Synthesis, processing and applications of nanostructured multifunctional materials with defined properties

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Synthesis, processing and applications of nanostructured multifunctional materials with defined properties (en)
Синтеза, развој технологија добијања и примена наноструктурних мултифункционалних материјала дефинисаних својстава (sr)
Sinteza, razvoj tehnologija dobijanja i primena nanostrukturnih multifunkcionalnih materijala definisanih svojstava (sr_RS)
Authors

Publications

Biocompatibility of silver / poly(vinyl alcohol) / graphen nanocomposite hydrogels in rat subcutaneous tissues for biomedical applications

Lužajić Božinovski, Tijana

(Univerzitet u Beogradu, Fakultet veterinarske medicine, 2019)

TY  - THES
AU  - Lužajić Božinovski, Tijana
PY  - 2019
UR  - http://vbs.rs/scripts/cobiss?command=DISPLAY&base=70036&RID=51502607
UR  - http://nardus.mpn.gov.rs/123456789/11248
UR  - https://vet-erinar.vet.bg.ac.rs/handle/123456789/51
AB  - This doctoral dissertation was designed in order to test the biocompatibility of two newly synthesized and previously in vitro characterized hydrogels based on poly(vinyl alcohol) polymers - Ag/PVA and Ag/PVA/Gr, which are intended for making wound dressings or soft tissue implants tissue. Poly(vinyl alcohol) (PVA) is a synthetic polymer commonly used in biomedicine due to its non-toxicity, solubility, biocompatibility, elasticity and the ability to produce reversible hydrogels with high sorption capacity. In the last few years, research has also focused on the incorporation of graphene (Gr) into hydrogel PVAs, in order to improve their mechanical strength and durability. In tissue engineering and regenerative medicine, it is particularly important that implants and bandages contain an antiinflammatory and antibacterial active ingredient to protect the sterility of the wound, or to prevent infection in the implant surrounding tissue. It is known that silver nanoparticles (AgNPs) have excellent antibacterial activity and are therefore often used as an active component of PVA-based hydrogel biomaterials. In order to test the biocompatibility of newly synthesized hydrogels, the soft tissue response to deep subcutaneously implanted Ag/PVA and Ag/PVA/Gr implants was compared to the reaction to the commercial calcium-alginate wound pad (Suprasorb ©, Lohmann & Rauscher GmbH & Co. KG, Neuwied, Germany), which is implanted in an identical manner. The tissue irritation index (IrI) was evaluated as the basic measure of tissue response to implanted hydrogels. In order to determine the degree of biocompatibility, the thickness of the connective tissue capsule around the implanted hydrogels, the number of inflammatory cells, including the Langerhans giant cells, the number of macrophages in the perimplant zone and their eneventual migration to the biomaterial, as well as the number of blood vessels around the implantation zone, were measured. The ratio of proliferating and apoptotic cellular skin and subcutaneous tissue cellular entities was observed, due to their responsibility for regeneration and reparation processes...
AB  - Ova doktorska disertacija dizajnirana je u cilju da se ispita biokompatibilnost dva novosintetisana i prethodno in vitro okarakterisana hidrogela na bazi sintetskog polimera polivinil-alkohola − Ag/PVA i Ag/PVA/Gr, koji su namenjeni za izradu obloga za rane ili za implantate za meka tkiva. Polivinil-alkohol (PVA) je sintetički polimer koji se često koristi u biomedicini zbog svoje netoksičnosti, rastvorljivosti, biokompatibilnosti, elastičnosti i sposobnosti stvaranja reverzibilnih hidrogelova s visokom sposobnošću sorpcije. U poslednjih nekoliko godina, istraživanja se takođe fokusiraju na ugradnju grafena (Gr) u hidrogelove PVA kako bi se poboljšala njihova mehanička čvrstoća i trajnost. U inženjerstvu tkiva i regenerativnoj medicini posebno je važno da implantati i zavoji sadrže antiinflamatornu i antibakterijsku aktivnu komponentu kako bi zaštitili sterilnost rane ili sprečili infekciju u tkivu koje okružuje implantat. Poznato je da nanočestice srebra (eng. silver nanoparticles, AgNPs) poseduju odličnu antibakterijsku aktivnost, pa se zbog toga često koriste kao aktivna komponenta biomaterijala na bazi hidrogela od PVA. U cilju ispitivanja biokompatibilnosti novosintetisanih hidrogelova, praćena je reakcija mekog tkiva na duboko potkožno postavljene implantate od Ag/PVA i Ag/PVA/Gr i poređena je sa reakcijom na komercijalnu oblogu za rane na bazi kalcijum-alginata (Suprasorb©, Lohmann & Rauscher GmbH & Co. KG, Neuwied, Germany), koja je implantirana na identičan način. Procenjivan je tkivni iritacioni indeks (IrI) kao osnovna mera tkivnog odgovora na implantirane hidrogelove. Za određivanje stepena biokompatibilnosti merena je debljina vezivnotkivne kapsule oko implantiranih hidrogelova, broj inflamatornih ćelija, uključujući i Langerhansove džinovske ćelije, broj makrofaga u periimplantnoj zoni i njihova enevntualna migracija u biomaterijal, kao i brojnost krvnih sudova mikrovaskularnog korita oko zone implantacije. Posmatran je odnos proliferacije i apoptoze ćelijskih entiteta kože i potkožnog tkiva odgovornih za procese regeneracije i reparacije...
PB  - Univerzitet u Beogradu, Fakultet veterinarske medicine
T1  - Biocompatibility of silver / poly(vinyl alcohol) / graphen nanocomposite hydrogels in rat subcutaneous tissues for biomedical applications
T1  - Ispitivanje biokompatibilnosti nanokompozitnih hidrogelova srebro / polivinil-alkohol / grafen u potkožnom tkivu pacova, namenjenih biomedicinskoj primeni
UR  - https://hdl.handle.net/21.15107/rcub_nardus_11248
ER  - 
@phdthesis{
author = "Lužajić Božinovski, Tijana",
year = "2019",
abstract = "This doctoral dissertation was designed in order to test the biocompatibility of two newly synthesized and previously in vitro characterized hydrogels based on poly(vinyl alcohol) polymers - Ag/PVA and Ag/PVA/Gr, which are intended for making wound dressings or soft tissue implants tissue. Poly(vinyl alcohol) (PVA) is a synthetic polymer commonly used in biomedicine due to its non-toxicity, solubility, biocompatibility, elasticity and the ability to produce reversible hydrogels with high sorption capacity. In the last few years, research has also focused on the incorporation of graphene (Gr) into hydrogel PVAs, in order to improve their mechanical strength and durability. In tissue engineering and regenerative medicine, it is particularly important that implants and bandages contain an antiinflammatory and antibacterial active ingredient to protect the sterility of the wound, or to prevent infection in the implant surrounding tissue. It is known that silver nanoparticles (AgNPs) have excellent antibacterial activity and are therefore often used as an active component of PVA-based hydrogel biomaterials. In order to test the biocompatibility of newly synthesized hydrogels, the soft tissue response to deep subcutaneously implanted Ag/PVA and Ag/PVA/Gr implants was compared to the reaction to the commercial calcium-alginate wound pad (Suprasorb ©, Lohmann & Rauscher GmbH & Co. KG, Neuwied, Germany), which is implanted in an identical manner. The tissue irritation index (IrI) was evaluated as the basic measure of tissue response to implanted hydrogels. In order to determine the degree of biocompatibility, the thickness of the connective tissue capsule around the implanted hydrogels, the number of inflammatory cells, including the Langerhans giant cells, the number of macrophages in the perimplant zone and their eneventual migration to the biomaterial, as well as the number of blood vessels around the implantation zone, were measured. The ratio of proliferating and apoptotic cellular skin and subcutaneous tissue cellular entities was observed, due to their responsibility for regeneration and reparation processes..., Ova doktorska disertacija dizajnirana je u cilju da se ispita biokompatibilnost dva novosintetisana i prethodno in vitro okarakterisana hidrogela na bazi sintetskog polimera polivinil-alkohola − Ag/PVA i Ag/PVA/Gr, koji su namenjeni za izradu obloga za rane ili za implantate za meka tkiva. Polivinil-alkohol (PVA) je sintetički polimer koji se često koristi u biomedicini zbog svoje netoksičnosti, rastvorljivosti, biokompatibilnosti, elastičnosti i sposobnosti stvaranja reverzibilnih hidrogelova s visokom sposobnošću sorpcije. U poslednjih nekoliko godina, istraživanja se takođe fokusiraju na ugradnju grafena (Gr) u hidrogelove PVA kako bi se poboljšala njihova mehanička čvrstoća i trajnost. U inženjerstvu tkiva i regenerativnoj medicini posebno je važno da implantati i zavoji sadrže antiinflamatornu i antibakterijsku aktivnu komponentu kako bi zaštitili sterilnost rane ili sprečili infekciju u tkivu koje okružuje implantat. Poznato je da nanočestice srebra (eng. silver nanoparticles, AgNPs) poseduju odličnu antibakterijsku aktivnost, pa se zbog toga često koriste kao aktivna komponenta biomaterijala na bazi hidrogela od PVA. U cilju ispitivanja biokompatibilnosti novosintetisanih hidrogelova, praćena je reakcija mekog tkiva na duboko potkožno postavljene implantate od Ag/PVA i Ag/PVA/Gr i poređena je sa reakcijom na komercijalnu oblogu za rane na bazi kalcijum-alginata (Suprasorb©, Lohmann & Rauscher GmbH & Co. KG, Neuwied, Germany), koja je implantirana na identičan način. Procenjivan je tkivni iritacioni indeks (IrI) kao osnovna mera tkivnog odgovora na implantirane hidrogelove. Za određivanje stepena biokompatibilnosti merena je debljina vezivnotkivne kapsule oko implantiranih hidrogelova, broj inflamatornih ćelija, uključujući i Langerhansove džinovske ćelije, broj makrofaga u periimplantnoj zoni i njihova enevntualna migracija u biomaterijal, kao i brojnost krvnih sudova mikrovaskularnog korita oko zone implantacije. Posmatran je odnos proliferacije i apoptoze ćelijskih entiteta kože i potkožnog tkiva odgovornih za procese regeneracije i reparacije...",
publisher = "Univerzitet u Beogradu, Fakultet veterinarske medicine",
title = "Biocompatibility of silver / poly(vinyl alcohol) / graphen nanocomposite hydrogels in rat subcutaneous tissues for biomedical applications, Ispitivanje biokompatibilnosti nanokompozitnih hidrogelova srebro / polivinil-alkohol / grafen u potkožnom tkivu pacova, namenjenih biomedicinskoj primeni",
url = "https://hdl.handle.net/21.15107/rcub_nardus_11248"
}
Lužajić Božinovski, T.. (2019). Biocompatibility of silver / poly(vinyl alcohol) / graphen nanocomposite hydrogels in rat subcutaneous tissues for biomedical applications. 
Univerzitet u Beogradu, Fakultet veterinarske medicine..
https://hdl.handle.net/21.15107/rcub_nardus_11248
Lužajić Božinovski T. Biocompatibility of silver / poly(vinyl alcohol) / graphen nanocomposite hydrogels in rat subcutaneous tissues for biomedical applications. 2019;.
https://hdl.handle.net/21.15107/rcub_nardus_11248 .
Lužajić Božinovski, Tijana, "Biocompatibility of silver / poly(vinyl alcohol) / graphen nanocomposite hydrogels in rat subcutaneous tissues for biomedical applications" (2019),
https://hdl.handle.net/21.15107/rcub_nardus_11248 .

In vivo investigation of soft tissue response of novel silver/poly(vinyl alcohol)/ graphene and silver/poly(vinyl alcohol)/chitosan/graphene hydrogels aimed for medical applications - the first experience

Lužajić Božinovski, Tijana; Marković, Danica; Todorović, Vera; Prokić, Bogomir Bolka; Milošević, Ivan; Drndarević, Neda; Nesović, Katarina; Kyong, Yop Rhee; Miskovic-Stanković, Vesna

(Univerzitet u Beogradu - Fakultet veterinarske medicine, Beograd, 2018)

TY  - JOUR
AU  - Lužajić Božinovski, Tijana
AU  - Marković, Danica
AU  - Todorović, Vera
AU  - Prokić, Bogomir Bolka
AU  - Milošević, Ivan
AU  - Drndarević, Neda
AU  - Nesović, Katarina
AU  - Kyong, Yop Rhee
AU  - Miskovic-Stanković, Vesna
PY  - 2018
UR  - https://vet-erinar.vet.bg.ac.rs/handle/123456789/1587
AB  - In this paper, we have shown for the first time the soft tissue response of novel silver/poly(vinyl alcohol)/graphene (Ag/PVA/Gr) and silver/poly(vinyl alcohol)/chitosan/graphene (Ag/PVA/CHI/Gr) nanocomposite hydrogels aimed for medical applications. These novel hydrogels were produced by in situ electrochemical synthesis of silver nanoparticles in the polymer matrices as described in our previously published works. Both Ag/PVA/Gr and Ag/PVA/CHI/Gr, as well as controls Ag/PVA, Ag/PVA/CHI and commercial Suprasorb (c) hydrogel discs, were implanted in the subcutaneous tissue of rats. Implants with the surrounding tissue were dissected after post-implantation on days 7, 15, 30 and 60, and then processed for histological examination. The tissue irritation index (TIrI) score, according to ISO 10993-6, 2007, as well as the number of leukocytes in the peri-implant zone and connective tissue capsule thickness were examined. The results show that each TIrI score, the leukocyte number around the implanted materials and capsule thickness gradually decreased during the observation period. At the endpoint of follow-up, the Ag/PVA/CHI/Gr implant was surrounded with a thinner capsule, while both the TIrI score and the number of leukocytes of the peri-implant zone were greater compared to the Ag/PVA/Gr implant. Despite the observed differences, we can conclude that our in vivo experiment suggested that both novel hydrogels were biocompatible and suitable for medical use.
PB  - Univerzitet u Beogradu - Fakultet veterinarske medicine, Beograd
T2  - Acta Veterinaria-Beograd
T1  - In vivo investigation of soft tissue response of novel silver/poly(vinyl alcohol)/ graphene and silver/poly(vinyl alcohol)/chitosan/graphene hydrogels aimed for medical applications - the first experience
VL  - 68
IS  - 3
SP  - 321
EP  - 339
DO  - 10.2478/acve-2018-0027
ER  - 
@article{
author = "Lužajić Božinovski, Tijana and Marković, Danica and Todorović, Vera and Prokić, Bogomir Bolka and Milošević, Ivan and Drndarević, Neda and Nesović, Katarina and Kyong, Yop Rhee and Miskovic-Stanković, Vesna",
year = "2018",
abstract = "In this paper, we have shown for the first time the soft tissue response of novel silver/poly(vinyl alcohol)/graphene (Ag/PVA/Gr) and silver/poly(vinyl alcohol)/chitosan/graphene (Ag/PVA/CHI/Gr) nanocomposite hydrogels aimed for medical applications. These novel hydrogels were produced by in situ electrochemical synthesis of silver nanoparticles in the polymer matrices as described in our previously published works. Both Ag/PVA/Gr and Ag/PVA/CHI/Gr, as well as controls Ag/PVA, Ag/PVA/CHI and commercial Suprasorb (c) hydrogel discs, were implanted in the subcutaneous tissue of rats. Implants with the surrounding tissue were dissected after post-implantation on days 7, 15, 30 and 60, and then processed for histological examination. The tissue irritation index (TIrI) score, according to ISO 10993-6, 2007, as well as the number of leukocytes in the peri-implant zone and connective tissue capsule thickness were examined. The results show that each TIrI score, the leukocyte number around the implanted materials and capsule thickness gradually decreased during the observation period. At the endpoint of follow-up, the Ag/PVA/CHI/Gr implant was surrounded with a thinner capsule, while both the TIrI score and the number of leukocytes of the peri-implant zone were greater compared to the Ag/PVA/Gr implant. Despite the observed differences, we can conclude that our in vivo experiment suggested that both novel hydrogels were biocompatible and suitable for medical use.",
publisher = "Univerzitet u Beogradu - Fakultet veterinarske medicine, Beograd",
journal = "Acta Veterinaria-Beograd",
title = "In vivo investigation of soft tissue response of novel silver/poly(vinyl alcohol)/ graphene and silver/poly(vinyl alcohol)/chitosan/graphene hydrogels aimed for medical applications - the first experience",
volume = "68",
number = "3",
pages = "321-339",
doi = "10.2478/acve-2018-0027"
}
Lužajić Božinovski, T., Marković, D., Todorović, V., Prokić, B. B., Milošević, I., Drndarević, N., Nesović, K., Kyong, Y. R.,& Miskovic-Stanković, V.. (2018). In vivo investigation of soft tissue response of novel silver/poly(vinyl alcohol)/ graphene and silver/poly(vinyl alcohol)/chitosan/graphene hydrogels aimed for medical applications - the first experience. in Acta Veterinaria-Beograd
Univerzitet u Beogradu - Fakultet veterinarske medicine, Beograd., 68(3), 321-339.
https://doi.org/10.2478/acve-2018-0027
Lužajić Božinovski T, Marković D, Todorović V, Prokić BB, Milošević I, Drndarević N, Nesović K, Kyong YR, Miskovic-Stanković V. In vivo investigation of soft tissue response of novel silver/poly(vinyl alcohol)/ graphene and silver/poly(vinyl alcohol)/chitosan/graphene hydrogels aimed for medical applications - the first experience. in Acta Veterinaria-Beograd. 2018;68(3):321-339.
doi:10.2478/acve-2018-0027 .
Lužajić Božinovski, Tijana, Marković, Danica, Todorović, Vera, Prokić, Bogomir Bolka, Milošević, Ivan, Drndarević, Neda, Nesović, Katarina, Kyong, Yop Rhee, Miskovic-Stanković, Vesna, "In vivo investigation of soft tissue response of novel silver/poly(vinyl alcohol)/ graphene and silver/poly(vinyl alcohol)/chitosan/graphene hydrogels aimed for medical applications - the first experience" in Acta Veterinaria-Beograd, 68, no. 3 (2018):321-339,
https://doi.org/10.2478/acve-2018-0027 . .
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