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Published on: December 10, 2010
Gene Expression Profile and Acute Gene Expression Response to Sclerostin Inhibition in Osteogenesis Imperfecta Bone
Rachel K Surowiec1,2, Lauren F Battle2, Stephen H Schlecht2,3
1Department of Biomedical Engineering University of Michigan Ann Arbor MI USA.
Abstract:
Sclerostin antibody (SclAb) therapy has been suggested as a novel therapeutic approach toward addressing the fragility phenotypic of osteogenesis imperfecta (OI). Observations of cellular and transcriptional responses to SclAb in OI have been limited to mouse models of the disorder, leaving a paucity of data on the human OI osteoblastic cellular response to the treatment. Here, we explore factors associated with response to SclAb therapy in vitro and in a novel xenograft model using OI bone tissue derived from pediatric patients. Bone isolates (approximately 2 mm3) from OI patients (OI type III, type III/IV, and type IV, n = 7; non-OI control, n = 5) were collected to media, randomly assigned to an untreated (UN), low-dose SclAb (TRL, 2.5 μg/mL), or high-dose SclAb (TRH, 25 μg/mL) group, and maintained in vitro at 37°C. Treatment occurred on days 2 and 4 and was removed on day 5 for TaqMan qPCR analysis of genes related to the Wnt pathway. A subset of bone was implanted s.c. into an athymic mouse, representing our xenograft model, and treated (25 mg/kg s.c. 2×/week for 2/4 weeks). Implanted OI bone was evaluated using μCT and histomorphometry. Expression of Wnt/Wnt-related targets varied among untreated OI bone isolates. When treated with SclAb, OI bone showed an upregulation in osteoblast and osteoblast progenitor markers, which was heterogeneous across tissue. Interestingly, the greatest magnitude of response generally corresponded to samples with low untreated expression of progenitor markers. Conversely, samples with high untreated expression of these markers showed a lower response to treatment. in vivo implanted OI bone showed a bone-forming response to SclAb via μCT, which was corroborated by histomorphometry. SclAb induced downstream Wnt targets WISP1 and TWIST1, and elicited a compensatory response in Wnt inhibitors SOST and DKK1 in OI bone with the greatest magnitude from OI cortical bone. Understanding patients' genetic, cellular, and morphological bone phenotypes may play an important role in predicting treatment response. This information may aid in clinical decision-making for pharmacological interventions designed to address fragility in OI. © 2020 The Authors. JBMR Plus published by Wiley Periodicals, Inc. on behalf of American Society for Bone and Mineral Research.
Insights
Sclerostin antibody therapy shows potential for osteogenesis imperfecta (OI), increasing bone formation markers in patient-derived bone. Response to sclerostin antibody (SclAb) treatment varied, suggesting patient phenotype influences efficacy.
Area of Science:
- Bone Biology and Disease
- Pharmacological Interventions
- Regenerative Medicine
Background:
- Osteogenesis imperfecta (OI) is characterized by bone fragility.
- Sclerostin antibody (SclAb) therapy is a potential treatment for OI.
- Limited data exists on SclAb response in human OI cells.
Purpose of the Study:
- To investigate SclAb therapy's effects on human OI bone cells in vitro.
- To evaluate SclAb response in a novel xenograft model using OI bone.
- To identify factors influencing SclAb treatment response in OI.
Main Methods:
- Human OI bone isolates were treated with varying doses of SclAb in vitro.
- Gene expression of Wnt pathway targets was analyzed via qPCR.
- OI bone xenografts were implanted in mice and treated with SclAb, followed by micro-CT and histomorphometry.
Main Results:
- SclAb treatment upregulated osteoblast and progenitor markers in OI bone, with heterogeneous responses.
- Lower baseline progenitor marker expression correlated with a greater SclAb response.
- In vivo, SclAb promoted bone formation in OI xenografts and modulated Wnt pathway gene expression.
Conclusions:
- SclAb therapy can stimulate bone formation in human OI bone tissue.
- Patient-specific genetic, cellular, and morphological factors may predict SclAb treatment response.
- Understanding these factors is crucial for clinical decision-making in OI treatment.
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