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Antimicrobial Efficacy of Pelargonium Graveolens Gold Nanoparticles: A Novel Mouthwash for Children
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ABSTRACT<sec> <title>Background

Nowadays, there is a trend to promote the use of natural materials in dentistry. One of these compounds that has lately grown significantly in relevance in clinical research is Pelargonium Graveolens .

Objectives

This study was conducted to evaluate the antimicrobial efficacy of gold nanoparticles (AuNPs) of Pelargonium Graveolens leaves extract for children in comparison with the commonly used chlorhexidine. There are no previously available studies concerning the anti‐microbial activity of Pelargonium Graveolens leaves.

Materials and Method

Sixty participants with mild to moderate gingivitis were randomly allocated in a ratio of 1:1 to receive twice‐daily mouthwash for 3 weeks (30 with a novel herbal mouthwash containing Pelargonium Graveolens AuNPs as a study group and 30 children with chlorhexidine as a control group). Clinical parameters (plaque index and gingival index) were assessed at the baseline (before the use of mouthwash), and then they were assessed 3 times at one‐week intervals after the first assessment through the period of the study. On the other hand, microbiological examination was done using supragingival plaque sampling with a curette for those participants at the baseline and three weeks after the use of the mouthwash.

Results

After completing the intervention, although the study group had lower plaque scores compared to the control group, the difference was statistically significant. On the other hand, the study group had a significant reduction in the gingival index scores compared to the control group ( p  = 0.000). The microbiological analysis revealed that the treatment mouthwash significantly depleted the count of S. mutans in the last visit.

Conclusion

The novel Pelargonium Graveolens AuNPs mouthwash was effective in improving (PI) and (GI), which mean improve oral health status. Rinsing with Pelargonium Graveolens AuNPs mouthwash reduced the count of oral Streptococcus mutans significantly in children. Clinical trial registration Number: ClinicalTrials.gov on April 15, 2023, with ClinicalTrials.gov ID: NCT05816512.

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Publication Date
Sun Jun 21 2020
Journal Name
Baghdad Science Journal
Synthesis of Gold Nanoparticles by using Batch Method and Study its Antibacterial Activity
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The research involves preparing gold nanoparticles (AuNPs) and studying the factors that influence the shape, sizes and distribution ratio of the prepared particles according to Turkevich method. These factors include (reaction temperature, initial heating, concentration of gold ions, concentration and quantity of added citrate, reaction time and order of reactant addition). Gold nanoparticles prepared were characterized by the following measurements: UV-Visible spectroscopy, X-ray diffraction and scanning electron microscopy. The average size of gold nanoparticles was formed in the range (20 -35) nm. The amount of added citrate was changed and studied. In addition, the concentration of added gold ions was changed and the calibration cur

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Sun Jan 01 2023
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Technologies And Materials For Renewable Energy, Environment, And Sustainability: Tmrees23fr
Effect of gold nanoparticles synthesis by plasma jet scheme on normal cell lines
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New evidence on nanotechnology has shown interest in the creation and assessment of nanoparticles for cancer treatment. Worldwide, a wide range of tumor-targeted approaches are being developed to reduce side effects and boost the efficacy of cancer therapy. One strategy that shows promise is the use of metallic nanoparticles to increase the radio sensitization of the cancer cells while reducing or maintaining the normal tissue complication probability during radiation therapy. In this study, atmospheric plasma was created using argon gas to create Au NPs using the plasma jet scheme, and their ability to induce apoptosis as an anticancer mechanism was tested. Aqueous gold tetrachloride salts (HAuCl4·3H2O) ere used to produce gold nanopartic

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Publication Date
Thu Jan 20 2022
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Journal Of Clinical Medicine
Comparison of the Safety and Efficacy of Laser Versus Pneumatic Intracorporeal Lithotripsy for Treatment of Bladder Stones in Children
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Publication Date
Sun Jan 01 2023
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The Antimicrobial Activity of Melanin-Mediated Synthesis of Silver Nanoparticles
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Background: Nowadays, the environmentally friendly procedures must be developed to avoid using harmful compounds in synthesis methods. Their increase interest in creating and researching silver nanoparticles (AgNPs) because of their numerous applications in many fields especially medical fields such as burn, wound healing, dental and bone implants, antibacterial, viral, fungal, and arthropodal activities. Biosynthesis of nanoparticles mediated pigments have been widely used as antimicrobial agent against microorganisms. Silver nanoparticles had synthesized by using melanin from locally isolate Pseudomonas aeruginosa, and used as antimicrobial activity against pathogenic microorganisms. Aim of the study: Isolation of Pseudomonas aeruginosa

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Efficacy of silver nanoparticles from Fusarium solani and mycorrhizal inoculation for biological control of Fusarium wilt in tomato
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The present study investigates the characterization of silver nanoparticles (AgNPs) synthesized using Fusarium solani and their impact on tomato seed germination, plant growth, and disease resistance. A visible color change from yellow to dark smoky indicated the formation of AgNPs, while UV-visible spectrophotometry revealed an absorbance peak at 437 nm, confirming their presence. Atomic force microscopy analysis showed that the AgNPs ranged from 0 to 39.27 nm in size, with an average height of 5.772 nm, while scanning electron microscopy highlighted their diverse surface morphology. The application of AgNPs and mycorrhizal fungi significantly improved tomato seed germination rates, plant height, and dry weight compared to untreate

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Tue Aug 30 2022
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Study the effect of biosynthesized gold nanoparticles on the enzymatic activity of alpha-Amylase
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Publication Date
Thu Dec 21 2023
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Antimicrobial resistance is one of the most significant threats to public health worldwide. As opposed to using traditional antibiotics, which are effective against diseases that are multidrug-resistant, it is vital to concentrate on the most innovative antibacterial compounds. These innate bacterial arsenals under the term «bacteriocins» refer to low-molecularweight, heat-stable, membrane-active, proteolytically degradable, and pore-forming cationic peptides. Due to their ability to attack bacteria, viruses, fungi, and biofilm, bacteriocins appear to be the most promising, currently accessible alternative for addressing the antimicrobial resistance (AMR) problem and minimizing the negative effects of antibiotics on the host’s m

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Hydrogen peroxide biosensor based on hemoglobin-modified gold nanoparticles–screen printed carbon electrode
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STUDY THE EFFICACY OF TITANIUM OXIDE (TIO2) NANOPARTICLES AGAINST PROTOSCOLICES OF HYDATID CYSTS
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