble), 1997. http://www.theses.fr/1997GRE10108.
Повний текст джерелаKazan, Samar [Verfasser]. "Enzymatic Bioelectrodes Based on Carbon Nanotubes Modified Redox Hydrogels for Enhanced Output Current and Long Term Stability of Enzymatic Biofuel Cells / Samar Kazan." München : Verlag Dr. Hut, 2017. http://d-nb.info/1126295779/34.
Повний текст джерелаAhmad, Hajira Fatima. "Cryopreservation effects on a pancreatic substitute comprised of beta cells or recombinant myoblasts encapsulated in non-adhesive and adhesive alginate hydrogels." Diss., Georgia Institute of Technology, 2012. http://hdl.handle.net/1853/48968.
Повний текст джерелаGruberová, Eliška. "Gelace hydrofobizovaného hyaluronanu." Master's thesis, Vysoké učení technické v Brně. Fakulta chemická, 2021. http://www.nusl.cz/ntk/nusl-449414.
Повний текст джерелаКниги з теми "MODIFIED HYDROGELS"
Davies, Megan Louise. Modified hydrogel matrices in fibre optic sensors. Birmingham: Aston University. Department of Chemical Engineering and Applied Chemistry, 1989.
Знайти повний текст джерелаStriegler, Karl. Modified Graphitic Carbon Nitrides for Photocatalytic Hydrogen Evolution from Water. Wiesbaden: Springer Fachmedien Wiesbaden, 2015. http://dx.doi.org/10.1007/978-3-658-09740-0.
Повний текст джерелаLee, Nim. Characteristics of a modified flotation cell in the removal of hydrogen sulfide. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1992.
Знайти повний текст джерелаWilley, David Benjamin. The investigation of the hydrogen storage properties of metal hydride electrode alloy surface modified with platinum group metals. Birmingham: University of Birmingham, 1999.
Знайти повний текст джерелаT.W.R.* Giles. Hydrodynamic and kinetic studies of modified flotation cell hydrogen sulphide scrubbing technology. 1988.
Знайти повний текст джерелаStriegler, Karl. Modified Graphitic Carbon Nitrides for Photocatalytic Hydrogen Evolution from Water: Copolymers, Sensitizers and Nanoparticles. Springer Vieweg. in Springer Fachmedien Wiesbaden GmbH, 2015.
Знайти повний текст джерелаModified Graphitic Carbon Nitrides for Photocatalytic Hydrogen Evolution from Water: Copolymers, Sensitizers and Nanoparticles. Spektrum Akademischer Verlag GmbH, 2015.
Знайти повний текст джерелаЧастини книг з теми "MODIFIED HYDROGELS"
Walter, Johanna-Gabriela. "Aptamer-Modified Hydrogels." In Advances in Biochemical Engineering/Biotechnology, 147–68. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/10_2021_166.
Повний текст джерелаAkiyama, Yoshikatsu, and Teruo Okano. "On-Off Switching Properties of ultra thin Intelligent Temperature-Responsive Polymer Modified Surface." In Hydrogels, 179–97. Milano: Springer Milan, 2009. http://dx.doi.org/10.1007/978-88-470-1104-5_14.
Повний текст джерелаFeng, J., and S. Qian. "Nanosilica-Modified Hydrogels Encapsulating Bacterial Spores for Self-healing Concrete." In Lecture Notes in Civil Engineering, 67–73. Singapore: Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-3330-3_9.
Повний текст джерелаLindblad, Margaretha Söderqvist, Olof Dahlman, John Sjöberg, and Ann-Christine Albertsson. "Modified Galactoglucomannans from Forestry Waste-water for Films and Hydrogels." In Polysaccharide Materials: Performance by Design, 185–98. Washington DC: American Chemical Society, 2009. http://dx.doi.org/10.1021/bk-2009-1017.ch010.
Повний текст джерелаSimionescu, Cristofor I., Monica Leanca, and Ioan I. Negulescu. "Surface Heparinization of Poly(ethylene terephthalate) Films Modified with Acrylic Hydrogels." In ACS Symposium Series, 229–37. Washington, DC: American Chemical Society, 1988. http://dx.doi.org/10.1021/bk-1988-0364.ch017.
Повний текст джерелаKumar, Sushant. "Modified Coal Gasification Process for Hydrogen Production." In Clean Hydrogen Production Methods, 55–66. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-14087-2_4.
Повний текст джерелаKumar, Sushant. "Modified Steam Methane Reformation Methods for Hydrogen Production." In Clean Hydrogen Production Methods, 31–54. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-14087-2_3.
Повний текст джерелаElias, Liju, and Sheik Muhammadhu Aboobakar Shibli. "Surface-Modified Carbon Nanotubes for Hydrogen Storage." In ACS Symposium Series, 151–73. Washington, DC: American Chemical Society, 2022. http://dx.doi.org/10.1021/bk-2022-1425.ch007.
Повний текст джерелаAlexeeva, O. K., S. Yu Alexeev, B. L. Shapir, and M. N. Tulskii. "Modified Tubular Catalytic Membrane Reactor for Hydrogen Production from Hydrocarbons." In Hydrogen Materials Science and Chemistry of Metal Hydrides, 339–47. Dordrecht: Springer Netherlands, 2002. http://dx.doi.org/10.1007/978-94-010-0558-6_32.
Повний текст джерелаStriegler, Karl. "Introduction and Objective." In Modified Graphitic Carbon Nitrides for Photocatalytic Hydrogen Evolution from Water, 1–2. Wiesbaden: Springer Fachmedien Wiesbaden, 2015. http://dx.doi.org/10.1007/978-3-658-09740-0_1.
Повний текст джерелаТези доповідей конференцій з теми "MODIFIED HYDROGELS"
Cram, Sandra, Hugh Brown, Geoffrey M. Spinks, Dominique Hourdet, and Costantino Creton. "Hydrophobically modified acrylamide-based hydrogels." In Smart Materials, Nano-, and Micro-Smart Systems, edited by Alan R. Wilson. SPIE, 2004. http://dx.doi.org/10.1117/12.582229.
Повний текст джерелаBignotti, Fabio, Luciana Sartore, and Gloria Spagnoli. "A versatile method for obtaining hydrophobically modified hydrogels." In 9TH INTERNATIONAL CONFERENCE ON “TIMES OF POLYMERS AND COMPOSITES”: From Aerospace to Nanotechnology. Author(s), 2018. http://dx.doi.org/10.1063/1.5045961.
Повний текст джерелаFu, Guoguang, and Winston Soboyejo. "Modified Poly (N-Isopropylacrylamide) Hydrogels for Drug Delivery." In ASME 2010 Summer Bioengineering Conference. American Society of Mechanical Engineers, 2010. http://dx.doi.org/10.1115/sbc2010-19491.
Повний текст джерелаUsta, Aybala, and Ramazan Asmatulu. "Synthesis and Analysis of Electrically Sensitive Hydrogels for Advanced Drug Delivery Systems." In ASME 2015 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2015. http://dx.doi.org/10.1115/imece2015-51120.
Повний текст джерелаErikson, Isaac E., Cindy Chung, Jason A. Burdick, and Robert L. Mauck. "Hyaluronic Acid Macromer Concentration Influences Functional MSC Chondrogenesis in Photocrosslinked MSC-Laden Hydrogels." In ASME 2008 Summer Bioengineering Conference. American Society of Mechanical Engineers, 2008. http://dx.doi.org/10.1115/sbc2008-193096.
Повний текст джерелаVicente, Adam, Zachary McCreery, and Karen Chang Yan. "Printability of Hydrogels for Hydrogel Molding Based Microfluidic Device Fabrication." In ASME 2019 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2019. http://dx.doi.org/10.1115/imece2019-11545.
Повний текст джерелаGuterl, Clare Canal, Tyler Kim, Steven B. Nicoll, and James C. Iatridis. "Genipin-Crosslinked Fibrin Hydrogels Modified With Collagen or Fibronectin as an Annulus Fibrosus Sealant." In ASME 2012 Summer Bioengineering Conference. American Society of Mechanical Engineers, 2012. http://dx.doi.org/10.1115/sbc2012-80913.
Повний текст джерелаMarkovic, Maja, Vesna Panic, Julijana Tadic, and Rada Pjanovic. "EFFECT OF CROSSLINKER AMOUNT ON HYBRID HYDROGELS SWELLING AND DRUG RELEASE." In 1st INTERNATIONAL Conference on Chemo and BioInformatics. Institute for Information Technologies, University of Kragujevac, 2021. http://dx.doi.org/10.46793/iccbi21.125m.
Повний текст джерелаKim, Minwook, Isaac E. Erickson, Jason A. Burdick, George R. Dodge, and Robert L. Mauck. "Differential Chondrogenic Potential of Human and Bovine Mesenchymal Stem Cells in Agarose and Photocrosslinked Hyaluronic Acid Hydrogels." In ASME 2010 Summer Bioengineering Conference. American Society of Mechanical Engineers, 2010. http://dx.doi.org/10.1115/sbc2010-19461.
Повний текст джерелаNajafi Moghadam, Peyman, Hanieh Rezazadeh, and Kamran Kazemi. "Synthesis and Characterization of Melamine-modified Hydrogels: The Study of Dye Removal from Aqueous Solutions." In The 21st International Electronic Conference on Synthetic Organic Chemistry. Basel, Switzerland: MDPI, 2017. http://dx.doi.org/10.3390/ecsoc-21-04721.
Повний текст джерелаЗвіти організацій з теми "MODIFIED HYDROGELS"
Dr. Ahn. Hydrogen Storage in metal-modified single-walled carbon nanotubes. Office of Scientific and Technical Information (OSTI), April 2004. http://dx.doi.org/10.2172/828225.
Повний текст джерелаHosokawa, Ketia. Hydrogen Storage Properties of Lithium Aluminohydride Modified by Dopants and Mechanochemistry. Office of Scientific and Technical Information (OSTI), January 2002. http://dx.doi.org/10.2172/804166.
Повний текст джерелаCalef, D. F. Molecular models for the intercalation of hydrogen molecules into modified graphites. Office of Scientific and Technical Information (OSTI), December 1995. http://dx.doi.org/10.2172/212469.
Повний текст джерелаHosokawa, Keita. Hydrogen Storage Properties of Lithium Aluminohydride modified by dopants and mechanochemistry. Office of Scientific and Technical Information (OSTI), January 2002. http://dx.doi.org/10.2172/795180.
Повний текст джерелаHosokawa, Keita. Hydrogen Storage Properties of Lithium Aluminohydride Modified by Dopants and Mechanochemistry. Office of Scientific and Technical Information (OSTI), January 2002. http://dx.doi.org/10.2172/798523.
Повний текст джерелаGraville. L51764 Hydrogen Cracking in the Heat-Affected Zone of High-Strength Steels-Year 2. Chantilly, Virginia: Pipeline Research Council International, Inc. (PRCI), March 1997. http://dx.doi.org/10.55274/r0010170.
Повний текст джерелаPatil, Bhimanagouda S., Ron Porat, G. K. Jayaprakasha, and K. N. C. Murthy. Optimization of Postharvest Storage Conditions to Maintain Fruit Quality and Health Maintaining Properties of Grapefruit. United States Department of Agriculture, January 2010. http://dx.doi.org/10.32747/2010.7613879.bard.
Повний текст джерелаBauza, Rodrigo, and Daniel Olsen. PR-179-20200-R01 Improved Catalyst Regeneration Process to Increase Poison Removal. Chantilly, Virginia: Pipeline Research Council International, Inc. (PRCI), June 2021. http://dx.doi.org/10.55274/r0012106.
Повний текст джерелаBruce and Yushanov. L52056 Enhancement of PRCI Thermal Analysis Model for Assessment of Attachments. Chantilly, Virginia: Pipeline Research Council International, Inc. (PRCI), August 2004. http://dx.doi.org/10.55274/r0010436.
Повний текст джерела[Studies of hydrogen-hydrogen and carbon-sulfur bond cleavage; Lewis acid modified molybdenum sulfide complexes; and Syntheses and reactions of pyrrole complexes]. Final report. Office of Scientific and Technical Information (OSTI), January 1998. http://dx.doi.org/10.2172/650154.
Повний текст джерела