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NOS isoforms in adult human osteocytes: multiple pathways of NO regulation?
A M Caballero-Alías1, N Loveridge, A Lyon
1Bone Research Group (MRC), Department of Medicine, University of Cambridge Addenbrookes Hospital, Hills Road, Cambridge, CB2 2QQ, UK. amc59@medschl.cam.ac.uk
Abstract:
Until now, eNOS has been considered to be the predominant osteocytic nitric oxide synthase (NOS) isoform in bone. We previously studied the distribution of eNOS protein expression in the human femoral neck because of its possible involvement in the response to load. Studies in rat and human fracture callus have shown that nNOS mRNA is expressed sometime after fracture, but no study has yet immunolocalized NOS isoforms in mature adult human bone. In this study, we have examined the distribution of NOS isoforms in iliac osteocytes. Frozen sections (10 microm) were cut from transiliac biopsies from 8 female osteoporotic patients (range, 56-80 years) and from 7 female postmortem femoral neck biopsies (range, 65-90 years). Sections were incubated overnight in antiserum for eNOS, nNOS, or iNOS followed by peroxidase/VIP substrate detection. We used eNOS and iNOS antisera directed against the C-terminus. For nNOS, three different antisera were used, two binding to different C-terminal epitopes and one binding to N-terminal epitope. Sections were then incubated in propidium iodide or methyl green to detect all osteocytes. eNOS antibody was able to detect eNOS epitopes in osteocytes. All three nNOS antibodies detected nNOS epitopes in osteocytes, but those directed against the C-terminus had higher detection rates. iNOS was rarely seen. In the iliac crest, the percentage of osteocytes positive for nNOS was higher than that for eNOS (cortical: nNOS 84.04%, eNOS 61.78%, P < 0.05; cancellous: nNOS 82.33%, eNOS 65.21%, P < 0.05). In the femoral neck, the percentage of osteocytes positive for nNOS (60.98%) was also higher than that for eNOS (40.41%), although this difference was not statistically significant. In conclusion, both eNOS and nNOS isoforms are present in osteocytes in the iliac crest and femoral neck.
Insights
Nitric oxide synthase (NOS) isoforms, including neuronal NOS (nNOS), are present in human osteocytes. This study found nNOS is more prevalent than endothelial NOS (eNOS) in iliac crest and femoral neck bone samples.
Area of Science:
- Bone Biology
- Cellular Biology
- Biochemistry
Background:
- Endothelial nitric oxide synthase (eNOS) was previously considered the primary nitric oxide synthase (NOS) isoform in bone.
- Limited research exists on NOS isoform distribution in mature adult human bone, despite nNOS mRNA expression post-fracture in animal and human studies.
Purpose of the Study:
- To immunolocalize NOS isoforms (eNOS, nNOS, iNOS) in osteocytes from human iliac crest and femoral neck bone.
- To determine the relative prevalence of different NOS isoforms within human osteocytes.
Main Methods:
- Human transiliac and femoral neck bone biopsies were sectioned.
- Immunohistochemistry was performed using antisera specific for eNOS, nNOS, and iNOS.
- Osteocytes were counterstained to quantify positive cells for each NOS isoform.
Main Results:
- Both eNOS and nNOS isoforms were detected in human osteocytes.
- Neuronal NOS (nNOS) was found in a higher percentage of osteocytes compared to endothelial NOS (eNOS) in the iliac crest.
- A similar trend of higher nNOS prevalence was observed in the femoral neck, though not statistically significant.
Conclusions:
- Both eNOS and nNOS isoforms are expressed in human osteocytes in the iliac crest and femoral neck.
- nNOS appears to be more prevalent than eNOS in these bone sites.
- Further research is needed to elucidate the specific roles of these NOS isoforms in bone physiology.
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