Padial-Molina Miguel, Marchesan Julie T, Taut Andrei D, Jin Qiming, Giannobile William V, Rios Hector F
Department of Periodontics and Oral Medicine, School of Dentistry, University of Michigan, Ann Arbor, MI, USA.
Methods Mol Biol. 2012;887:135-48. doi: 10.1007/978-1-61779-860-3_13.
In humans, microbially induced inflammatory periodontal diseases are the primary initiators that disrupt the functional and structural integrity of the periodontium (i.e., the alveolar bone, the periodontal ligament, and the cementum). The reestablishment of its original structure, properties, and function constitutes a significant challenge in the development of new therapies to regenerate tooth-supporting defects. Preclinical models represent an important in vivo tool to critically evaluate and analyze the key aspects of novel regenerative therapies, including (1) safety, (2) effectiveness, (3) practicality, and (4) functional and structural stability over time. Therefore, these models provide foundational data that supports the clinical validation and the development of novel innovative regenerative periodontal technologies. Steps are provided on the use of the root fenestration animal model for the proper evaluation of periodontal outcome measures using the following parameters: descriptive histology, histomorphometry, immunostaining techniques, three-dimensional imaging, electron microscopy, gene expression analyses, and safety assessments. These methods will prepare investigators and assist them in identifying the key end points that can then be adapted to later stage human clinical trials.
在人类中,微生物诱导的炎症性牙周疾病是破坏牙周组织(即牙槽骨、牙周韧带和牙骨质)功能和结构完整性的主要引发因素。恢复其原始结构、特性和功能是开发用于再生牙齿支持性缺损的新疗法的一项重大挑战。临床前模型是一种重要的体内工具,可用于严格评估和分析新型再生疗法的关键方面,包括(1)安全性、(2)有效性、(3)实用性以及(4)随时间推移的功能和结构稳定性。因此,这些模型提供了支持临床验证和新型创新性牙周再生技术开发的基础数据。本文提供了关于使用牙根开窗动物模型通过以下参数正确评估牙周结局指标的步骤:描述性组织学、组织形态计量学、免疫染色技术、三维成像、电子显微镜、基因表达分析和安全性评估。这些方法将为研究人员做好准备,并帮助他们确定关键终点,以便随后应用于后期的人体临床试验。