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Search Results (9)

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Keywords = elastomeric ligatures

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15 pages, 3108 KB  
Article
Disinfection Effects on Orthodontic Elastomers: Mechanical Performance and Surface Wettability Considerations
by Klaudia Janiszewska and Aneta Liber-Kneć
Appl. Sci. 2026, 16(17), 8829; https://doi.org/10.3390/app16178829 - 4 Sep 2026
Viewed by 222
Abstract
Background: Various infection control procedures for orthodontic elastomers, including the use of disinfectant solutions and antibacterial mouthwashes, are currently being evaluated to prevent cross-contamination. Objective: This study aimed to compare the effects of ethanol- and glutaraldehyde-based disinfection on the mechanical properties and surface [...] Read more.
Background: Various infection control procedures for orthodontic elastomers, including the use of disinfectant solutions and antibacterial mouthwashes, are currently being evaluated to prevent cross-contamination. Objective: This study aimed to compare the effects of ethanol- and glutaraldehyde-based disinfection on the mechanical properties and surface wettability of selected orthodontic elastomeric materials. Methods: Three categories of polyurethane orthodontic elastomers were evaluated: ligatures (white and navy blue), power chains, and elastomeric thread. Specimens were assigned to control and disinfection groups. Disinfection was performed by immersion in 99.98% ethanol or 10% glutaraldehyde for 30 min. Three sets of specimens were prepared for each product type (n = 5 per group for tensile testing; contact angle measurements were performed using 10 droplets per experimental condition). Following disinfection, specimens were dried and stored under laboratory conditions for 8 days before testing. Surface wettability was assessed using the sessile drop contact angle method, and mechanical properties were evaluated by static tensile testing. Statistical analysis was performed using Welch’s t-test (p ≤ 0.05). Results: The effects of disinfection were product-type-dependent. Significant increases in contact angle were observed for white ligatures, power chains, and elastomeric thread, indicating reduced surface wettability after exposure to the disinfectants. Glutaraldehyde generally produced larger wettability changes than ethanol. Tensile testing revealed significant reductions in maximum tensile force for power chains after both disinfection protocols, whereas navy-blue ligatures showed no significant changes. The response of elastomeric thread differed from that of the other materials, with glutaraldehyde increasing the maximum tensile force. Conclusions: Exposure to ethanol and glutaraldehyde may modify the mechanical and surface properties of orthodontic elastomers; however, the magnitude and direction of these changes depend on the specific product. The findings improve understanding of elastomer behavior following disinfectant exposure under laboratory conditions. Further studies incorporating microbiological assessment, aging procedures, and clinically relevant conditions are needed before definitive recommendations regarding orthodontic disinfection protocols can be established. Full article
(This article belongs to the Special Issue Recent Advancements in Novel Dental Materials)
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32 pages, 809 KB  
Review
Antibacterial Interventions for Orthodontic Appliances; Surface Modifications, Coatings and Bulk-Incorporated Antibacterial Agents: Materials, Mechanisms and Clinical Application—A Scoping Review
by Berta Furió-Alonso, Javier Gil, Danica Nikolic Jovanovic and Andreu Puigdollers-Pérez
Materials 2026, 19(17), 3644; https://doi.org/10.3390/ma19173644 - 27 Aug 2026
Viewed by 408
Abstract
Biofilm accumulation on orthodontic appliances is a recognized risk factor for white spot lesion formation and caries during treatment. Antibacterial surface modifications and coating strategies have been proposed as appliance-level preventive approaches. Studied interventions in the literature span true thin-film surface coatings, plasma-based [...] Read more.
Biofilm accumulation on orthodontic appliances is a recognized risk factor for white spot lesion formation and caries during treatment. Antibacterial surface modifications and coating strategies have been proposed as appliance-level preventive approaches. Studied interventions in the literature span true thin-film surface coatings, plasma-based and ion-implantation surface modifications, and bulk-incorporated antibacterial agents in appliance matrix materials. Yet the extent to which in vitro efficacy translates to clinically meaningful protection remains unresolved. This PRISMA-ScR-compliant scoping review searched PubMed/MEDLINE, Scopus, Web of Science, Cochrane Library, and Google Scholar, identifying 109 eligible studies: 96 in vitro, 8 in vivo animal studies and 5 clinical trials, covering brackets, archwires, clear aligners, bands, miniscrews, elastomeric ligatures, and removable appliances, some articles studied multiple types of appliances. In vitro studies consistently demonstrated significant reductions in bacterial adhesion and biofilm formation across all appliance types, with silver-based coatings and nitrogen-doped TiO2 showing the broadest evidence base; combination systems (Ag/ZnO, CuO-ZnO) outperformed individual agents. The 13 in vivo and clinical studies provided limited but directionally supportive evidence: silver nanoparticle-incorporated acrylic retainers reduced S. mutans counts in a double-blind RCT, and silver-infiltrated tungsten material-maintained biofilm reduction after simulated two-year abrasion. Coating durability emerged as an important determinant of potential clinical translation. Surface-deposited thin-film coatings degraded substantially within one month of intraoral use, whereas substrate-integrated approaches showed greater longevity. This scoping review maps the current evidence landscape, identifies coating durability and clinical endpoint validation as critical gaps, and prioritizes silver-based and nitrogen-doped TiO2 coatings for future randomized clinical trials. Full article
(This article belongs to the Section Biomaterials)
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18 pages, 290 KB  
Review
Usage of Silver Nanoparticles in Orthodontic Appliances
by Meigan Niu, Janet Jisoo Lee, Geelsu Hwang, Chun-Hsi Chung, Mark S. Wolff, Zhong Zheng and Chenshuang Li
Materials 2026, 19(1), 115; https://doi.org/10.3390/ma19010115 - 29 Dec 2025
Cited by 1 | Viewed by 1118
Abstract
Orthodontic treatment, offering significant benefits for oral function and facial aesthetics, is in high demand among both adolescent and adult populations. Orthodontic appliances pose challenges for maintaining oral hygiene and increase the risk of dental and periodontal diseases. With advances in dental materials [...] Read more.
Orthodontic treatment, offering significant benefits for oral function and facial aesthetics, is in high demand among both adolescent and adult populations. Orthodontic appliances pose challenges for maintaining oral hygiene and increase the risk of dental and periodontal diseases. With advances in dental materials and the use of nanoparticles, a significant amount of research has focused on modifying orthodontic appliances with nanoparticles to reduce bacterial adhesion and biofilm formation. Silver nanoparticles are one of the most popular antibacterial materials in medical research. This article presents current evidence on silver nanoparticle-incorporated orthodontic appliances, including brackets, molar bands, archwires, elastomeric ligatures, mini-implants, and acrylic retainers. Silver nanoparticles and modified silver nanoparticles exhibit robust antibacterial activity when applied to the surfaces of orthodontic appliances. However, there are exceptions in which, on a few orthodontic appliances, the silver nanoparticle incorporation actually increased biofilm formation. Moreover, a silver nanoparticle incorporation may introduce adverse effects, such as cytotoxicity, and increase surface roughness. It is also worth noting that most of the studies were conducted in vitro. Long-term clinical studies are necessary to evaluate the stability, safety, and clinical efficacy of silver nanoparticle-incorporated orthodontic appliances under real-world conditions. Full article
(This article belongs to the Special Issue Materials for Dentistry: Experiments and Practice)
18 pages, 5033 KB  
Article
New Generation of Orthodontic Elastomeric Ligature to Prevent Enamel Demineralization In Vivo
by Ce Bian, Menghao Lyu, Mengyao Zhu, Chaoran Yu, Yiman Guo, Michael D. Weir, Radi Masri, Yuxing Bai, Hockin H. K. Xu and Ning Zhang
Int. J. Mol. Sci. 2024, 25(15), 8409; https://doi.org/10.3390/ijms25158409 - 1 Aug 2024
Cited by 1 | Viewed by 3215
Abstract
This study aimed to synthesize a novel elastomeric ligature with dimethylaminohexadecyl methacrylate (DMAHDM) grafted, providing a new strategy for improving the issue of enamel demineralization during fixed orthodontics. DMAHDM was incorporated into elastomeric ligatures at different mass fractions using ultraviolet photochemical grafting. The [...] Read more.
This study aimed to synthesize a novel elastomeric ligature with dimethylaminohexadecyl methacrylate (DMAHDM) grafted, providing a new strategy for improving the issue of enamel demineralization during fixed orthodontics. DMAHDM was incorporated into elastomeric ligatures at different mass fractions using ultraviolet photochemical grafting. The antibacterial properties were evaluated and the optimal DMAHDM amount was determined based on cytotoxicity assays. Moreover, tests were conducted to evaluate the in vivo changes in the mechanical properties of the elastomeric ligatures. To assess the actual in vivo effectiveness in preventing enamel demineralization, a rat demineralization model was established, with analyses focusing on changes in surface microstructure, elemental composition, and nanomechanical properties. Elastomeric ligatures with 2% DMAHDM showed excellent biocompatibility and the best antibacterial properties, reducing lactic acid production by 65.3% and biofilm bacteria by 50.0% within 24 h, without significant mechanical property differences from the control group (p > 0.05). Most importantly, they effectively prevented enamel demineralization in vivo, enhancing elastic modulus by 73.2% and hardness by 204.8%. Elastomeric ligatures incorporating DMAHDM have shown great potential for application in preventing enamel demineralization, providing a new strategy to solve this issue during fixed orthodontics. Full article
(This article belongs to the Section Biochemistry)
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17 pages, 9013 KB  
Article
Synthesis and Characterization of a Sustained Nitric Oxide-Releasing Orthodontic Elastomeric Chain for Antimicrobial Action
by Alec McDonald, Carly Warden, Jinlian Tan, Kellianne M. Piell, Jill M. Steinbach-Rankins, Nandakumar Janakiraman, David A. Scott, Marsha P. Cole and Sudha Gudhimella
Int. J. Mol. Sci. 2024, 25(13), 6982; https://doi.org/10.3390/ijms25136982 - 26 Jun 2024
Cited by 3 | Viewed by 2613
Abstract
The acidic byproducts of bacteria in plaque around orthodontic brackets contribute to white spot lesion (WSL) formation. Nitric oxide (NO) has antibacterial properties, hindering biofilm formation and inhibiting the growth of oral microbes. Materials that mimic NO release could prevent oral bacteria-related pathologies. [...] Read more.
The acidic byproducts of bacteria in plaque around orthodontic brackets contribute to white spot lesion (WSL) formation. Nitric oxide (NO) has antibacterial properties, hindering biofilm formation and inhibiting the growth of oral microbes. Materials that mimic NO release could prevent oral bacteria-related pathologies. This study aims to integrate S-nitroso-acetylpenicillamine (SNAP), a promising NO donor, into orthodontic elastomeric ligatures, apply an additional polymer coating, and evaluate the NO-release kinetics and antimicrobial activity against Streptococus mutans. SNAP was added to clear elastomeric chains (8 loops, 23 mm long) at three concentrations (50, 75, 100 mg/mL, and a control). Chains were then coated, via electrospinning, with additional polymer (Elastollan®) to aid in extending the NO release. NO flux was measured daily for 30 days. Samples with 75 mg/mL SNAP + Elastollan® were tested against S. mutans for inhibition of biofilm formation on and around the chain. SNAP was successfully integrated into ligatures at each concentration. Only the 75 mg/mL SNAP chains maintained their elasticity. After polymer coating, samples exhibited a significant burst of NO on the first day, exceeding the machine’s reading capacity, which gradually decreased over 29 days. Ligatures also inhibited S. mutans growth and biofilm formation. Future research will assess their mechanical properties and cytotoxicity. This study presents a novel strategy to address white spot lesion (WSL) formation and bacterial-related pathologies by utilizing nitric oxide-releasing materials. Manufactured chains with antimicrobial properties provide a promising solution for orthodontic challenges, showing significant potential for academic-industrial collaboration and commercial viability. Full article
(This article belongs to the Special Issue Antimicrobial Biomaterials: Recent Progress)
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14 pages, 1783 KB  
Article
Effectiveness of a Combined Toothbrushing Technique on Cariogenic Dental Biofilm in Relation to Stainless Steel and Elastomeric Ligatures in Orthodontic Patients: A Randomized Clinical Trial
by Thanakorn Saengphen, Sittichai Koontongkaew and Kusumawadee Utispan
Healthcare 2023, 11(5), 731; https://doi.org/10.3390/healthcare11050731 - 2 Mar 2023
Cited by 2 | Viewed by 4049
Abstract
Increased dental biofilm commonly occurs during orthodontic treatment. The aim of this study was to evaluate the effect of a combined toothbrushing method on dental biofilm cariogenicity in patients with stainless steel (SSL) and elastomeric (EL) ligatures. At baseline (T1), 70 participants were [...] Read more.
Increased dental biofilm commonly occurs during orthodontic treatment. The aim of this study was to evaluate the effect of a combined toothbrushing method on dental biofilm cariogenicity in patients with stainless steel (SSL) and elastomeric (EL) ligatures. At baseline (T1), 70 participants were randomized (1:1 ratio) to the SSL or EL group. Dental biofilm maturity was evaluated using a three-color-disclosing dye. The participants were instructed to brush their teeth using a combined horizontal–Charters–modified Bass technique. Dental biofilm maturity was reassessed at the 4-week follow-up (T2). We found that at T1, new dental biofilm was the highest, followed by mature and cariogenic dental biofilm in the SSL group (p < 0.05). In the EL group, cariogenic dental biofilm was highly observed, followed by mature and new dental biofilm (p < 0.05). After intervention, cariogenic dental biofilm significantly decreased in both groups (p < 0.05). Moreover, a marked decrease in cariogenic dental biofilm was observed in the EL group compared with the SSL group (p < 0.05). However, the change in mature dental biofilm in the groups was similar (p > 0.05). Our results demonstrated that the combined toothbrushing method reduced cariogenic dental biofilm in the SSL and EL groups. Full article
(This article belongs to the Section Health Assessments)
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15 pages, 965 KB  
Review
White Spot Lesions (WSLs)—Post-Orthodontic Occurrence, Management and Treatment Alternatives: A Narrative Review
by Luminita Lazar, Alexandru Vlasa, Liana Beresescu, Anamaria Bud, Ana Petra Lazar, Larisa Matei and Eugen Bud
J. Clin. Med. 2023, 12(5), 1908; https://doi.org/10.3390/jcm12051908 - 28 Feb 2023
Cited by 49 | Viewed by 11343
Abstract
Although treatment with fixed or mobile appliances has become an important part of modern orthodontics, side effects such as white spot lesions (WSLs) have a negative impact on the aesthetic outcome of orthodontic treatment. The purpose of this article was to review current [...] Read more.
Although treatment with fixed or mobile appliances has become an important part of modern orthodontics, side effects such as white spot lesions (WSLs) have a negative impact on the aesthetic outcome of orthodontic treatment. The purpose of this article was to review current evidence on the diagnosis, risk assessment, prevention, management and post-orthodontic treatment of these lesions. Data collection was performed electronically, and the initial search using the keywords “white spot lesions”, “orthodontics”, “WSL”, “enamel” and “demineralization” in different combinations resulted in 1032 articles for the two electronic databases used. Ultimately, a total of 47 manuscripts were considered relevant to the aim of this research and included in this review. The results of the review indicate that WSLs remain a significant problem during orthodontic treatment. According to studies in the literature, the severity of WSLs correlates to the duration of treatment. Using toothpaste with more than 1000 ppm fluoride at home reduces the frequency of WSL separation and regular application of varnishes in the office reduces the frequency of the occurrence of WSLs only in the context of maintaining a strict hygiene regime. The old hypothesis that elastomeric ligatures retain more dental plaque than metal ones has been refuted. There are no differences in the appearance of WSLs between conventional brackets and self-ligating brackets. Clear aligner mobile devices develop fewer WSLs but are more extensive as opposed to conventional fixed devices, while lingual orthodontic appliances have a lower incidence of WSLs, and the most effective device for preventing these lesions is WIN, followed by Incognito. Full article
(This article belongs to the Special Issue Clinical Advances in Cosmetic Dentistry)
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13 pages, 297 KB  
Review
The Oral Microbiota Changes in Orthodontic Patients and Effects on Oral Health: An Overview
by Maria Contaldo, Alberta Lucchese, Carlo Lajolo, Cosimo Rupe, Dario Di Stasio, Antonio Romano, Massimo Petruzzi and Rosario Serpico
J. Clin. Med. 2021, 10(4), 780; https://doi.org/10.3390/jcm10040780 - 16 Feb 2021
Cited by 108 | Viewed by 10260
Abstract
Nowadays, there is a considerable interest to study the biological and microbiological changes that accompany orthodontic treatment. Growing knowledge on oral microbiota allows, day after day, to identify and characterize the microbial arrangements specifically associated with oral and extra-oral conditions. The aim of [...] Read more.
Nowadays, there is a considerable interest to study the biological and microbiological changes that accompany orthodontic treatment. Growing knowledge on oral microbiota allows, day after day, to identify and characterize the microbial arrangements specifically associated with oral and extra-oral conditions. The aim of the present work is to highlight any further correlations between orthodontic appliances and the qualitative and quantitative modifications of the oral microbiota, such as predisposing factors for the onset of caries, periodontal diseases, and other infections, which can impact the oral and systemic health of the orthodontic patients. When compared with subjects without orthodontic appliances, orthodontic patients reported significant qualitative and quantitative differences in supra- and subgingival plaque during the entire treatment period. Certain components of fixed appliances (mainly bonded molar brackets, ceramic brackets, and elastomeric ligatures) showed high risks of periodontal disease and tooth decay for patients. An unclear prevalence of Candida spp. and the paucity of studies on viruses and protozoas in the oral microbiota of orthodontic patients need to be further investigated. The evidence emerging from this study could guide clinicians in modulating the timing of controls and enhance patient motivation to prevent the formation of mature plaque, thus reducing the risks of oral-plaque-related diseases. Full article
(This article belongs to the Special Issue New Approaches and Technologies in Orthodontics)
10 pages, 1142 KB  
Review
Application of Nanotechnology in Orthodontic Materials: A State-of-the-Art Review
by Alberto De Stefani, Giovanni Bruno, Giorgia Preo and Antonio Gracco
Dent. J. 2020, 8(4), 126; https://doi.org/10.3390/dj8040126 - 9 Nov 2020
Cited by 35 | Viewed by 7451
Abstract
Nanotechnology refers to the science that manipulates matter at molecular and atomic levels, and studies matter at the nanoscale level to detect and exploit the useful properties that derive from these dimensions; materials with components less than 100 nm in at least one [...] Read more.
Nanotechnology refers to the science that manipulates matter at molecular and atomic levels, and studies matter at the nanoscale level to detect and exploit the useful properties that derive from these dimensions; materials with components less than 100 nm in at least one dimension are called nanomaterials. Nanotechnology is applied in many fields, such as medicine (nanomedicine) and dentistry (nano-dentistry). The purpose of these innovations and research in this field is to improve human life and health. This article aims to summarize and describe what the most recent and known innovations of nanotechnology in dentistry are, focusing on and paying particular attention to the branch that is orthodontics, and on the application of new nanomaterials in the realization, for example, of orthodontic elastomeric ligatures, orthodontic power chains, and orthodontic miniscrews. We also address a very important topic in orthodontics, which is how to reduce the friction force. Full article
(This article belongs to the Special Issue Applied Science and Technology in Orthodontics)
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