Uloga sintetičkih biomaterijala u procesu regeneracije resorbovane alveolarne kosti
The role of synthetic biomaterials in resorptive alveolar bone regeneration
Authors
Kaličanin, BiljanaAjduković, Zorica

Kostić, Milena
Najman, Stevo

Savić, Vojin
Ignjatović, Nenad

Article (Published version)
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Gubitak koštanog tkiva, usled resorpcije viličnih kostiju, ima značajno mesto u stomatologiji. U cilju rešavanja problema deficita koštanog tkiva nastalih resorpcijom alveolarne kosti pristupilo se primeni sintetičkih materijala na bazi CP/PLGA (kalcijum-fosfat/polilaktid-co-glikolid) kompozita. Istraživanja su radena na pacovima kod kojih je arteficijelno izazivana resorpcija viličnih kostiju. Rezultati su pokazali da se najbolji efekat regeneracije alveolarne kosti postižu implantacijom nanokompozita. Efekat nanokompozita praćenje određivanjem sadržaja kalcijuma i fosfata, kao osnova kristalne rešetke hidroksiapatita. Dobijeni rezultati pokazuju da sintetički CP/PLGA nanokompozit olakšava rehabilitaciju oslabljene alveolarne kosti, pa zahvaljujući svom osteokonduktivnom efektu može u budućnosti biti materijal izbora u zameni koštanog tkiva.
The alveolar bone tissue resorption defect has a significant role in dentistry. Because of the bone tissue deficit developed by alveolar resorption, the use of synthetic material CP/PLGA (calcium-phosphate/polylactide-co-gliycolide) composite was introduced. Investigations were performed on rats with artificially produced resorption of the mandibular bone. The results show that the best effect on alveolar bone were attained by using nano-composite implants. The effect of the nanocomposite was ascertained by determining the calcium and phosphate content, as a basis of the hydroxyapatite structure. The results show that synthetic CP/PLGA nanocomposite alleviate the rehabilitation of weakened alveolar bone. Due to its osteoconductive effect, CP/PLGA can be the material of choice for bone substitution in the future.
Keywords:
CP/PLGA / alveolar bone / calcium phosphate / lead / cadmiumSource:
Hemijska industrija, 2007, 61, 2, 96-100Publisher:
- Belgrade : Association of the Chemical Engineers of Serbia
Institution/Community
Институт техничких наука САНУ / Institute of Technical Sciences of SASATY - JOUR AU - Kaličanin, Biljana AU - Ajduković, Zorica AU - Kostić, Milena AU - Najman, Stevo AU - Savić, Vojin AU - Ignjatović, Nenad PY - 2007 UR - https://dais.sanu.ac.rs/123456789/13687 AB - Gubitak koštanog tkiva, usled resorpcije viličnih kostiju, ima značajno mesto u stomatologiji. U cilju rešavanja problema deficita koštanog tkiva nastalih resorpcijom alveolarne kosti pristupilo se primeni sintetičkih materijala na bazi CP/PLGA (kalcijum-fosfat/polilaktid-co-glikolid) kompozita. Istraživanja su radena na pacovima kod kojih je arteficijelno izazivana resorpcija viličnih kostiju. Rezultati su pokazali da se najbolji efekat regeneracije alveolarne kosti postižu implantacijom nanokompozita. Efekat nanokompozita praćenje određivanjem sadržaja kalcijuma i fosfata, kao osnova kristalne rešetke hidroksiapatita. Dobijeni rezultati pokazuju da sintetički CP/PLGA nanokompozit olakšava rehabilitaciju oslabljene alveolarne kosti, pa zahvaljujući svom osteokonduktivnom efektu može u budućnosti biti materijal izbora u zameni koštanog tkiva. AB - The alveolar bone tissue resorption defect has a significant role in dentistry. Because of the bone tissue deficit developed by alveolar resorption, the use of synthetic material CP/PLGA (calcium-phosphate/polylactide-co-gliycolide) composite was introduced. Investigations were performed on rats with artificially produced resorption of the mandibular bone. The results show that the best effect on alveolar bone were attained by using nano-composite implants. The effect of the nanocomposite was ascertained by determining the calcium and phosphate content, as a basis of the hydroxyapatite structure. The results show that synthetic CP/PLGA nanocomposite alleviate the rehabilitation of weakened alveolar bone. Due to its osteoconductive effect, CP/PLGA can be the material of choice for bone substitution in the future. PB - Belgrade : Association of the Chemical Engineers of Serbia T2 - Hemijska industrija T1 - Uloga sintetičkih biomaterijala u procesu regeneracije resorbovane alveolarne kosti T1 - The role of synthetic biomaterials in resorptive alveolar bone regeneration SP - 96 EP - 100 VL - 61 IS - 2 DO - 10.2298/HEMIND0702096K UR - https://hdl.handle.net/21.15107/rcub_dais_13687 ER -
@article{ author = "Kaličanin, Biljana and Ajduković, Zorica and Kostić, Milena and Najman, Stevo and Savić, Vojin and Ignjatović, Nenad", year = "2007", abstract = "Gubitak koštanog tkiva, usled resorpcije viličnih kostiju, ima značajno mesto u stomatologiji. U cilju rešavanja problema deficita koštanog tkiva nastalih resorpcijom alveolarne kosti pristupilo se primeni sintetičkih materijala na bazi CP/PLGA (kalcijum-fosfat/polilaktid-co-glikolid) kompozita. Istraživanja su radena na pacovima kod kojih je arteficijelno izazivana resorpcija viličnih kostiju. Rezultati su pokazali da se najbolji efekat regeneracije alveolarne kosti postižu implantacijom nanokompozita. Efekat nanokompozita praćenje određivanjem sadržaja kalcijuma i fosfata, kao osnova kristalne rešetke hidroksiapatita. Dobijeni rezultati pokazuju da sintetički CP/PLGA nanokompozit olakšava rehabilitaciju oslabljene alveolarne kosti, pa zahvaljujući svom osteokonduktivnom efektu može u budućnosti biti materijal izbora u zameni koštanog tkiva., The alveolar bone tissue resorption defect has a significant role in dentistry. Because of the bone tissue deficit developed by alveolar resorption, the use of synthetic material CP/PLGA (calcium-phosphate/polylactide-co-gliycolide) composite was introduced. Investigations were performed on rats with artificially produced resorption of the mandibular bone. The results show that the best effect on alveolar bone were attained by using nano-composite implants. The effect of the nanocomposite was ascertained by determining the calcium and phosphate content, as a basis of the hydroxyapatite structure. The results show that synthetic CP/PLGA nanocomposite alleviate the rehabilitation of weakened alveolar bone. Due to its osteoconductive effect, CP/PLGA can be the material of choice for bone substitution in the future.", publisher = "Belgrade : Association of the Chemical Engineers of Serbia", journal = "Hemijska industrija", title = "Uloga sintetičkih biomaterijala u procesu regeneracije resorbovane alveolarne kosti, The role of synthetic biomaterials in resorptive alveolar bone regeneration", pages = "96-100", volume = "61", number = "2", doi = "10.2298/HEMIND0702096K", url = "https://hdl.handle.net/21.15107/rcub_dais_13687" }
Kaličanin, B., Ajduković, Z., Kostić, M., Najman, S., Savić, V.,& Ignjatović, N.. (2007). Uloga sintetičkih biomaterijala u procesu regeneracije resorbovane alveolarne kosti. in Hemijska industrija Belgrade : Association of the Chemical Engineers of Serbia., 61(2), 96-100. https://doi.org/10.2298/HEMIND0702096K https://hdl.handle.net/21.15107/rcub_dais_13687
Kaličanin B, Ajduković Z, Kostić M, Najman S, Savić V, Ignjatović N. Uloga sintetičkih biomaterijala u procesu regeneracije resorbovane alveolarne kosti. in Hemijska industrija. 2007;61(2):96-100. doi:10.2298/HEMIND0702096K https://hdl.handle.net/21.15107/rcub_dais_13687 .
Kaličanin, Biljana, Ajduković, Zorica, Kostić, Milena, Najman, Stevo, Savić, Vojin, Ignjatović, Nenad, "Uloga sintetičkih biomaterijala u procesu regeneracije resorbovane alveolarne kosti" in Hemijska industrija, 61, no. 2 (2007):96-100, https://doi.org/10.2298/HEMIND0702096K ., https://hdl.handle.net/21.15107/rcub_dais_13687 .