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To assess the long term effects of zinc oxide (ZnO) nanoparticle coated elastomeric modules on S. mutans concentration and enamel mineralization among orthodontic patients over a period of one year. A total of 16 patients were recruited for this study. Either the left or right maxillary lateral incisor received the coated module. Group I : ZnO coated elastomeric modules (N = 16); Group II: Non-coated elastomeric modules (N = 16). S. mutans in plaque was assessed at the end of 3 months and one year using Rt -PCR. Enamel mineralization was assessed by laser fluorescence at the end of one year. Integrity of the ZnO nanoparticle coating over a period of one month on a weekly basis was also assessed. Independent t-test was done to find the significant difference between the bivariate samples and intra-group comparison was done using paired t-test. Pearson's correlation was done to determine the relationship between the variables. For all the statistical tests, p < 0.05 was considered to be statistically significant. S. mutans concentration at the end of three months and one year was higher in the non-coated group compared to the coated group but it was statistically significant only at the end of one year (p value = 0.032). Laser fluorescence values was higher for the non-coated group compared to the coated group which showed statistical significance (p = 0.020). ZnO coating of the modules showed evidence of disintegration of the coating after two weeks, with further deterioration of the coating at the end of one month. As elastomeric modules are changed periodically, this appears to be a viable option, especially since the nanoparticle release would be around the most common area of plaque retention.
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http://dx.doi.org/10.1038/s41598-025-11709-0 | DOI Listing |
Sci Rep
July 2025
Department of Orthodontics & Dentofacial Orthopaedics Associate Dean Research, Sri Ramachandra Institute of Higher Education and Research, Chennai, India.
To assess the long term effects of zinc oxide (ZnO) nanoparticle coated elastomeric modules on S. mutans concentration and enamel mineralization among orthodontic patients over a period of one year. A total of 16 patients were recruited for this study.
View Article and Find Full Text PDFJ Pharm Bioallied Sci
June 2025
Department of Orthodontics and Dentofacial Orthopedics, Dayananda Sagar College of Dental Sciences, Bangalore, Karnataka, India.
Introduction: Sustainability in orthodontics is gaining prominence as the field seeks eco-friendly alternatives to conventional practices.
Materials And Methods: This paper presents an innovative device designed to aid in the placement of orthodontic elastics, crafted entirely from commonly discarded clinical materials-unused portions of elastomeric modules and stainless steel rectangular wire. By repurposing these materials, the device not only addresses the practical challenge of elastic placement but also exemplifies the "best out of waste" concept, promoting resource efficiency and waste reduction.
J Orthod Sci
June 2025
Department of Oral Medicine and Radiology, Saraswati Dhanwantari Dental College and Hospital and Post-Graduate Research Institute, Parbhani, Maharashtra, India.
Objective: Literature suggests that the mode of ligation and use of elastomeric chains for achieving orthodontic space closure may result in a significant increase in microbial colonisation. The objective of the present study was to evaluate and compare the rates of microbial colonization on nickel-titanium (NiTi) closed-coil springs and active tie-backs used for orthodontic space closure in the maxillary premolar extraction site.
Materials And Methods: Thirty-two participants, including 14 males and 18 females, were enrolled in the present split-mouth study.
Small
March 2025
Engineering Research Center of Advanced Rare Earth Materials, (Ministry of Education), Department of Chemistry, Tsinghua University, Beijing, 100084, China.
Meticulous engineering and the yielded hyperelastic performance of structural proteins represent a new frontier in developing next-generation functional biomaterials. These materials exhibit outstanding and programmable mechanical properties, including elasticity, resilience, toughness, and active biological characteristics, such as degradability and tissue repairability, compared with their chemically synthetic counterparts. However, there are several critical issues regarding the preparation approaches of hyperelastic protein-based materials: limited natural sequence modules, non-hierarchical assembly, and imbalance between compressive and tensile elasticity, leading to unmet demands.
View Article and Find Full Text PDFAdv Healthc Mater
March 2025
Rubber Technology Centre, Indian Institute of Technology Kharagpur, Kharagpur, 721302, India.
Lack of timely prognosis of cardiovascular condition (CVC) is resulting in increased mortality across the globe. Currently, available techniques are confined to medical facilities and need the intervention of specialists. Frequently, this impedes timely treatment, driven by socioeconomic factors.
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