Guanylate cyclase promotes osseointegration by inhibiting oxidative stress and inflammation in aged rats with iron overload

Author:

Tao Zhou-Shan12,Shen Cai-Liang3

Affiliation:

1. Department of Orthopedics, The First Affiliated Hospital of Wannan Medical College, Yijishan Hospital, Wuhu, China

2. Anhui Province Key Laboratory of Non-coding RNA Basic and Clinical Transformation, Wuhu, China

3. Department of Spinal Surgery, The First Affiliated Hospital of Anhui Medical University, Hefei, China

Abstract

AimsThis study intended to investigate the effect of vericiguat (VIT) on titanium rod osseointegration in aged rats with iron overload, and also explore the role of VIT in osteoblast and osteoclast differentiation.MethodsIn this study, 60 rats were included in a titanium rod implantation model and underwent subsequent guanylate cyclase treatment. Imaging, histology, and biomechanics were used to evaluate the osseointegration of rats in each group. First, the impact of VIT on bone integration in aged rats with iron overload was investigated. Subsequently, VIT was employed to modulate the differentiation of MC3T3-E1 cells and RAW264.7 cells under conditions of iron overload.ResultsUtilizing an OVX rat model, we observed significant alterations in bone mass and osseointegration due to VIT administration in aged rats with iron overload. The observed effects were concomitant with reductions in bone metabolism, oxidative stress, and inflammation. To elucidate whether these effects are associated with osteoclast and osteoblast activity, we conducted in vitro experiments using MC3T3-E1 cells and RAW264.7 cells. Our findings indicate that iron accumulation suppressed the activity of MC3T3-E1 while enhancing RAW264.7 function. Furthermore, iron overload significantly decreased oxidative stress levels; however, these detrimental effects can be mitigated by VIT treatment.ConclusionCollectively, our data provide compelling evidence that VIT has the potential to reverse the deleterious consequences of iron overload on osseointegration and bone mass during ageing.Cite this article: Bone Joint Res 2024;13(9):427–440.

Publisher

British Editorial Society of Bone & Joint Surgery

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