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Alexandria Dental Journal
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Journal Archive
Volume Volume 50 (2025)
Volume Volume 49 (2024)
Issue Issue 3
A (Oral and maxillofacial surgery, oral medicine, periodontology, oral radiology, oral pathology, oral biology)
Issue Issue 3
B (Endodontics, Prosthodontics, Fixed prosthodontics, Conservative dentistry, Dental Biomaterials)
Issue Issue 3
C (Pediatric dentistry, Dental public health, Orthodontics)
Issue Issue 2
A (Oral and maxillofacial surgery, oral medicine, periodontology, oral radiology, oral pathology, oral biology)
Issue Issue 2
B (Endodontics, Prosthodontics, Fixed prosthodontics, Conservative dentistry, Dental Biomaterials)
Issue Issue 2
C (Pediatric dentistry, Dental public health, Orthodontics)
Issue Issue 1
A (Oral and maxillofacial surgery, oral medicine, periodontology, oral radiology, oral pathology, oral biology)
Issue Issue 1
B (Endodontics, Prosthodontics, Fixed prosthodontics, Conservative dentistry, Dental Biomaterials)
Issue Issue 1
C (Pediatric dentistry, Dental public health, Orthodontics)
Volume Volume 48 (2023)
Volume Volume 47 (2022)
Volume Volume 46 (2021)
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Volume Volume 44 (2019)
Volume Volume 43 (2018)
Volume Volume 42 (2017)
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Volume Volume 40 (2015)
ali, A., Elshabrawy, S., Kamoun, E. (2024). CHARACTERIZATION AND TENSILE STRENGTH EVALUATION OF CHITOSAN SCAFFOLDS INCORPORATED WITH GRAPHENE OXIDE NANOPARTICLES (IN-VITRO STUDY). Alexandria Dental Journal, 49(3), 128-134. doi: 10.21608/adjalexu.2023.222527.1396
asmaa M ali; Sonia morsy Elshabrawy; Elbadawy Abdelaziz Kamoun. "CHARACTERIZATION AND TENSILE STRENGTH EVALUATION OF CHITOSAN SCAFFOLDS INCORPORATED WITH GRAPHENE OXIDE NANOPARTICLES (IN-VITRO STUDY)". Alexandria Dental Journal, 49, 3, 2024, 128-134. doi: 10.21608/adjalexu.2023.222527.1396
ali, A., Elshabrawy, S., Kamoun, E. (2024). 'CHARACTERIZATION AND TENSILE STRENGTH EVALUATION OF CHITOSAN SCAFFOLDS INCORPORATED WITH GRAPHENE OXIDE NANOPARTICLES (IN-VITRO STUDY)', Alexandria Dental Journal, 49(3), pp. 128-134. doi: 10.21608/adjalexu.2023.222527.1396
ali, A., Elshabrawy, S., Kamoun, E. CHARACTERIZATION AND TENSILE STRENGTH EVALUATION OF CHITOSAN SCAFFOLDS INCORPORATED WITH GRAPHENE OXIDE NANOPARTICLES (IN-VITRO STUDY). Alexandria Dental Journal, 2024; 49(3): 128-134. doi: 10.21608/adjalexu.2023.222527.1396

CHARACTERIZATION AND TENSILE STRENGTH EVALUATION OF CHITOSAN SCAFFOLDS INCORPORATED WITH GRAPHENE OXIDE NANOPARTICLES (IN-VITRO STUDY)

Article 5, Volume 49, Issue 3, December 2024, Page 128-134  XML PDF (384.77 K)
Document Type: Original Article
DOI: 10.21608/adjalexu.2023.222527.1396
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Authors
asmaa M ali email 1; Sonia morsy Elshabrawy2; Elbadawy Abdelaziz Kamoun3
1kafr elsheikh university
2Dental Biomaterials Department, Faculty of Dentistry, Alexandria University, Alexandria, Egypt
3Polymeric Materials Research Department, City of Scientific Research and Technological Applications, Alexandria, Egypt Nanotechnology Research Center (NTRC), The British University in Egypt, Cairo, Egypt.
Abstract
ABSTRACT
Introduction: Chitosan (CTS) has been a popular option for scaffold fabrication because of its biocompatibility, biodegradability, antimicrobial and nonimmunogenic effects. However, it is of limited function, due to its low mechanical strength and its solubility in acidified media. These limitations could be overcome by its blending with other polymers like polyvinyl alcohol (PVA) and incorporation of other bioactive material such as carbon-based nanomaterials like graphene oxide (GO) to improve its mechanical properties and tissue regeneration capability.
Objective: Evaluation of the tensile strength of CTS-PVA-GO nanocomposites with different ratios of scaffold composition of CTS and GO
Methods: GO nanoparticles were chemically prepared and characterized. Different concentrations of both CTS and nano-GO were used for fabrication of CTS/PVA/GO nanocomposite films through the solvent casting method. Tensile strength of the nanocomposite films was assessed after characterization by FTIR and SEM.
Results: Groups were compared using Kruskal Wallis test followed by Dunn’s post hoc test. There was no significant difference in tensile strength between the nanocomposite films of CTS (2%) and CTS (3%). The tensile strength decreased after addition of nano-GO at different concentrations.
Conclusions: Obtaining the best mechanical properties of CTS/PVA/GO nanocomposite scaffold for dental hard tissue engineering requires low concentrations of CTS (less than 2%) without increasing the GO concentration above 1% to prevent its aggregation.
Keywords
Keywords: Chitosan; Polyvinyl alcohol; Graphene oxide nanoparticles Tensile strength
Main Subjects
Dental biomaterials
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