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BMP-2 注射膝关节中骨重塑隔室的激活支持关节炎相关骨变化的局部血管机制。

Activation of Bone Remodeling Compartments in BMP-2-Injected Knees Supports a Local Vascular Mechanism for Arthritis-Related Bone Changes.

机构信息

Orthopedic Research/Pharmaceutical Development Consultant, Cambridge, Massachusetts.

CBSET, Inc., Lexington, Massachusetts.

出版信息

J Bone Joint Surg Am. 2021 Feb 3;103(3):e8. doi: 10.2106/JBJS.20.00883.

Abstract

BACKGROUND

Synovial membrane-derived factors are implicated in arthritis-related bone changes. The route that synovial factors use to access subchondral bone and the mechanisms responsible for these bone changes remain unclear. A safety study involving intra-articular injection of bone morphogenetic protein-2 (BMP-2)/calcium phosphate matrix (CPM) or CPM addresses these issues.

METHODS

Knee joints in 21 monkeys were injected with CPM or 1.5 or 4.5 mg/mL BMP-2/CPM and were evaluated at 1 and 8 weeks. Contralateral joints were injected with saline solution. Knee joints in 4 animals each were injected with 1.5 or 4.5 mg/mL BMP-2/CPM. Contralateral joints were injected with corresponding treatments at 8 weeks. Both joints were evaluated at 16 weeks. Harvested joints were evaluated grossly and with histomorphometry. Knee joints in 3 animals were injected with 125I-labeled BMP-2/CPM and evaluated with scintigraphy and autoradiography at 2 weeks to determine BMP-2 distribution.

RESULTS

All treatments induced transient synovitis and increased capsular vascularization, observed to anastomose with metaphyseal venous sinusoids, but did not damage articular cartilage. Both treatments induced unanticipated activation of vascular-associated trabecular bone remodeling compartments (BRCs) restricted to injected knees. Bone volume increased in BMP-2/CPM-injected knees at 8 and 16 weeks. Scintigraphy demonstrated metaphyseal 125I-labeled BMP-2 localization restricted to injected knees, confirming local rather than systemic BMP-2 release. Autoradiography demonstrated that BMP-2 diffusion through articular cartilage into the metaphysis was blocked by the tidemark. The lack of marrow activation or de novo bone formation, previously reported following metaphyseal BMP-2/CPM administration, confirmed BMP-2 and synovial-derived factors were not free in the marrow. The 125I-labeled BMP-2/CPM, observed within venous sinusoids of injected knees, confirmed the potential for capsular and metaphyseal venous portal communication.

CONCLUSIONS

This study identifies a synovitis-induced venous portal circulation between the joint capsule and the metaphysis as an alternative to systemic circulation and local diffusion for synovial membrane-derived factors to reach subchondral bone. This study also identifies vascular-associated BRCs as a mechanism for arthritis-associated subchondral bone changes and provides additional support for their role in physiological trabecular bone remodeling and/or modeling.

CLINICAL RELEVANCE

Inhibition of synovitis and accompanying abnormal vascularization may limit bone changes associated with arthritis.

摘要

背景

滑膜来源的因子与关节炎相关的骨改变有关。滑膜因子进入软骨下骨的途径以及导致这些骨改变的机制尚不清楚。一项涉及关节内注射骨形态发生蛋白-2(BMP-2)/磷酸钙基质(CPM)或 CPM 的安全性研究解决了这些问题。

方法

21 只猴子的膝关节分别注射 CPM 或 1.5 或 4.5mg/ml 的 BMP-2/CPM,并在 1 周和 8 周时进行评估。对侧膝关节注射生理盐水。4 只动物的每只膝关节分别注射 1.5 或 4.5mg/ml 的 BMP-2/CPM。对侧膝关节在 8 周时接受相应的治疗。16 周时同时评估双侧膝关节。采集的膝关节进行大体和组织形态计量学评估。3 只动物的膝关节注射 125I 标记的 BMP-2/CPM,2 周时进行闪烁扫描和放射自显影以确定 BMP-2 的分布。

结果

所有治疗均引起短暂性滑膜炎和囊血管化增加,观察到与骺静脉窦吻合,但未损伤关节软骨。两种治疗均引起意外激活血管相关小梁骨重塑区(BRC),仅局限于注射膝关节。8 周和 16 周时,BMP-2/CPM 注射膝关节的骨体积增加。闪烁扫描显示,125I 标记的 BMP-2 定位于注射膝关节,证实是局部而不是全身释放 BMP-2。放射自显影显示,BMP-2 通过关节软骨扩散到骺板被骺板限制,证实 BMP-2 和滑膜来源的因子在骨髓中不是自由的。先前报道的骺板 BMP-2/CPM 给药后骨髓激活或新骨形成缺失,进一步证实了 BMP-2 和滑膜衍生因子不是自由的在骨髓中。注射膝关节静脉窦内观察到的 125I 标记的 BMP-2/CPM 证实了关节囊和骺板静脉门之间存在潜在的交通。

结论

本研究确定了一种滑膜诱导的关节囊和骺板之间的静脉门循环,作为滑膜来源因子到达软骨下骨的替代途径,替代全身循环和局部扩散。本研究还确定了血管相关的 BRCs 是关节炎相关软骨下骨改变的机制,并为其在生理小梁骨重塑和/或建模中的作用提供了额外的支持。

临床相关性

抑制滑膜炎和伴随的异常血管化可能会限制与关节炎相关的骨改变。

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