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用于口腔/颅面适应症的骨生物材料筛选的临床前体内模型:重点是小动物模型。

Pre-clinical in vivo models for the screening of bone biomaterials for oral/craniofacial indications: focus on small-animal models.

出版信息

Periodontol 2000. 2015 Jun;68(1):55-65. doi: 10.1111/prd.12065.

Abstract

Preclinical in vivo experimental studies are performed for evaluating proof-of-principle concepts, safety and possible unwanted reactions of candidate bone biomaterials before proceeding to clinical testing. Specifically, models involving small animals have been developed for screening bone biomaterials for their potential to enhance bone formation. No single model can completely recreate the anatomic, physiologic, biomechanic and functional environment of the human mouth and jaws. Relevant aspects regarding physiology, anatomy, dimensions and handling are discussed in this paper to elucidate the advantages and disadvantages of small-animal models. Model selection should be based not on the 'expertise' or capacities of the team, but rather on a scientifically solid rationale, and the animal model selected should reflect the question for which an answer is sought. The rationale for using heterotopic or orthotopic testing sites, and intraosseous, periosseous or extraskeletal defect models, is discussed. The paper also discusses the relevance of critical size defect modeling, with focus on calvarial defects in rodents. In addition, the rabbit sinus model and the capsule model in the rat mandible are presented and discussed in detail. All animal experiments should be designed with care and include sample-size and study-power calculations, thus allowing generation of meaningful data. Moreover, animal experiments are subject to ethical approval by the relevant authority. All procedures and the postoperative handling and care, including postoperative analgesics, should follow best practice.

摘要

在进行临床测试之前,需要进行临床前体内实验研究,以评估候选骨生物材料的原理验证、安全性和可能的不良反应。具体而言,已经开发了涉及小动物的模型,用于筛选骨生物材料,以评估它们增强骨形成的潜力。没有单一的模型可以完全再现人类口腔和颌骨的解剖、生理、生物力学和功能环境。本文讨论了与生理学、解剖学、尺寸和操作相关的方面,以阐明小动物模型的优缺点。模型选择不应基于团队的“专业知识”或能力,而应基于科学合理的依据,并且所选的动物模型应反映寻求答案的问题。讨论了使用异位或原位测试部位以及骨内、骨周或骨外缺损模型的原理。本文还讨论了临界尺寸缺陷建模的相关性,重点是啮齿动物的颅骨缺陷。此外,详细介绍和讨论了兔鼻窦模型和大鼠下颌骨的胶囊模型。所有动物实验都应精心设计,并包括样本量和研究能力计算,从而可以生成有意义的数据。此外,动物实验需要相关当局的伦理批准。所有程序以及术后处理和护理,包括术后镇痛,都应遵循最佳实践。

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