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骨诱导与骨免疫学:新兴概念。

Osteoinduction and osteoimmunology: Emerging concepts.

机构信息

Department of Periodontology, University of Bern, Bern, Switzerland.

RMS Foundation, Bettlach, Switzerland.

出版信息

Periodontol 2000. 2024 Feb;94(1):9-26. doi: 10.1111/prd.12519. Epub 2023 Sep 1.

Abstract

The recognition and importance of immune cells during bone regeneration, including around bone biomaterials, has led to the development of an entire field termed "osteoimmunology," which focuses on the connection and interplay between the skeletal system and immune cells. Most studies have focused on the "osteogenic" capacity of various types of bone biomaterials, and much less focus has been placed on immune cells despite being the first cell type in contact with implantable devices. Thus, the amount of literature generated to date on this topic makes it challenging to extract needed information. This review article serves as a guide highlighting advancements made in the field of osteoimmunology emphasizing the role of the osteoimmunomodulatory properties of biomaterials and their impact on osteoinduction. First, the various immune cell types involved in bone biomaterial integration are discussed, including the prominent role of osteal macrophages (OsteoMacs) during bone regeneration. Thereafter, key biomaterial properties, including topography, wettability, surface charge, and adsorption of cytokines, growth factors, ions, and other bioactive molecules, are discussed in terms of their impact on immune responses. These findings highlight and recognize the importance of the immune system and osteoimmunology, leading to a shift in the traditional models used to understand and evaluate biomaterials for bone regeneration.

摘要

在骨再生过程中,包括在骨生物材料周围,免疫细胞的识别和重要性已经导致了一个名为“骨免疫学”的整个领域的发展,该领域专注于骨骼系统和免疫细胞之间的联系和相互作用。大多数研究都集中在各种类型的骨生物材料的“成骨”能力上,尽管免疫细胞是与植入设备接触的第一类细胞,但对其关注较少。因此,迄今为止,关于这个主题的文献数量之多,使得提取所需信息变得具有挑战性。这篇综述文章旨在作为指南,突出强调骨免疫学领域的进展,强调生物材料的骨免疫调节特性及其对成骨诱导的影响。首先,讨论了参与骨生物材料整合的各种免疫细胞类型,包括成骨细胞巨细胞(OsteoMacs)在骨再生过程中的突出作用。此后,根据其对免疫反应的影响,讨论了关键的生物材料特性,包括形貌、润湿性、表面电荷和细胞因子、生长因子、离子和其他生物活性分子的吸附。这些发现强调并认识到免疫系统和骨免疫学的重要性,导致传统的用于理解和评估骨再生用生物材料的模型发生转变。

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