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Periodontitis clinical trials

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NCT ID: NCT05928546 Not yet recruiting - Inflammation Gum Clinical Trials

Effect of Quercetin in Treatment of Periodontitis

Start date: February 20, 2024
Phase: Phase 1
Study type: Interventional

Periodontitis is an immune-inflammatory disease affecting the supporting structures of the teeth. It is a disease of multifactorial etiology, with microbial, genetic, environmental and host factors involved, with the release of oxygen-free radicals by the inflammatory cells. Quercetin, have shown potential antimicrobial activity, lowering of inflammatory markers, cholesterol reduction and inhibiting bone loss. However, this data has largely been obtained from in vitro and animal studies, but data from human studies are limited.

NCT ID: NCT05926999 Completed - Periodontitis Clinical Trials

Conversational AI Models in Periodontitis Classification

Start date: June 25, 2023
Phase:
Study type: Observational [Patient Registry]

The goal of this observational study is to test periodontitis classification ability of ChatCPT. The main questions it aims to answer are: question 1: Could ChatCPT classify periodontitis? question 2: Is there a better result if ChatCPT is trained for perodontitis classification?

NCT ID: NCT05924828 Completed - Periodontitis Clinical Trials

sTREM-1, sTREM-2, Presepsin, and Periodontitis

Start date: August 1, 2023
Phase:
Study type: Observational

The goal of this observational study is to compare saliva sTREM-1, sTREM-2, Presepsin levels and sTREM-1/sTREM-2 ratio of participants with/without periodontitis. The main question it aims to answer is there a relationship between saliva sTREM-1, sTREM-2, Presepsin levels, sTREM-1/sTREM-2 ratio and periodontitis. Participants will give saliva samples without any intervention

NCT ID: NCT05924373 Recruiting - Periodontitis Clinical Trials

Human Dental Pulp Mesenchymal Stem Cells for the Treatment of Chronic Periodontitis Patients

Start date: November 27, 2023
Phase: Phase 2
Study type: Interventional

The primary objective:To evaluate the efficacy of different administration protocols of human dental pulp mesenchymal stem cells for the treatment of chronic periodontitis patients. The secondary objective:To evaluate the safety of different administration protocols of human dental pulp mesenchymal stem cells for the treatment of chronic periodontitis patients. The exploratory objective:To investigate the effects of human dental pulp mesenchymal stem cells on biomarkers in gingival crevicular fluid in chronic periodontitis patients.

NCT ID: NCT05908929 Completed - Periodontitis Clinical Trials

PRF Therapy for Pocket Reduction

Start date: September 15, 2022
Phase: N/A
Study type: Interventional

Periodontal regenerative therapy has focused on various non-surgical and surgical treatment methods. Platelet-rich fibrin (PRF) has shown to possess multiple uses, including properties that promote healing of both soft and hard tissues. In the present study, we hypothesized that the addition of PRF into periodontal pockets, as an adjunct to conventional scaling and root planing (SRP), would enhance the outcomes of non-surgical periodontal therapy. This split-mouth randomized controlled clinical trial included 26 periodontal pocket sites in 13 patients with periodontitis. The pockets were randomly assigned as either test or control sites. In the test group, PRF was placed as an adjunct to SRP, while the control group received SRP alone. Probing pocket depths (PPD), clinical attachment levels (CAL), gingival recession (GR), plaque index (PI), and gingivitis index (GI) were measured at baseline and at six weeks. The wound healing index was measured during the six-week follow-up period.

NCT ID: NCT05907161 Recruiting - Periodontitis Clinical Trials

Low Laser Therapy and Hyaluronic Acid as an Adjunct to Non-surgical Periodontal Therapy

Start date: June 9, 2023
Phase: N/A
Study type: Interventional

Periodontal disease is an oral disease characterized by microbially associated, host-mediated inflammation of the periodontium. In the treatment of periodontal disease, conventional periodontal therapy includes both surgical and non-surgical approaches. Non-surgical therapy (i.e. scaling and root planing - SRP) remains an essential part of periodontal therapy. Here, diseased root surface debridement utilizing different hand and ultrasonic instrumentation is performed to facilitate periodontal re-attachment and to reduce the bacterial mass in the periodontal pocket. In the last decade, the use of lasers (light amplification by stimulated emission of radiation) has occupied part of the dialogue within periodontology due to several proposed advantages. In the arena of periodontology, laser use, as an adjunct to non-surgical therapy, was demonstrated to enhance periodontal healing; however, it is still the matter of debate. Among laser applications, low-level laser therapy is recommended for its pain-reducing, woundhealing and anti-inflammatory effects. Hyaluronic acid is a non-sulfated glycosaminoglycan and a major component of the extracellular matrix. It is found in various body fluids, such as gingival crevicular fluid, saliva, serum and synovial fluid. Anti-inflammatory, anti-edematous and anti-bacterial activities of hyaluronic acid have been investigated in dentistry, specially in periodontology.

NCT ID: NCT05906797 Completed - Atherosclerosis Clinical Trials

Impact of Non-surgical Periodontal Therapy in the Improvement of Early Endothelial Dysfunction in Subjects With Periodontitis.

Start date: September 7, 2020
Phase: N/A
Study type: Interventional

A double-blind randomized-controlled clinical trial is conducted in order to evaluate the impact of non-surgical periodontal treatment on endothelial dysfunction parameters in subjects with periodontitis and without any cardiovascular disease.

NCT ID: NCT05905445 Completed - Periodontitis Clinical Trials

Use of Ozone Gel as an Antimicrobial in Treatment of Periodontitis

Start date: March 9, 2022
Phase: Phase 1
Study type: Interventional

Periodontitis is an inflammatory disease that destroys tooth-supporting structures through oral bacterial plaque. ozone gel's act as an antimicrobial effect as an adjunct to conventional periodontal therapy (scaling and root planning). exposure of bacteria to ozone leads to the oxidation of the phospholipids and lipoproteins that comprise the bacterial cell membrane. Ozone gel has the potential to play an anti-inflammatory role in the treatment of periodontitis by monitoring both clinical and biological parameters.

NCT ID: NCT05902936 Recruiting - Clinical trials for Apical Periodontitis

Evaluation of Nano Bioactive Glass Combined With i-PRF Scaffold in Vital Pulp Treatments

Start date: March 1, 2023
Phase: N/A
Study type: Interventional

With consideration of the previous studies regarding the properties of i-PRF, it will be used in combination with another bioactive material: (Nano-BAG) versus using of i-PRF only as a pulpotomy material with using a premixed bioceramic putty as a coronal sealing material in both cases, to evaluate if there is a difference in the success rate of pulpotomy in case of using Nano-BAG in combination with i-PRF So, in this study the investigators will use Nano-BAG in combination with i-PRF as a material for pulpotomy in cases of mature permanent mandibular molars and compare its outcomes with using i-PRF only and in both cases pulpotomy material will be covered with a layer of premixed bioceramic putty for coronal sealing.

NCT ID: NCT05902208 Recruiting - Clinical trials for Periodontitis Chronic Generalized Severe

Contribution of an Antiviral Drug (Valaciclovir) in the Treatment of Generalized Periodontitis (Stage III or IV and Grade A, B or C): Prospective, Randomized and Double Blind Clinical Trial

HERPARO
Start date: February 5, 2024
Phase: Phase 3
Study type: Interventional

Periodontitis is an inflammatory pathology that destroys periodontitis and causes tooth loosening. Its high incidence, combined with very high oral and systemic morbidity, places this pathology at the heart of global public health priorities. The current therapeutic management of periodontitis is not satisfactory because it often leads to a stabilization of the disease, marked by frequent recurrences, especially severe forms. Improving the treatment of patients with periodontitis is therefore an essential priority. If gingival bacterial dysbiosis is a major contributing factor, this model has clinical-biological limitations that suggest that other etiological factors are involved, and worsen the pathology. In particular, the literature provides clear evidence that periodontal lesions are mostly infected with Herpes EBV, CMV and HSV-1 viruses and that periodontal infection with these viruses is very directly correlated with disease progression (severity). In addition, our work provides new cellular and molecular data that demonstrate mechanisms of active EBV infection of cells and periodontal structures, and highlight inflammatory and necrotic effects associated with this infection. Given these observations and the high pathogenicity of herpes viruses, all known to be powerful inflammatory, lytic and immunomodulatory agents, it seems difficult not to evoke a direct etiopathogenic role of these viruses capable of acting synergistically with periodontopathogenic bacteria. In this context, the use of an antiviral appears as a very attractive therapeutic proposal to effectively treat periodontitis in combination with conventional treatments. This original and innovative proposal can also be easily and quickly validated in a randomized therapeutic trial through the availability of antiviral molecules that are non-toxic and very specific to human herpes viruses that are derivatives of aciclovir.