Effect of Different Heating Protocols of Resin Composites on Pulp Condition (Randomized Controlled Trial)
調査の概要
状態
詳細な説明
Background and Rationale Pre-heating of resin-based composites decreases viscosity, enhances flow characteristics, and improves monomer conversion rates [1,2]. Specialized devices including the VisCalor delivery system have been introduced to standardize prewarming methodologies [3,4]. However, the utilization of preheated substances in deep preparations raises legitimate thermal concerns for the pulp-dentin interface. Zach and Cohen [5] demonstrated that a 5.5°C elevation in pulpal temperature induces irreversible pulpitis or necrosis in 15% of teeth.
Cytokines represent pivotal inflammatory mediators and have been examined in gingival crevicular fluid (GCF) as diagnostic markers of pulpal inflammation [6,7]. Tumor necrosis factor-alpha (TNF-α) functions as a pleiotropic pro-inflammatory cytokine central to initiating and amplifying pulpal inflammatory cascades [8,9]. Celik et al. [10] established that diverse restorative materials significantly influence GCF concentrations of IL-6, IL-8, and TNF-α, demonstrating material-specific temporal variations.
Despite accumulating evidence, no clinical investigation has evaluated varying preheating protocols on pulpal inflammatory status utilizing objective biomarkers. Consequently, this randomized controlled study aims to examine the influence of different prewarming regimens on pulpal inflammatory status through GCF TNF-α quantification and VAS pain assessment.
- Study Design This is a randomized, single-blinded, parallel-group controlled clinical trial conducted at the outpatient facility of the Faculty of Dentistry, Ain Shams University. The study adheres to the Consolidated Standards of Reporting Trials (CONSORT) guidelines [11]. Ethical approval was obtained from the Research Ethics Committee of the Faculty of Dentistry, Ain Shams University (approval number: [to be inserted]), and the study is performed in accordance with the Declaration of Helsinki [12]. Written informed consent is secured from all participants.
Eligibility Criteria
Inclusion Criteria:
Patients aged 18-45 years in good general health
Asymptomatic deep occlusal carious lesions with ICDAS scores 5 and 6, confirmed by preoperative periapical radiographs
Healthy gingiva with probing depths ≤ 3 mm, normal occlusion, and no radiographic evidence of periodontal bone loss
No anti-inflammatory or antibiotic therapy within the preceding six months
Willingness to complete the full trial period with signed informed consent
Exclusion Criteria:
Vulnerable populations (pregnant or nursing women, incarcerated individuals, those with mental health disorders)
Current tobacco users
Patients with systemic conditions (e.g., diabetes mellitus, immunocompromise)
Teeth with prior endodontic intervention
Periodontal pockets >3 mm
Use of medications influencing inflammatory responses
Orthodontic appliance wearers
Interventions Group I (Test Group 1): Thermoviscous bulk-fill composite (VisCalor, VOCO, Germany) preheated to 65°C using VisCalor Dispenser, placed as a single bulk increment (4 mm thickness).
Group II (Test Group 2): Conventional nanohybrid composite (Ivoclar Vivadent, Liechtenstein) preheated to 55°C using Composite Heater (Cicada Dental, China), placed incrementally (2 mm thickness per increment).
Group III (Control Group): Conventional nanohybrid composite (Ivoclar Vivadent, Liechtenstein) at room temperature (23°C), placed incrementally (2 mm thickness per increment).
All restorations are performed by a single operator. Selective enamel etching combined with universal bonding (Bisco) is applied across all groups following manufacturer specifications. Cavity preparations are executed with diamond burs in a high-speed handpiece under continuous water coolant.
Outcome Measures
Primary Outcome:
Pulpal inflammatory response assessed by GCF TNF-α levels (pg/mL) at baseline, immediately post-treatment, and 7 days post-treatment, measured using ELISA [10].
Secondary Outcomes:
Postoperative pain assessed using Visual Analog Scale (VAS) at baseline and 7 days post-treatment
Correlation between TNF-α levels and pain scores
- Sample Size and Power Sample size was calculated using G*Power software version 3.1.9.7 (Heinrich Heine University, Dusseldorf, Germany) [13] based on prior investigations [10]. The minimally acceptable sample size was 5 per group, calculated from the mean ± standard deviation of TNF-α levels pre-restoration (5.83 ± 0.25) and post-restoration (7.15 ± 0.7), yielding a 2.8 effect size. With power set at 95% and type I error probability at 0.05, the sample size was increased to 10 per group to enhance statistical power and accommodate anticipated attrition. Consequently, 30 patients (10 per group) are enrolled.
- Statistical Analysis The normality of data distribution and homogeneity of variances are verified using Shapiro-Wilk's test. Intergroup comparisons are performed using Kruskal-Wallis test with Dunn's post-hoc correction. Intragroup temporal changes are analyzed using Friedman test with Nemenyi post-hoc analysis. Baseline versus 7-day comparisons utilize Wilcoxon signed-rank test. Correlation between TNF-α and pain scores is assessed using Spearman's rank correlation coefficient. Significance is established at p < 0.05. Calculations are performed using SPSS software version 26.0 (IBM, NY, USA) and R statistical software.
- Study Timeline Phase Duration Description Screening 1 week Medical history, clinical examination, radiographs, eligibility confirmation Baseline Day 0 Informed consent, demographic data, baseline VAS, baseline GCF collection Intervention Day 0 Anesthesia, rubber dam, cavity preparation, composite placement, light curing Immediate Post-op Day 0 Immediate GCF collection (T1) Follow-up Day 7 Clinical examination, VAS, GCF collection Data Analysis 2-4 weeks ELISA analysis, statistical analysis
- Data Management All data are entered into a password-protected Excel spreadsheet. Patient identification is coded (e.g., G1_P01 for Group I, Patient 1). A separate master linking file (password-protected) maintains codes linked to patient identities. Data are backed up weekly to an external encrypted hard drive. All records are retained for five years following publication of study results.
- Safety and Adverse Events This study uses commercially available dental materials with established safety profiles. Participants are closely monitored throughout the follow-up period. Any patient who discontinues follow-up or undergoes extraction of the involved tooth is excluded from the final analysis. Patients experiencing persistent or severe postoperative pain receive appropriate clinical management.
- Dissemination of Results Results will be published in a peer-reviewed journal (BMC Oral Health) and presented at national and international conferences.
References for Detailed Description Daronch M, Rueggeberg FA, De Goes MF, Giudici R. Polymerization kinetics of pre-heated composite. J Dent Res. 2006;85(1):38-43.
Lovell LG, Newman SM, Bowman CN. The effects of light intensity, temperature, and comonomer composition on the polymerization behavior of dimethacrylate dental resins. J Dent Res. 1999;78(8):1469-76.
Ates H, Iscan Yapar M. The effect of different preheating methods on the intrapulpal temperature of bulk-fill composite resins. BMC Oral Health. 2025;25(1):1977.
El-Saeed AS, Elerian FA, Hamama HH, Mahmoud SH. Impact of resin composite restorative material pre-heating on dental pulp temperature: A laboratory study. Mansoura J Dent. 2022;9(3):128-32.
Zach L, Cohen G. Pulp response to externally applied heat. Oral Surg Oral Med Oral Pathol. 1965;19(4):515-30.
Champagne CM, Buchanan W, Reddy MS, Preisser JS, Beck JD, Offenbacher S. Potential for gingival crevice fluid measures as predictors of risk for periodontal diseases. Periodontol 2000. 2003;31:167-80.
Lamster IB, Hartley LJ, Vogel RI. Development of a biological profile for gingival crevicular fluid. J Periodontol. 1985;56(Special Issue):13-21.
Pezelj-Ribaric S, Anic I, Brekalo I, Miletic I, Hasan M, Simunovic-Soskie M. Detection of tumor necrosis factor alpha in normal and inflamed human dental pulps. Arch Med Res. 2002;33(5):482-4.
Kokkas AB, Goulas A, Varsamidis K, Mirtsou V, Tziafas D. Irreversible but not reversible pulpitis is associated with up-regulation of tumour necrosis factor-alpha gene expression in human pulp. Int Endod J. 2007;40(3):198-203.
Celik N, Askin S, Gul MA, Seven N. The effect of restorative materials on cytokines in gingival crevicular fluid. Arch Oral Biol. 2017;84:139-44.
Moher D, Hopewell S, Schulz KF, Montori V, Gøtzsche PC, Devereaux PJ, et al. CONSORT 2010 explanation and elaboration: updated guidelines for reporting parallel group randomised trials. Int J Surg. 2012;10(1):28-55.
World Medical Association. World Medical Association Declaration of Helsinki: Ethical principles for medical research involving human subjects. JAMA. 2013;310(20):2191-4.
Faul F, Erdfelder E, Buchner A, Lang AG. Statistical power analyses using G*Power 3.1: tests for correlation and regression analyses. Behav Res Methods. 2009;41(4):1149-60.
研究の種類
入学 (実際)
段階
- 適用できない
連絡先と場所
研究場所
-
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Cairo Governorate
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Cairo、Cairo Governorate、エジプト
- Ain Shams University
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参加基準
適格基準
就学可能な年齢
- 大人
健康ボランティアの受け入れ
説明
Inclusion Criteria:
Patients aged 18-45 years in good general health
Asymptomatic deep occlusal carious lesions with ICDAS scores 5 and 6, confirmed by preoperative periapical radiographs
Healthy gingiva with probing depths ≤ 3 mm
Normal occlusion
No radiographic evidence of periodontal bone loss
No anti-inflammatory or antibiotic therapy within the preceding six months
Willingness to provide written informed consent and complete the full study period
Exclusion Criteria:
Pregnant or nursing women
Incarcerated individuals
Individuals with mental health disorders
Current tobacco users
Patients with systemic conditions (e.g., diabetes mellitus, immunocompromise)
Teeth with prior endodontic therapy
Periodontal pockets >3 mm
Use of medications influencing inflammatory responses
Orthodontic appliance wearers
History of allergy to dental materials or local anesthetics
Active periodontal disease
Teeth with periapical pathology or pulp exposure
研究計画
研究はどのように設計されていますか?
デザインの詳細
- 主な目的:処理
- 割り当て:ランダム化
- 介入モデル:並列代入
- マスキング:独身
武器と介入
参加者グループ / アーム |
介入・治療 |
|---|---|
|
実験的:Thermoviscous Bulk-Fill Composite - VisCalor (65°C)
Participants in this arm will receive deep Class I restorations using thermoviscous bulk-fill composite (VisCalor, VOCO, Germany) preheated to 65°C using the VisCalor Dispenser.
The composite is placed as a single 4-mm bulk increment and light-cured according to the manufacturer's instructions.
GCF samples are collected at baseline, immediately post-treatment, and at 7-day follow-up for TNF-α quantification.
Pain is assessed using VAS at baseline and day 7.
|
VisCalor (VOCO, Germany) is a thermoviscous bulk-fill composite resin designed for posterior restorations.
It is supplied in compules and preheated to 65°C using the VisCalor Dispenser, which maintains the material at the target temperature until the moment of application.
The composite has 89% filled universal nano-hybrid composition and is placed as a single 4-mm bulk increment.
|
|
実験的:Preheated Conventional Nanohybrid Composite - 55°C
Participants in this arm will receive deep Class I restorations using conventional nanohybrid composite (Tetric EvoCeram, Ivoclar Vivadent, Liechtenstein) preheated to 55°C using a Composite Heater (Cicada Dental, China).
The composite is placed incrementally in 2-mm layers and light-cured according to the manufacturer's instructions.
GCF samples are collected at baseline, immediately post-treatment, and at 7-day follow-up for TNF-α quantification.
Pain is assessed using VAS at baseline and day 7.
|
Tetric EvoCeram (Ivoclar Vivadent, Liechtenstein) is a conventional nanohybrid composite resin with 76 wt.% filler content (barium glass, ytterbium trifluoride, silicon dioxide, mixed oxide).
It is preheated to 55°C using a Composite Heater (Cicada Dental, China) for 5 minutes and placed incrementally in 2-mm layers.
Each increment is light-cured for 20 seconds.
|
|
実験的:Conventional Nanohybrid Composite - Room Temperature (Control)
Participants in this arm will receive deep Class I restorations using conventional nanohybrid composite (Tetric EvoCeram, Ivoclar Vivadent, Liechtenstein) at room temperature (23°C) with no preheating.
The composite is placed incrementally in 2-mm layers and light-cured according to the manufacturer's instructions.
This arm serves as the control group.
GCF samples are collected at baseline, immediately post-treatment, and at 7-day follow-up for TNF-α quantification.
Pain is assessed using VAS at baseline and day 7.
|
Tetric EvoCeram (Ivoclar Vivadent, Liechtenstein) is a conventional nanohybrid composite resin with 76 wt.% filler content (barium glass, ytterbium trifluoride, silicon dioxide, mixed oxide).
It is used at room temperature (23°C) without preheating and placed incrementally in 2-mm layers.
Each increment is light-cured for 20 seconds.
This is the control intervention.
|
この研究は何を測定していますか?
主要な結果の測定
結果測定 |
メジャーの説明 |
時間枠 |
|---|---|---|
|
Pulpal Inflammatory Response Assessed by Gingival Crevicular Fluid TNF-α Levels
時間枠:Baseline (pre-treatment), immediately after restoration, and 7 days post-restoration
|
Changes in tumor necrosis factor-alpha (TNF-α) concentrations in gingival crevicular fluid (GCF) measured at three time points: baseline (pre-treatment), immediately post-restoration, and 7 days post-restoration.
TNF-α is a key pro-inflammatory cytokine that reflects pulpal inflammatory status.
|
Baseline (pre-treatment), immediately after restoration, and 7 days post-restoration
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二次結果の測定
結果測定 |
メジャーの説明 |
時間枠 |
|---|---|---|
|
Postoperative Pain Assessed by Visual Analog Scale (VAS)
時間枠:Baseline (pre-treatment) and 7 days post-restoration
|
Changes in postoperative pain intensity measured using the Visual Analog Scale (VAS).
Patients indicate their pain level on a 10 cm horizontal line (0 = no pain, 10 = worst imaginable pain).
Pain scores are recorded at baseline and 7 days post-treatment
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Baseline (pre-treatment) and 7 days post-restoration
|
協力者と研究者
スポンサー
出版物と役立つリンク
一般刊行物
- Tauböck TT, Tarle Z, Marovic D, Attin T, Attin R. Pre-heating of resin composites: Effects on conversion, mechanical properties and polymerization shrinkage. Dent Mater. 2015;31(8):895-902.
- Dawson VS, Amjad S, Fransson H. Endodontic complications in teeth with vital pulps restored with composite resins: a systematic review. Int Endod J. 2015 Jul;48(7):627-38. doi: 10.1111/iej.12364. Epub 2014 Sep 12.
- Morrison JI, Borg P, Simon A. Plasticity and recovery of skeletal muscle satellite cells during limb regeneration. FASEB J. 2010 Mar;24(3):750-6. doi: 10.1096/fj.09-134825. Epub 2009 Nov 3.
- Pezelj-Ribaric S, Anic I, Brekalo I, Miletic I, Hasan M, Simunovic-Soskic M. Detection of tumor necrosis factor alpha in normal and inflamed human dental pulps. Arch Med Res. 2002 Sep-Oct;33(5):482-4. doi: 10.1016/s0188-4409(02)00396-x.
- ZACH L, COHEN G. PULP RESPONSE TO EXTERNALLY APPLIED HEAT. Oral Surg Oral Med Oral Pathol. 1965 Apr;19:515-30. doi: 10.1016/0030-4220(65)90015-0. No abstract available.
- Celik N, Askin S, Gul MA, Seven N. The effect of restorative materials on cytokines in gingival crevicular fluid. Arch Oral Biol. 2017 Dec;84:139-144. doi: 10.1016/j.archoralbio.2017.09.026. Epub 2017 Sep 27.
研究記録日
主要日程の研究
研究開始 (実際)
一次修了 (実際)
研究の完了 (実際)
試験登録日
最初に提出
QC基準を満たした最初の提出物
最初の投稿 (実際)
学習記録の更新
投稿された最後の更新 (実際)
QC基準を満たした最後の更新が送信されました
最終確認日
詳しくは
本研究に関する用語
キーワード
その他の研究ID番号
- FDASU-Rec IM012564
個々の参加者データ (IPD) の計画
個々の参加者データ (IPD) を共有する予定はありますか?
IPD プランの説明
試験データ・資料
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研究プロトコル
情報識別子:Amira Adel Mohamed Hassan情報コメント:Complete study protocol including study design, methodology, intervention details, outcome measures, and statistical analysis plan.
医薬品およびデバイス情報、研究文書
米国FDA規制医薬品の研究
米国FDA規制機器製品の研究
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