Temperature responsive hydrogels based on ethylene glycol propylene glycol "block" units with VPTT close to human body temperature
2017
Преузимање 🢃
Конференцијски прилог (Објављена верзија)
Метаподаци
Приказ свих података о документуАпстракт
New hydrogels based on different oligo(alkylene glycol) methacrylate (OAGMA) with inverse thermo-response and volume phase transition temperature (VPTT) close to human body temperature were investigated in this work. Synthesis was performed from monomer-solvent mixture by gamma radiation; four different OAGMA (EG6MA, EG6PG3MA, EG3PG6MA and PG5MA) were used. The main focus was made on hydrogels based on EGxPGy pendant chains with different number of ethylene glycol and propylene glycol units in “block” backbone since in the case of POPGMA and POEGMA homopolimers (e.g. hydrogels with pure PG and EG pedant chains) the VPTTs were observed far below and far above the human body temperature, respectively. Characterisation of the hydrogels was performed by swelling, UV-Vis, FTIR, SEM, DSC and in vitro biocompatibility investigations. Due to the possibility to combined VPTT close to human body temperature with good biocompatibility, new hydrogels based on EGPG “block” pedant chains show great ...potential for biomedical applications.
Извор:
YUCOMAT 2017 : 19th Annual Conference YUCOMAT 2017 : Programme and The Book of Abstracts, 2017, 71-71Издавач:
- Belgrade : Materials Research Society of Serbia
Финансирање / пројекти:
- Хемијско и структурно дизајнирање наноматеријала за примену у медицини и инжењерству ткива (RS-MESTD-Basic Research (BR or ON)-172026)
Институција/група
VinčaTY - CONF AU - Suljovrujić, Edin AU - Mićić, Maja M. AU - Rogić Miladinović, Zorana AU - Miličević, Dejan PY - 2017 UR - https://vinar.vin.bg.ac.rs/handle/123456789/11470 AB - New hydrogels based on different oligo(alkylene glycol) methacrylate (OAGMA) with inverse thermo-response and volume phase transition temperature (VPTT) close to human body temperature were investigated in this work. Synthesis was performed from monomer-solvent mixture by gamma radiation; four different OAGMA (EG6MA, EG6PG3MA, EG3PG6MA and PG5MA) were used. The main focus was made on hydrogels based on EGxPGy pendant chains with different number of ethylene glycol and propylene glycol units in “block” backbone since in the case of POPGMA and POEGMA homopolimers (e.g. hydrogels with pure PG and EG pedant chains) the VPTTs were observed far below and far above the human body temperature, respectively. Characterisation of the hydrogels was performed by swelling, UV-Vis, FTIR, SEM, DSC and in vitro biocompatibility investigations. Due to the possibility to combined VPTT close to human body temperature with good biocompatibility, new hydrogels based on EGPG “block” pedant chains show great potential for biomedical applications. PB - Belgrade : Materials Research Society of Serbia C3 - YUCOMAT 2017 : 19th Annual Conference YUCOMAT 2017 : Programme and The Book of Abstracts T1 - Temperature responsive hydrogels based on ethylene glycol propylene glycol "block" units with VPTT close to human body temperature SP - 71 EP - 71 UR - https://hdl.handle.net/21.15107/rcub_vinar_11470 ER -
@conference{
author = "Suljovrujić, Edin and Mićić, Maja M. and Rogić Miladinović, Zorana and Miličević, Dejan",
year = "2017",
abstract = "New hydrogels based on different oligo(alkylene glycol) methacrylate (OAGMA) with inverse thermo-response and volume phase transition temperature (VPTT) close to human body temperature were investigated in this work. Synthesis was performed from monomer-solvent mixture by gamma radiation; four different OAGMA (EG6MA, EG6PG3MA, EG3PG6MA and PG5MA) were used. The main focus was made on hydrogels based on EGxPGy pendant chains with different number of ethylene glycol and propylene glycol units in “block” backbone since in the case of POPGMA and POEGMA homopolimers (e.g. hydrogels with pure PG and EG pedant chains) the VPTTs were observed far below and far above the human body temperature, respectively. Characterisation of the hydrogels was performed by swelling, UV-Vis, FTIR, SEM, DSC and in vitro biocompatibility investigations. Due to the possibility to combined VPTT close to human body temperature with good biocompatibility, new hydrogels based on EGPG “block” pedant chains show great potential for biomedical applications.",
publisher = "Belgrade : Materials Research Society of Serbia",
journal = "YUCOMAT 2017 : 19th Annual Conference YUCOMAT 2017 : Programme and The Book of Abstracts",
title = "Temperature responsive hydrogels based on ethylene glycol propylene glycol "block" units with VPTT close to human body temperature",
pages = "71-71",
url = "https://hdl.handle.net/21.15107/rcub_vinar_11470"
}
Suljovrujić, E., Mićić, M. M., Rogić Miladinović, Z.,& Miličević, D.. (2017). Temperature responsive hydrogels based on ethylene glycol propylene glycol "block" units with VPTT close to human body temperature. in YUCOMAT 2017 : 19th Annual Conference YUCOMAT 2017 : Programme and The Book of Abstracts Belgrade : Materials Research Society of Serbia., 71-71. https://hdl.handle.net/21.15107/rcub_vinar_11470
Suljovrujić E, Mićić MM, Rogić Miladinović Z, Miličević D. Temperature responsive hydrogels based on ethylene glycol propylene glycol "block" units with VPTT close to human body temperature. in YUCOMAT 2017 : 19th Annual Conference YUCOMAT 2017 : Programme and The Book of Abstracts. 2017;:71-71. https://hdl.handle.net/21.15107/rcub_vinar_11470 .
Suljovrujić, Edin, Mićić, Maja M., Rogić Miladinović, Zorana, Miličević, Dejan, "Temperature responsive hydrogels based on ethylene glycol propylene glycol "block" units with VPTT close to human body temperature" in YUCOMAT 2017 : 19th Annual Conference YUCOMAT 2017 : Programme and The Book of Abstracts (2017):71-71, https://hdl.handle.net/21.15107/rcub_vinar_11470 .



