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One-shot Nano-device for Treatment of Peri-implantitis: Biological Proof of Concept

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2019
Rakic_CED-IADR-NOF.pdf (938.5Kb)
Аутори
Rakić, Mia
Ignjatović, Nenad
Sanz, Mariano
Конференцијски прилог (Објављена верзија)
Метаподаци
Приказ свих података о документу
Апстракт
Objectives To compare biological effects of experimental nano device composed of nano-hydroxyapatite loaded with clindamycin, embedded in PLGA for continual release of daily MIC against Porphiromonas gingivalis for 21 days bone healing period (CLHap) with effects of nano-hydroxyapatite (Hap) and commercial bone substituent (BioOssÒ). Methods 6 female beagle dogs with similar characteristics underwent teeth extractions, implant placement and ligature induced PI, and were further surgically treated. Following open-flap debridement, the biomaterials were randomly allocated to ensure the serial distribution of antimicrobial material for pharmacokinetic testing of antibiotic systemic release. The biochemical and microbiological markers were compared before disease induction (baseline), before the treatment (pre-op) and 3 months (3m) following treatment. GM-CSF, TNFa, IL-6, IL-10 and OPG concentrations were estimated using Luminex method, while the RT-PCR kit was developed for quantification... of the Porphyromonas gulae. Finally, following animal sacrifice, specimens were retrieved for histological analyses. Following fracture technique, decalcified samples were sectioned and stained for histomorphometric assessment of: apical extension of barrier epithelium (aBE), infiltrated connective tissue (ICT) area and respective apical extension (aICT). Results The pharmacokinetic test confirmed safety of the experimental material according to undetectable blood concentrations of the antibiotic. The concentrations of P. Gulae, GM-CSF, TNFa, OPG, IL-6 and IL-10 significantly decreased following treatment only in CLHap group while in other groups the changes remained insignificant. Both ICT and aICT were significantly lower CLHap when compared to both control groups. Conclusions Results of the present study demonstrated safe and promising treatment capacity of the experimental CLHap for managment of peri-implantitis.

Кључне речи:
peri-implantitis / nanodevices / PLGA
Извор:
Abstract Book / CED-IADR/NOF Oral Health Research Congress, 19-21 September 2019, 2019, 77-78
Издавач:
  • Madrid : [s.n.]
[ Google Scholar ]
URI
https://www.ced-iadr2019.com/Madrid_Abstract_BOOK_Sept_7.pdf
http://dais.sanu.ac.rs/123456789/6984
Колекције
  • ITN SANU - Opšta kolekcija / ITS SASA - General collection
Институција
Институт техничких наука САНУ / Institute of Technical Sciences of SASA
TY  - CONF
AU  - Rakić, Mia
AU  - Ignjatović, Nenad
AU  - Sanz, Mariano
PY  - 2019
UR  - https://www.ced-iadr2019.com/Madrid_Abstract_BOOK_Sept_7.pdf
UR  - http://dais.sanu.ac.rs/123456789/6984
AB  - Objectives To compare biological effects of experimental nano device composed of nano-hydroxyapatite loaded with clindamycin, embedded in PLGA for continual release of daily MIC against Porphiromonas gingivalis for 21 days bone healing period (CLHap) with effects of nano-hydroxyapatite (Hap) and commercial bone substituent (BioOssÒ). Methods 6 female beagle dogs with similar characteristics underwent teeth extractions, implant placement and ligature induced PI, and were further surgically treated. Following open-flap debridement, the biomaterials were randomly allocated to ensure the serial distribution of antimicrobial material for pharmacokinetic testing of antibiotic systemic release. The biochemical and microbiological markers were compared before disease induction (baseline), before the treatment (pre-op) and 3 months (3m) following treatment. GM-CSF, TNFa, IL-6, IL-10 and OPG concentrations were estimated using Luminex method, while the RT-PCR kit was developed for quantification of the Porphyromonas gulae. Finally, following animal sacrifice, specimens were retrieved for histological analyses. Following fracture technique, decalcified samples were sectioned and stained for histomorphometric assessment of: apical extension of barrier epithelium (aBE), infiltrated connective tissue (ICT) area and respective apical extension (aICT). Results The pharmacokinetic test confirmed safety of the experimental material according to undetectable blood concentrations of the antibiotic. The concentrations of P. Gulae, GM-CSF, TNFa, OPG, IL-6 and IL-10 significantly decreased following treatment only in CLHap group while in other groups the changes remained insignificant. Both ICT and aICT were significantly lower CLHap when compared to both control groups. Conclusions Results of the present study demonstrated safe and promising treatment capacity of the experimental CLHap for managment of peri-implantitis.
PB  - Madrid : [s.n.]
C3  - Abstract Book / CED-IADR/NOF Oral Health Research Congress, 19-21 September 2019
T1  - One-shot Nano-device for Treatment of Peri-implantitis: Biological Proof of Concept
SP  - 77
EP  - 78
ER  - 
@conference{
author = "Rakić, Mia and Ignjatović, Nenad and Sanz, Mariano",
year = "2019",
url = "https://www.ced-iadr2019.com/Madrid_Abstract_BOOK_Sept_7.pdf, http://dais.sanu.ac.rs/123456789/6984",
abstract = "Objectives To compare biological effects of experimental nano device composed of nano-hydroxyapatite loaded with clindamycin, embedded in PLGA for continual release of daily MIC against Porphiromonas gingivalis for 21 days bone healing period (CLHap) with effects of nano-hydroxyapatite (Hap) and commercial bone substituent (BioOssÒ). Methods 6 female beagle dogs with similar characteristics underwent teeth extractions, implant placement and ligature induced PI, and were further surgically treated. Following open-flap debridement, the biomaterials were randomly allocated to ensure the serial distribution of antimicrobial material for pharmacokinetic testing of antibiotic systemic release. The biochemical and microbiological markers were compared before disease induction (baseline), before the treatment (pre-op) and 3 months (3m) following treatment. GM-CSF, TNFa, IL-6, IL-10 and OPG concentrations were estimated using Luminex method, while the RT-PCR kit was developed for quantification of the Porphyromonas gulae. Finally, following animal sacrifice, specimens were retrieved for histological analyses. Following fracture technique, decalcified samples were sectioned and stained for histomorphometric assessment of: apical extension of barrier epithelium (aBE), infiltrated connective tissue (ICT) area and respective apical extension (aICT). Results The pharmacokinetic test confirmed safety of the experimental material according to undetectable blood concentrations of the antibiotic. The concentrations of P. Gulae, GM-CSF, TNFa, OPG, IL-6 and IL-10 significantly decreased following treatment only in CLHap group while in other groups the changes remained insignificant. Both ICT and aICT were significantly lower CLHap when compared to both control groups. Conclusions Results of the present study demonstrated safe and promising treatment capacity of the experimental CLHap for managment of peri-implantitis.",
publisher = "Madrid : [s.n.]",
journal = "Abstract Book / CED-IADR/NOF Oral Health Research Congress, 19-21 September 2019",
title = "One-shot Nano-device for Treatment of Peri-implantitis: Biological Proof of Concept",
pages = "77-78"
}
Rakić M, Ignjatović N, Sanz M. One-shot Nano-device for Treatment of Peri-implantitis: Biological Proof of Concept. Abstract Book / CED-IADR/NOF Oral Health Research Congress, 19-21 September 2019. 2019;:77-78
Rakić, M., Ignjatović, N.,& Sanz, M. (2019). One-shot Nano-device for Treatment of Peri-implantitis: Biological Proof of Concept.
Abstract Book / CED-IADR/NOF Oral Health Research Congress, 19-21 September 2019Madrid : [s.n.]., null, 77-78. 
Rakić Mia, Ignjatović Nenad, Sanz Mariano, "One-shot Nano-device for Treatment of Peri-implantitis: Biological Proof of Concept" null (2019):77-78

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