Manyu Zhu, Ji-Hye Yea, Zhao Li, Qizhi Qin, Mingxin Xu, Xin Xing, Stefano Negri, Mary Archer, Monisha Mittal, Benjamin Levi, Aaron W. James
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Here, we utilized a recently developed mouse model of hip arthroplasty-induced HO to further validate the role of peripheral nerve regulation of traumatic HO. Nerve ingrowth was either modulated using a knockin transgenic animals with point mutation in TrkA, or local treatment with an FDA-approved formulation of long acting Bupivacaine which prevents peripheral nerve growth. Results demonstrate exuberant sensory and sympathetic nerve growth within the peri-articular HO site, and that both methods to reduce local innervation significantly reduced heterotopic bone formation. TrkA inhibition led to a 34% reduction in bone volume, while bupivacaine treatment resulted in a 50% decrease. Mechanistically, alterations in TGFβ and FGF signaling activation accompanied both methods of local denervation, and a shift in macrophages from M1 to M2 phenotypes was observed. 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引用次数: 0
摘要
异位骨化(HO)是一种常见于严重多发性创伤后的病理过程,其特点是间充质祖细胞异常分化,导致在非骨骼组织中形成异位骨。这种异常骨质增生会导致疼痛和活动能力下降,尤其是在关节附近。我们之前的观察表明,表达神经生长因子(NGF)的外周神经对肌腱损伤后异常骨软骨分化的调节起着至关重要的作用。在这里,我们利用最近开发的髋关节置换术诱发HO的小鼠模型来进一步验证外周神经在创伤性HO中的调控作用。神经生长可通过TrkA点突变的基因敲除转基因动物进行调节,或使用美国食品及药物管理局批准的长效布比卡因制剂进行局部治疗,从而阻止外周神经生长。结果表明,HO 关节周围部位的感觉神经和交感神经生长旺盛,这两种减少局部神经支配的方法都能显著减少异位骨的形成。TrkA抑制导致骨量减少34%,而布比卡因治疗导致骨量减少50%。从机理上讲,TGFβ和FGF信号激活的改变伴随着这两种局部神经支配方法,并且观察到巨噬细胞从M1表型转变为M2表型。总之,这些研究进一步证实了外周神经在 HO 的发病机制中扮演着重要角色,针对局部神经的治疗是一种潜在的疾病预防方法。
Pharmacologic or genetic targeting of peripheral nerves prevents peri-articular traumatic heterotopic ossification
Heterotopic ossification (HO) is a pathological process that commonly arises following severe polytrauma, characterized by the anomalous differentiation of mesenchymal progenitor cells and resulting in the formation of ectopic bone in non-skeletal tissues. This abnormal bone growth contributes to pain and reduced mobility, especially when adjacent to a joint. Our prior observations suggested an essential role of NGF (Nerve Growth Factor)-responsive TrkA (Tropomyosin Receptor Kinase A)-expressing peripheral nerves in regulating abnormal osteochondral differentiation following tendon injury. Here, we utilized a recently developed mouse model of hip arthroplasty-induced HO to further validate the role of peripheral nerve regulation of traumatic HO. Nerve ingrowth was either modulated using a knockin transgenic animals with point mutation in TrkA, or local treatment with an FDA-approved formulation of long acting Bupivacaine which prevents peripheral nerve growth. Results demonstrate exuberant sensory and sympathetic nerve growth within the peri-articular HO site, and that both methods to reduce local innervation significantly reduced heterotopic bone formation. TrkA inhibition led to a 34% reduction in bone volume, while bupivacaine treatment resulted in a 50% decrease. Mechanistically, alterations in TGFβ and FGF signaling activation accompanied both methods of local denervation, and a shift in macrophages from M1 to M2 phenotypes was observed. In sum, these studies reinforce the observations that peripheral nerves play a role in the etiopathogenesis of HO, and that targeting local nerves represents a potential therapeutic approach for disease prevention.
期刊介绍:
Established in 2013, Bone Research is a newly-founded English-language periodical that centers on the basic and clinical facets of bone biology, pathophysiology, and regeneration. It is dedicated to championing key findings emerging from both basic investigations and clinical research concerning bone-related topics. The journal's objective is to globally disseminate research in bone-related physiology, pathology, diseases, and treatment, contributing to the advancement of knowledge in this field.