Evaluating the Barrier Function, Regenerative Capacity, and Soft Tissue Outcomes of Acellular Dermal Matrix
A Prospective, Double-Arm, Randomized Controlled Trial Evaluating the Barrier Function, Regenerative Capacity, and Soft Tissue Outcomes of Acellular Dermal Matrix Compared to Resorbable Collagen Membranes in Edentulous Ridge Augmentation
研究概览
地位
详细说明
This investigator-initiated study will compare ADM and resorbable collagen membrane barrier for guided bone regeneration. Systematic reviews and randomized clinical trials confirm that resorbable collagen membranes combined with particulate graft materials predictably increase horizontal ridge width, typically achieving gains of approximately 3-5 mm at 6 months. The biologic mechanism involves clot stabilization, space maintenance (often supported with fixation tacks or tenting screws), and exclusion of competing soft tissue cells. Despite these predictable outcomes, collagen membranes possess inherent limitations, including limited intrinsic structural rigidity, susceptibility to enzymatic degradation when exposed and lack of contribution to gingival phenotype modification.
In contrast, human data evaluating acellular dermal matrix (ADM) as a barrier membrane in horizontal guided bone regeneration is limited. One of the earliest clinical and histologic investigations evaluated ADM in the management of Seibert Class I horizontal ridge defects using particulate grafting and reported both clinical ridge width improvement and histologic evidence of new vital bone formation. Notably, the authors also observed increased soft tissue thickness at treated sites, suggesting a potential dual hard- and soft-tissue benefit for its use. However, this study was a single-arm design without a direct comparator group, limiting the ability to determine whether outcomes were equivalent or superior to those achieved with conventional collagen membranes.
The majority of human ADM literature focuses on periodontal plastic surgery applications rather than GBR, including tooth root coverage procedures to treat gingival recession, peri-implant soft tissue augmentation, and keratinized tissue (KT) augmentation techniques. These investigations consistently demonstrate increased mucosal thickness and KT width with ADM use, reinforcing its soft tissue regenerative capacity. Nevertheless, these outcomes cannot be extrapolated directly to horizontal ridge augmentation without controlled comparative data.
Preclinical animal studies provide additional biologic rationale. It has been demonstrated in a canine GBR model that ADM functioned as an effective barrier membrane, with histologic evidence of new bone formation comparable to bioabsorbable membranes. Additional animal studies have shown that ADM supports vascular infiltration, integrates into host tissues, and maintains an acceptable inflammatory profile during early healing. Histomorphometric analyses in these models report woven bone formation beneath ADM at early intervals, followed by progressive remodeling into lamellar bone. While these findings support the biologic plausibility of ADM as a GBR membrane, animal data cannot substitute for controlled human clinical trials. Importantly, no adequately powered human randomized controlled trial has directly compared ADM and resorbable cross-linked collagen membranes head-to-head in horizontal ridge augmentation with GBR using standardized volumetric CBCT analysis, histomorphometric evaluation of post-healing bone biopsy, and longitudinal soft tissue assessment. Existing studies either evaluate collagen membranes alone, assess ADM in non-comparative design, or evaluate ADM and other autogenous, xenogeneic, or allogeneic soft tissue grafts for phenotype modification without simultaneous GBR. Consequently, it remains unclear whether ADM provides equivalent bone volume augmentation, histologic bone formation, and if it confers additional soft tissue benefits in the context of ridge augmentation, or whether its clinical performance differs in the setting of membrane exposure.
This absence of direct comparative human data represents a critical gap in the literature and provides the rationale for a randomized controlled trial evaluating ADM versus resorbable collagen membranes in horizontal guided bone regeneration.
研究类型
注册 (估计的)
阶段
- 不适用
联系人和位置
学习联系方式
- 姓名:Sarah Startley, DMD
- 电话号码:205-975-8711
- 邮箱:ss1971@uab.edu
研究联系人备份
- 姓名:Maria Geisinger, DDS, MS
- 电话号码:205-934-4984
- 邮箱:miagdds@uab.edu
学习地点
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Alabama
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Birmingham、Alabama、美国、35294
- University of Alabama at Birmingham
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接触:
- Sarah Startley, DMD
- 电话号码:205-975-8711
- 邮箱:ss1971@uab.edu
-
接触:
- Maria Geisinger, DDS, MS
- 电话号码:205-934-4984
- 邮箱:miagdds@uab.edu
-
首席研究员:
- Maria Geisinger, DDS, MS
-
-
参与标准
资格标准
适合学习的年龄
- 成人
- 年长者
接受健康志愿者
描述
Inclusion Criteria:
- English speaking
- At least 18 years old
- Must be a patient of the UAB Dental School
- Able to read and understand informed consent document
- Patients presenting with a diagnosed need horizontal ridge augmentation with GBR without simultaneous implant placement, to allow for future dental implant placement.
- Presence of periodontally healthy, non-carious neighboring teeth and/or healthy restored dental implants on either side of the edentulous span planned for GBR, or unhealthy adjacent teeth to be extracted during the same visit.
- ≤4 mm ridge width in a Seibert Class I Edentulous span19
- No anticipated need for surgical and/or endodontic care at planned teeth adjacent to the proposed surgical site during the study period.
Exclusion Criteria:
- Non-English speaking
- Less than 18 years old
- Smokers/nicotine users (defined as currently reporting use of any form of tobacco/nicotine products)
Patients with systemic pathologies or conditions contraindicating oral surgical procedures or adversely affecting wound healing, including:
- Uncontrolled diabetes (HbA1c > 7%)
- Untreated periodontal disease
- History of head/neck radiation
- IV bisphosphonates
- Immunocompromised state
- Pregnancy
- Acute infection at site
- Documented or suspected allergy or sensitivity to any study product
学习计划
研究是如何设计的?
设计细节
- 主要用途:治疗
- 分配:随机化
- 介入模型:并行分配
- 屏蔽:单身的
武器和干预
参与者组/臂 |
干预/治疗 |
|---|---|
|
实验性的:Guided Bone Regeneration with ADM (AlloDerm) as a barrier
GBR will be performed using a composite particulate graft consisting of a combination of freeze-dried bone allograft (FDBA) and xenograft in a 75%/25% mixture.
Following decortication and graft placement to reconstruct the horizontal ridge deficiency, acellular dermal matrix (ADM) will be adapted to fully cover the augmented site with appropriate extension beyond the defect margins.
The ADM will be stabilized using titanium tacks and/or periosteal sutures as needed to ensure space maintenance and membrane stability.
|
GBR will be performed using a composite particulate graft consisting of a combination of freeze-dried bone allograft (FDBA) and xenograft in a 75%/25% mixture.
Following decortication and graft placement to reconstruct the horizontal ridge deficiency, acellular dermal matrix (ADM) will be adapted to fully cover the augmented site with appropriate extension beyond the defect margins.
The ADM will be stabilized using titanium tacks and/or periosteal sutures as needed to ensure space maintenance and membrane stability.
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有源比较器:Guided Bone Regeneration with Resorbable Crosslinked Collagen Matrix (Mem-Lok) as a barrier
GBR will be performed using a composite particulate graft consisting of a combination of freeze-dried bone allograft (FDBA) and xenograft in a 75%/25% mixture.
The graft will be contoured to reconstruct the horizontal ridge deficiency following decortication of the recipient site.
A resorbable collagen membrane [Mem-Lok® Resorbable Collagen Matrix (RCM) will be trimmed and positioned to fully cover the grafted area with extension beyond the defect margins and stabilized using titanium tacks and/or periosteal sutures as needed.
|
GBR will be performed using a composite particulate graft consisting of a combination of freeze-dried bone allograft (FDBA) and xenograft in a 75%/25% mixture.
The graft will be contoured to reconstruct the horizontal ridge deficiency following decortication of the recipient site.
A resorbable collagen membrane [Mem-Lok® Resorbable Collagen Matrix (RCM) will be trimmed and positioned to fully cover the grafted area with extension beyond the defect margins and stabilized using titanium tacks and/or periosteal sutures as needed.
|
研究衡量的是什么?
主要结果指标
结果测量 |
措施说明 |
大体时间 |
|---|---|---|
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Horizontal ridge width gain
大体时间:baseline to 6 months
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Horizontal ridge width gain (mm) at 6 months post-GBR (CBCT-based measurement) at 2mm and 4mm from the alveolar crest
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baseline to 6 months
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次要结果测量
结果测量 |
措施说明 |
大体时间 |
|---|---|---|
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Soft tissue thickness change
大体时间:9 months
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Clinical assessment using an endodontic reamer and a calibrated periodontal probe
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9 months
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Patient centered outcomes using the Visual Analog Scale (VAS)
大体时间:4 weeks
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Patient centered outcomes including pain, bleeding, swelling, change in daily activities at 2 weeks and 4 weeks postoperatively, using the Visual Analog Scale (VAS) This measurement ranges from 0-10 (0 being better and 10 being worse).
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4 weeks
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合作者和调查者
调查人员
- 首席研究员:Maria L Geisinger, DDS, MS、University of Alabama at Birmingham
研究记录日期
研究主要日期
学习开始 (估计的)
初级完成 (估计的)
研究完成 (估计的)
研究注册日期
首次提交
首先提交符合 QC 标准的
首次发布 (实际的)
研究记录更新
最后更新发布 (实际的)
上次提交的符合 QC 标准的更新
最后验证
更多信息
与本研究相关的术语
关键字
其他相关的 MeSH 术语
其他研究编号
- IRB-300016808
- UAB Periodontology (其他标识符:University of Alabama at Birmingham)
计划个人参与者数据 (IPD)
计划共享个人参与者数据 (IPD)?
IPD 计划说明
药物和器械信息、研究文件
研究美国 FDA 监管的药品
研究美国 FDA 监管的设备产品
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