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三维骨软骨微组织模型骨关节炎的发病机制。

Three-dimensional osteochondral microtissue to model pathogenesis of osteoarthritis.

出版信息

Stem Cell Res Ther. 2013;4 Suppl 1(Suppl 1):S6. doi: 10.1186/scrt367. Epub 2013 Dec 20.

Abstract

Osteoarthritis (OA), the most prevalent form of arthritis, affects up to 15% of the adult population and is principally characterized by degeneration of the articular cartilage component of the joint, often with accompanying subchondral bone lesions. Understanding the mechanisms underlying the pathogenesis of OA is important for the rational development of disease-modifying OA drugs. While most studies on OA have focused on the investigation of either the cartilage or the bone component of the articular joint, the osteochondral complex represents a more physiologically relevant target because the disease ultimately is a disorder of osteochondral integrity and function. In our current investigation, we are constructing an in vitro three-dimensional microsystem that models the structure and biology of the osteochondral complex of the articular joint. Osteogenic and chondrogenic tissue components are produced using adult human mesenchymal stem cells derived from bone marrow and adipose seeded within biomaterial scaffolds photostereolithographically fabricated with defined internal architecture. A three-dimensional-printed, perfusion-ready container platform with dimensions to fit into a 96-well culture plate format is designed to house and maintain the osteochondral microsystem that has the following features: an anatomic cartilage/bone biphasic structure with a functional interface; all tissue components derived from a single adult mesenchymal stem cell source to eliminate possible age/tissue-type incompatibility; individual compartments to constitute separate microenvironment for the synovial and osseous components; accessible individual compartments that may be controlled and regulated via the introduction of bioactive agents or candidate effector cells, and tissue/medium sampling and compositional assays; and compatibility with the application of mechanical load and perturbation. The consequences of mechanical injury, exposure to inflammatory cytokines, and compromised bone quality on degenerative changes in the cartilage component are examined in the osteochondral microsystem as a first step towards its eventual application as an improved and high-throughput in vitro model for prediction of efficacy, safety, bioavailability, and toxicology outcomes for candidate disease-modifying OA drugs.

摘要

骨关节炎(OA)是最常见的关节炎形式,影响多达 15%的成年人口,主要特征是关节软骨成分的退化,常伴有软骨下骨病变。了解 OA 发病机制的机制对于合理开发治疗 OA 的药物非常重要。虽然大多数 OA 研究都集中在关节软骨或骨成分的研究上,但骨软骨复合体代表了一个更具生理相关性的靶点,因为疾病最终是骨软骨完整性和功能的紊乱。在我们目前的研究中,我们正在构建一个体外三维微系统,该系统模拟关节骨软骨复合体的结构和生物学。成骨和软骨组织成分是使用源自骨髓的成人间充质干细胞和在光立体光刻法制造的具有定义内部结构的生物材料支架中接种的脂肪细胞制成的。设计了一个具有三维打印、可灌注的容器平台,其尺寸适合 96 孔培养板格式,用于容纳和维持骨软骨微系统,该系统具有以下特点:具有功能界面的解剖软骨/骨双相结构;所有组织成分均源自单个成人间充质干细胞来源,以消除可能的年龄/组织类型不兼容性;单独的隔室构成滑膜和骨质成分的单独微环境;可访问的单独隔室,可以通过引入生物活性物质或候选效应细胞以及组织/介质采样和成分分析进行控制和调节;以及与机械负荷和干扰的应用兼容。作为其最终应用于改善和高通量体外模型以预测候选治疗 OA 的药物的疗效、安全性、生物利用度和毒理学结果的第一步,在骨软骨微系统中研究了机械损伤、炎性细胞因子暴露和骨质量受损对软骨成分退行性变化的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/deb8/4029306/fbcbce268fe5/scrt367-1.jpg

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