Different Autologous Products in The Treatment of Intrabony Defects
NCT ID: NCT05941312
Last Updated: 2023-07-12
Study Results
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Basic Information
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COMPLETED
NA
20 participants
INTERVENTIONAL
2020-08-19
2022-01-10
Brief Summary
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Detailed Description
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ABGs consist of live osteoblasts, osteoprogenitor stem cells and all the three components for tissue engineering, i.e, scaffold, cells, and signaling molecules. Among the several available regeneration substances, only ABG involves osteoconductive, osteoinductive, and osteogenic properties. Due to their favorable characteristics, ABGs have been regarded as the "gold standard", and the most successful material that can be used in periodontal regeneration surgery. Despite being quite effective, ABGs have some drawbacks, including limited donor locations, insufficient bone amount, another site surgery, the possibility of some unexpected bone resorption and donor site morbidity, which includes pain, infection, sensory loss, and bleeding. Because of these shortcomings, the use of other autologous products such as autologous platelet concentrates (APC ; PRF, CGF) has become needed.
PRF is a second-generation autologous platelet concentrate as it is a natural concentrate prepared directly by taking blood from the patient without adding any anticoagulant. PRFs were firstly introduced in 2001 with the aim of simplifying the platelet-rich plasma (PRP) preparation protocol and overcoming its drawbacks. It is inexpensive, time saving, and it does not require chemical alteration in collected blood. Literature showed that the PRF membrane could stay intact and release continuously large quantities of growth factors slowly for at least 1 week, due to its fiber network scaffold. PRF shows effective outcomes in the surgical management of periodontal intra-bony and furcation defects which lead to noticeable improvement of PD and CAL. Some other dental applications are socket preservation after extraction, root covering procedure, third-molar surgery, alveolar ridge preservation, guided tissue regeneration and sinus elevation. Furthermore, PRF has the ability to enhance osseointegration of implants and can be used with grafting materials as natural resorbable membrane as an alternative to collagen membrane in managing periodontal and peri-implant defects. Nevertheless, the PRF membrane has fast biodegradability (up to 14 days). However, PRF has some limitation, as it required to be used as quickly as possible after preparation. Recently, researchers developed new products of the PRF that aim to improve the properties of PRF and obtain a better autogenous biological material by changing the centrifuge time and speed (Injectable-PRF, Advanced-PRF and CGF).
CGF is an advanced second-generation platelet concentrate, which consists of diverse growth factors that stimulate and accelerate bone formation and soft and hard tissue healing. CGF can also improve the quality of the produced new bone. CGF was firstly introduced by Sacco in 2006 as a recent improved formulation of PRF which contains high amount of growth factors and can be used successfully in regenerative treatments. It has a different preparation protocol by alternating and controlling centrifugation speeds manually or by using a special centrifuge machine, which permits the formation of a considerably larger and firmer fibrin matrix which is more abundant in growth factors compared to those observed in PRP and classic PRF. He et al26 reported that the three-dimensional fiber network scaffold of CGF could help in releasing growth factors gradually for a period between 7-10 days.
So, according to recent findings in the literature, the hypothesis of this study was that the treatment of periodontal intrabony defects by using OFD in combination with autologous products (PRF, CGF and ABG) would lead to effective outcomes compared to OFD alone. Therefore the aim of this randomized controlled clinical study was to evaluate the effects of different autologous products (PRF, CGF and ABG) on the treatment of periodontitis patients who have intrabony pockets and to compare between their efficiency clinically and radiographically.
Conditions
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Study Design
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RANDOMIZED
CROSSOVER
TREATMENT
QUADRUPLE
Study Groups
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CONTROL GROUP (GROUP 1)
Only open flap debridement (OFD):
Conventional OFD surgery was applied to patients in all groups which began with local anesthesia (4% articaine with 1:100 000 epinephrine) after the surgical area was disinfected. Defects were thoroughly debrided firstly by using periodontal curettes and then cleaned by piezoelectric ultrasonic scaler. For the control group, the defects were left without adding any products.
autologous products
After the operation area was washed thoroughly with saline, autologous products were placed inside defects according to the related group. For the control group, the defects were left without adding any products.
GROUP 2
Conventional OFD surgery was applied to patients in all groups which began with local anesthesia (4% articaine with 1:100 000 epinephrine) after the surgical area was disinfected. Defects were thoroughly debrided firstly by using periodontal curettes and then cleaned by piezoelectric ultrasonic scaler. After the operation area was washed thoroughly with saline, platelet-rich fibrine (PRF) was placed inside defects
autologous products
After the operation area was washed thoroughly with saline, autologous products were placed inside defects according to the related group. For the control group, the defects were left without adding any products.
GROUP 3
Conventional OFD surgery was applied to patients in all groups which began with local anesthesia (4% articaine with 1:100 000 epinephrine) after the surgical area was disinfected. Defects were thoroughly debrided firstly by using periodontal curettes and then cleaned by piezoelectric ultrasonic scaler. After the operation area was washed thoroughly with saline, Consantrated Growth Factor (CGF) was placed inside defects
autologous products
After the operation area was washed thoroughly with saline, autologous products were placed inside defects according to the related group. For the control group, the defects were left without adding any products.
GROUP 4
Conventional OFD surgery was applied to patients in all groups which began with local anesthesia (4% articaine with 1:100 000 epinephrine) after the surgical area was disinfected. Defects were thoroughly debrided firstly by using periodontal curettes and then cleaned by piezoelectric ultrasonic scaler. After the operation area was washed thoroughly with saline, autologous bone graft (ABG) was placed inside defects
autologous products
After the operation area was washed thoroughly with saline, autologous products were placed inside defects according to the related group. For the control group, the defects were left without adding any products.
Interventions
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autologous products
After the operation area was washed thoroughly with saline, autologous products were placed inside defects according to the related group. For the control group, the defects were left without adding any products.
Eligibility Criteria
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Inclusion Criteria
2. presence of two-wall intrabony defects with radiographic depth ≥3 mm
3. presence of at least four intrabony defects, one in each quadrant (in molar and premolar regions)
4. pocket depth ≥5mm
5. no periodontal treatment within past 6 months
Exclusion Criteria
2. Having a systemic disease that may affect the treatment results such as uncontrolled diabetes, metabolic bone diseases, hematological disorders, radiotherapy in the head and neck region, kidney disease,
3. Being in pregnancy or breastfeeding period,
30 Years
53 Years
ALL
Yes
Sponsors
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Yuzuncu Yıl University
OTHER
Responsible Party
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Ahmet Cemil Talmac
PhD,DDA, Assistant professor
Principal Investigators
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Basem ALSHUJAA, PhD
Role: PRINCIPAL_INVESTIGATOR
Special dental clinic
Ahmet Cemil TALMAC, PhD
Role: STUDY_DIRECTOR
Yuzuncu Yıl University
Dicle ALTINDAL, PhD
Role: STUDY_CHAIR
Yuzuncu Yıl University
Anas ALSAFADI, PhD
Role: STUDY_CHAIR
Special dental clinic
Abdullah Seckin ERTUGRUL, PhD
Role: STUDY_CHAIR
Izmir Katip Celebi University
Locations
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Ahmet Cemil TALMAC
Van, , Turkey (Türkiye)
Countries
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References
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Ghanaati S, Booms P, Orlowska A, Kubesch A, Lorenz J, Rutkowski J, Landes C, Sader R, Kirkpatrick C, Choukroun J. Advanced platelet-rich fibrin: a new concept for cell-based tissue engineering by means of inflammatory cells. J Oral Implantol. 2014 Dec;40(6):679-89. doi: 10.1563/aaid-joi-D-14-00138.
Other Identifiers
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17.06.2020/19
Identifier Type: -
Identifier Source: org_study_id
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