Magnetic polymer-silica composites as bioluminescent sensors for bilirubin detection
| Parent link: | Materials Chemistry and Physics Vol. 183.— 2016.— [P. 422-429] |
|---|---|
| Autor Corporativo: | Национальный исследовательский Томский политехнический университет Управление проректора по научной работе и инновациям Центр RASA в Томске Лаборатория новых лекарственных форм |
| Outros autores: | Timin A. S. Aleksandr Sergeevich, Solomonov A. V. Alexey, Kumagai A. Akiko, Miyawaki A. Atsushi, Khashirova S. Yu. Svetlana, Zhansitov A. Azamat, Rumyantsev E. V. Evgeniy |
| Summary: | Title screen The synthesis of multifunctional nano-sized materials is leading to the rapid development of key application, including improved drug delivery, bioimaging and protein separation. In this work, magnetic silica particles modified with novel guanidine containing co-polymers were manufactured via sol-gel method. To evaluate the chemical composition of our prepared samples, FT-IR spectroscopy and thermogravimetry were conducted. Scanning electron microscopy was used in order to investigate the morphology of final products after modification by guanidine containing co-polymers and iron nanoparticles. In addition, the surface of polymer-silica composites was functionalized by the novel bilirubin-inducible fluorescent protein UnaG. In an aqueous bilirubin solution, the silica particles decorated with the polymer-UnaG have showed bright fluorescence. Synthesis and characterization of these hybrid materials allow developing of new multifunctional nano-sized materials, which will be used for detection and separation of bilirubin, a lipophilic heme catabolite that is a clinical diagnostic for liver function. Режим доступа: по договору с организацией-держателем ресурса |
| Idioma: | inglés |
| Publicado: |
2016
|
| Subjects: | |
| Acceso en liña: | http://dx.doi.org/10.1016/j.matchemphys.2016.08.048 |
| Formato: | Electrónico Capítulo de libro |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=652368 |
Títulos similares
Antioxidant Activity and Toxicity of Fullerenols via Bioluminescence Signaling: Role of Oxygen Substituents; International Journal of Molecular Sciences; Vol. 20, iss. 9
Publicado: (2019)
Publicado: (2019)
Биологическая активность фуллеренолов различной структуры. Роль активных форм кислорода. Биолюминесцентный мониторинг; VII Съезд биофизиков России; Т. 2
Publicado: (2023)
Publicado: (2023)
Антиоксидантные свойства фуллеренолов. Биолюминесцентный мониторинг; V Съезд биофизиков России; Т. 1
Publicado: (2015)
Publicado: (2015)
Исследование антиоксидантной активности фуллеренолов в растворах модельных окислителей. Биолюминесцентный мониторинг; Ломоносов-2016
por: Ковель Е. С.
Publicado: (2016)
por: Ковель Е. С.
Publicado: (2016)
Исследование механизмов снижения токсичности растворов u238 гуминовыми веществами и фуллеренолом. Биолюминесцентный мониторинг; Химия и химическая технология в XXI веке; Т. 2
por: Медведев В. В.
Publicado: (2023)
por: Медведев В. В.
Publicado: (2023)
Снижение радиационной токсичности гуминовыми веществами. Биолюминесцентный мониторинг; Химия и химическая технология в XXI веке; Т. 2
Publicado: (2021)
Publicado: (2021)
Electrical Properties of Carbon Nanotube-Reinforced Polymer Composites; Key Engineering Materials; Vol. 685 : High Technology: Research and Applications 2015 (HTRA 2015)
Publicado: (2016)
Publicado: (2016)
Выявление нейтрализующего эффекта гуминовых веществ и фуллеренолов в условиях низкодозового воздействия тория–232. Биолюминесцентный мониторинг; К вершинам науки
por: Семенова А. А. Александра Алексеевна
Publicado: (2024)
por: Семенова А. А. Александра Алексеевна
Publicado: (2024)
Composite implants coated with biodegradable polymers prevent stimulating tumor progression; AIP Conference Proceedings; Vol. 1760 : Physics of Cancer: Interdisciplinary Problems and Clinical Applications 2016
Publicado: (2016)
Publicado: (2016)
Polymer Composites in the Aerospace Industry
Publicado: (Amsterdam, Elsevier, 2015)
Publicado: (Amsterdam, Elsevier, 2015)
Electrical and Thermal Properties of Polymer Composites Based on Polyvinylidene Fluoride; Russian Physics Journal; Vol. 60, iss. 1
por: Lebedev S. M. Sergey Mikhailovich
Publicado: (2017)
por: Lebedev S. M. Sergey Mikhailovich
Publicado: (2017)
Mechanical properties of carbon-fiber-reinforced epoxy composites modified by carbon micro- and nanofillers; Polymer Composites; Vol. 42, iss. 9
por: Burkov M. V. Mikhail Vladimirovich
Publicado: (2021)
por: Burkov M. V. Mikhail Vladimirovich
Publicado: (2021)
Producing porous polymer composites; Перспективы развития фундаментальных наук; Т. 2 : Химия
por: Popova I. A.
Publicado: (2017)
por: Popova I. A.
Publicado: (2017)
Detecting Defects in Composite Polymers by Using 3D Scanning Laser Doppler Vibrometry; Materials; Vol. 15, iss. 20
Publicado: (2022)
Publicado: (2022)
Антенны на основе композитов графена и полимеров для мониторинга живых тканей; Химия и химическая технология в XXI веке; Т. 2
Publicado: (2021)
Publicado: (2021)
Laser-processed metal/polymer composites: application in clean energy, electronic devices, and sensors; Химия и химическая технология в XXI веке; Т. 2
Publicado: (2021)
Publicado: (2021)
Fine-tuning properties of biocompatible carbon-polymer composites; СХС-2025
Publicado: (2025)
Publicado: (2025)
Extrudable polymer-polymer composites based on ultra-high molecular weight polyethylene; AIP Conference Proceedings; Vol. 1915 : Mechanics, Resource and Diagnostics of Materials and Structures (MRDMS-2017)
Publicado: (2017)
Publicado: (2017)
Flexural properties of copper-filled carbon fiber reinforced polymers; IOP Conference Series: Materials Science and Engineering; Vol. 1118 : Mechanical Engineering and Modern Technologies (MEMT 2020)
por: Eremin A. V. Alexandr Vyacheslavovich
Publicado: (2021)
por: Eremin A. V. Alexandr Vyacheslavovich
Publicado: (2021)
Comparative Analysis of Methods for Determination of the Thermal Characteristics of Filled Polymer Composites; AIP Conference Proceedings; Vol. 1783 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2016
Publicado: (2016)
Publicado: (2016)
Formation of Metal–Polymer Composite on Titanium Alloy Surfaces; Applied Mechanics and Materials; Vol. 682 : Innovation Technology and Economics in Engineering
por: Klimenov V. A. Vasily Aleksandrovich
Publicado: (2014)
por: Klimenov V. A. Vasily Aleksandrovich
Publicado: (2014)
High Performance Polymer Composites: A Role of Transfer Films in Ensuring Tribological Properties-A Review; Polymers; Vol. 14, iss. 5
por: Panin S. V. Sergey Viktorovich
Publicado: (2022)
por: Panin S. V. Sergey Viktorovich
Publicado: (2022)
Conductive carbon nanotube-reinforced polymer composites and their characterization; IEEE Transactions on Dielectrics and Electrical Insulation; Vol. 23, iss. 3
Publicado: (2016)
Publicado: (2016)
Computer-Aided Design of the Composition of Extrudable Polymer–Polymer UHMWPE Composites with Specified Antifriction and Mechanical Properties; Journal of Friction and Wear; Vol. 40, iss. 6
Publicado: (2019)
Publicado: (2019)
Influence of Silica Fume on the Production Process and Properties of Porous Glass Composite; Известия вузов. Химия и химическая технология; Т. 66, вып. 1
por: Skirdin K. V. Kirill Vyacheslavovich
Publicado: (2023)
por: Skirdin K. V. Kirill Vyacheslavovich
Publicado: (2023)
Poly(lactic acid)-based polymer composites with high electric and thermal conductivity and their characterization; Polymer Testing; Vol. 58
Publicado: (2016)
Publicado: (2016)
Thermal characteristics of polymer composites based on epoxy resin and copper nanopowders; International Conference on Thermal Analysis and Calorimetry in Russia (RTAC-2016); Vol. 1
Publicado: (2016)
Publicado: (2016)
Development of technology and investigation of structure and properties of composites on the basis of shungit and polymer resins; IOP Conference Series: Materials Science and Engineering; Vol. 81 : Radiation-Thermal Effects and Processes in Inorganic Materials
Publicado: (2015)
Publicado: (2015)
Polymer Composites with Carbonaceous Nanofillers. Properties and Applications
por: Tjong S. C. Sie Chin
Publicado: (Weinheim, Wiley-VCH Verlag GmbH & Co. KGaA, 2012)
por: Tjong S. C. Sie Chin
Publicado: (Weinheim, Wiley-VCH Verlag GmbH & Co. KGaA, 2012)
Preparation and Properties of Monomers, Polymers and Composite Materials
Publicado: (New York, Nova Science Publishers. Inc., 2007)
Publicado: (New York, Nova Science Publishers. Inc., 2007)
Высокомолекулярные соединения. Серия А. Физика полимеров: научный журнал
Publicado: (Москва, Наука, 1959-)
Publicado: (Москва, Наука, 1959-)
Magnetic silica hybrids modified with guanidine containing co-polymers for drug delivery applications; Materials Science and Engineering: C; Vol. 64
Publicado: (2016)
Publicado: (2016)
Электрические свойства полимеров: пер. с англ.
por: Блайт Э. Р. Энтони Р.
Publicado: (Москва, Физматлит, 2008)
por: Блайт Э. Р. Энтони Р.
Publicado: (Москва, Физматлит, 2008)
Структурная механика зернистых композитов на эластомерной основе: монография
por: Мошев В. В. Валерий Варфоломеевич
Publicado: (Москва, Наука, 1992)
por: Мошев В. В. Валерий Варфоломеевич
Publicado: (Москва, Наука, 1992)
Composites and Nanocomposites Based on Renewable and Sustainable Materials; International Journal of Polymer Science; Vol. 2016
Publicado: (2016)
Publicado: (2016)
Mechanics of Composite Materials
por: Kaw A. K. Autar K.
Publicado: (Boca Raton, Taylor & Francis, 2006)
por: Kaw A. K. Autar K.
Publicado: (Boca Raton, Taylor & Francis, 2006)
Transparent polymer sensor for visual and photometrical detection of thiocyanate in oilfield water; Journal of Petroleum Science and Engineering; Vol. 172
Publicado: (2019)
Publicado: (2019)
Enhancement of mechanical and tribotechnical properties of polymer composites with thermoplastic UHMWPE and PEEK matrices by loading carbon nanofibers/nanotubes; AIP Conference Proceedings; Vol. 1915 : Mechanics, Resource and Diagnostics of Materials and Structures (MRDMS-2017)
Publicado: (2017)
Publicado: (2017)
Mechanical and tribological characteristics of nano- and microcomposites with UHMWPE–PTFE polymer–polymer matrix; Journal of Friction and Wear; Vol. 36, iss. 6
Publicado: (2015)
Publicado: (2015)
Synthesis of Highly Deactivated Polyhalogenated Aromatic Compounds; Key Engineering Materials; Vol. 683 : Multifunctional Materials: Development and Application
Publicado: (2016)
Publicado: (2016)
Títulos similares
-
Antioxidant Activity and Toxicity of Fullerenols via Bioluminescence Signaling: Role of Oxygen Substituents; International Journal of Molecular Sciences; Vol. 20, iss. 9
Publicado: (2019) -
Биологическая активность фуллеренолов различной структуры. Роль активных форм кислорода. Биолюминесцентный мониторинг; VII Съезд биофизиков России; Т. 2
Publicado: (2023) -
Антиоксидантные свойства фуллеренолов. Биолюминесцентный мониторинг; V Съезд биофизиков России; Т. 1
Publicado: (2015) -
Исследование антиоксидантной активности фуллеренолов в растворах модельных окислителей. Биолюминесцентный мониторинг; Ломоносов-2016
por: Ковель Е. С.
Publicado: (2016) -
Исследование механизмов снижения токсичности растворов u238 гуминовыми веществами и фуллеренолом. Биолюминесцентный мониторинг; Химия и химическая технология в XXI веке; Т. 2
por: Медведев В. В.
Publicado: (2023)