Effectiveness of Hydroxyapatite Reinforced Chitosan Hydrogel in Modulation of Osseointegration

NCT ID: NCT06758440

Last Updated: 2025-01-03

Study Results

Results pending

The study team has not published outcome measurements, participant flow, or safety data for this trial yet. Check back later for updates.

Basic Information

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Recruitment Status

COMPLETED

Clinical Phase

NA

Total Enrollment

20 participants

Study Classification

INTERVENTIONAL

Study Start Date

2023-03-28

Study Completion Date

2024-03-30

Brief Summary

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Dental implant treatments have now become indispensable in clinical dental practice. The survival rate exceeds 90%; Modern oral implantology uses different devices, in terms of size, shape, length, thickness and composition, from pure titanium to titanium-aluminum-vanadium alloys, due to their biocompatibility and high corrosion resistance

Detailed Description

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Immediate implants placed in freshly extracted sockets are an alternative treatment for traditional dental implants reduces physiological resorption of alveolar ridge, provides fast and simple procedures , decreasing the number of dental appointments, shortening length of treatment time, lesser surgical intervention, and ideal axial orientation of the implant.

However, the biological response of tissues can be improved by different surface treatments that provide both bioactivity and osseointegration capacity. Many materials have been advocated for boosting up the bone regeneration.

Current trends are directed not only towards achieving optimal osseointegrative surfaces, but also towards antibacterial activity for prolonged periods of time, either by blocking microbial adhesion and preventing late infections.

Given their biocompatibility and biodegradability, natural polymers are widely used materials for bone grafting. Among them, chitosan, collagen, silk fibroin, gelatin, cellulose, alginate. Chitosan is an excellent candidate for bone reconstruction as it has antimicrobial properties, can generate porous structures suitable for cell growth and osteoconduction, and promotes osteoblast cell proliferation. Furthermore, its structure is similar to glycosaminoglycans, a component of the bone extracellular matrix.

Chitosan has been formulated in different systems for bone tissue engineering, including scaffolds, sponges, hydrogels, micro-nanospheres, and membranes, among others ; capable of accelerating the formation of new bone integrated into the host bone without causing adverse reactions .

A large number of studies on chitosan-based gel scaffolds for bone regeneration can be found in the literature. It is usual to develop systems that combine chitosan with other compounds as hydroxyapatite to improve properties such as osteoconductivity and mechanical properties and thus obtain materials that mimic natural bone as much as possible.

Hydrogels have also been studied for surgical applications. These systems consist of a liquid phase, which generally comprises 90% of the formulation, trapped in a solid phase that gives the gel its structure . This water content makes these systems highly biocompatible, and their soft consistency prevents damage to surrounding tissues. Chitosan hydrogels show similar mechanical properties to connective tissues, which favors tissue regeneration.

Conditions

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Osseointegration Failure of Dental Implant

Study Design

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Allocation Method

RANDOMIZED

Intervention Model

PARALLEL

Primary Study Purpose

TREATMENT

Blinding Strategy

DOUBLE

Participants Investigators

Study Groups

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Group A

About 10 patients injected by chitosan/ hydroxyapatite hydrogel in the extracted socket in a back fill injection manner prior to immediate implant placement and then covered with HemCon dental dressing Pro

Group Type ACTIVE_COMPARATOR

chitosan

Intervention Type DRUG

Evaluate Effectiveness of hydroxyapatite reinforced chitosan hydrogel in modulation of osseintegration round immediate dental implant in a Randomized single blind control study

Group B

About 10 patients received dental immediate implant placement Spectra system

Group Type ACTIVE_COMPARATOR

chitosan

Intervention Type DRUG

Evaluate Effectiveness of hydroxyapatite reinforced chitosan hydrogel in modulation of osseintegration round immediate dental implant in a Randomized single blind control study

Interventions

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chitosan

Evaluate Effectiveness of hydroxyapatite reinforced chitosan hydrogel in modulation of osseintegration round immediate dental implant in a Randomized single blind control study

Intervention Type DRUG

Other Intervention Names

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hydroxyapatite hydrogel

Eligibility Criteria

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Inclusion Criteria

* Healthy patients (class I category according to American society of anesthesiologists )
* Over 20 years and under 50 years of age
* Either gender
* Patients seeking extraction and placement of immediate dental implant for mandibular teeth.

Exclusion Criteria

* Any acute infection in surgical sites
* Long term non-steroidal anti-inflammatory drug therapy
* Periodontal disease with bone loss
* Known allergy to any of the materials used in the study
* Patients with severely atrophic ridges requiring a staged grafting procedure
* Patients with significant medical condition
* Alcoholic individuals
* Patients on drugs that affect the central nervous systems
* Patients who reported the use of drugs that might interfere with pain sensitivity
* Pregnant and lactating
Minimum Eligible Age

20 Years

Maximum Eligible Age

50 Years

Eligible Sex

ALL

Accepts Healthy Volunteers

Yes

Sponsors

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Minia University

OTHER

Sponsor Role lead

Responsible Party

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Tarek Abdelbarry

Lecturer of Oral and Maxillofacial Surgery

Responsibility Role PRINCIPAL_INVESTIGATOR

Locations

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Faculty of Dentistry, Minia University

Minya, , Egypt

Site Status

Countries

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Egypt

Other Identifiers

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Osseintegration

Identifier Type: -

Identifier Source: org_study_id

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