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Drug discovery of sclerostin inhibitors
Sifan Yu1,2, Dijie Li1,2,3, Ning Zhang4
1Law Sau Fai Institute for Advancing Translational Medicine in Bone and Joint Diseases, School of Chinese Medicine, Hong Kong Baptist University, Kowloon Tsai, Hong Kong 999077, China.
Abstract:
Sclerostin, a protein secreted from osteocytes, negatively regulates the WNT signaling pathway by binding to the LRP5/6 co-receptors and further inhibits bone formation and promotes bone resorption. Sclerostin contributes to musculoskeletal system-related diseases, making it a promising therapeutic target for the treatment of WNT-related bone diseases. Additionally, emerging evidence indicates that sclerostin contributes to the development of cancers, obesity, and diabetes, suggesting that it may be a promising therapeutic target for these diseases. Notably, cardiovascular diseases are related to the protective role of sclerostin. In this review, we summarize three distinct types of inhibitors targeting sclerostin, monoclonal antibodies, aptamers, and small-molecule inhibitors, from which monoclonal antibodies have been developed. As the first-in-class sclerostin inhibitor approved by the U.S. FDA, the monoclonal antibody romosozumab has demonstrated excellent effectiveness in the treatment of postmenopausal osteoporosis; however, it conferred high cardiovascular risk in clinical trials. Furthermore, romosozumab could only be administered by injection, which may cause compliance issues for patients who prefer oral therapy. Considering these above safety and compliance concerns, we therefore present relevant discussion and offer perspectives on the development of next-generation sclerostin inhibitors by following several ways, such as concomitant medication, artificial intelligence-based strategy, druggable modification, and bispecific inhibitors strategy.
Insights
Sclerostin inhibitors, like romosozumab, show promise for bone diseases but have safety concerns. Future research focuses on developing safer, next-generation sclerostin inhibitors for better patient outcomes.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Sclerostin, an osteocyte-secreted protein, inhibits bone formation by blocking WNT signaling via LRP5/6 co-receptors.
- Sclerostin is implicated in bone diseases, cancer, obesity, diabetes, and cardiovascular conditions.
- Current sclerostin inhibitors include monoclonal antibodies, aptamers, and small molecules.
Purpose of the Study:
- To review existing sclerostin inhibitors and their therapeutic potential.
- To discuss the efficacy and limitations of the first-in-class monoclonal antibody, romosozumab.
- To explore strategies for developing next-generation sclerostin inhibitors addressing safety and compliance.
Main Methods:
- Literature review of sclerostin inhibitors.
- Analysis of clinical trial data for romosozumab.
- Discussion of novel therapeutic development strategies.
Main Results:
- Romosozumab, an FDA-approved monoclonal antibody, is effective for postmenopausal osteoporosis but carries cardiovascular risks.
- Injection-based administration of romosozumab may pose compliance challenges.
- Multiple therapeutic avenues are being explored for improved sclerostin inhibition.
Conclusions:
- Sclerostin is a viable therapeutic target for various diseases.
- Next-generation sclerostin inhibitors are needed to overcome the limitations of current therapies.
- Future strategies include concomitant medication, AI-driven approaches, druggable modifications, and bispecific inhibitors.

