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Osteoblastgenic and Osteogenic Effects of KY-273 with CDK8/19 Inhibitory Activity in Bone Marrow Mesenchymal Stem
Megumi Yamamoto1,2, Yui Shibata2, Yuma Ito2
1United Graduate School of Drug Discovery and Medical Information Science, Gifu University.
Abstract:
Osteoporosis is caused by imbalance between osteogenesis and bone resorption, thus, osteogenic drugs and resorption inhibitors are used for treatment of osteoporosis. The present study examined the effects of (R)-4-(1-hydroxyethyl)-3-{4-[2-(tetrahydropyran-4-yloxy)ethoxy]phenoxy}benzamide (KY-273), a diphenyl ether derivative, on CDK8/19 activity, osteoblast differentiation and femoral bone using micro-computed tomography in female rats. KY-273 potently inhibited CDK8/19 activity, promoted osteoblast differentiation with an increase in alkaline phosphatase (ALP) activity, and gene expression of type I collagen, ALP and BMP-4 in mesenchymal stem cells (ST2 cells). In female rat femur, ovariectomy decreased metaphyseal trabecular bone volume (Tb.BV), mineral content (Tb.BMC), yet had no effect on metaphyseal and diaphyseal cortical bone volume (Ct.BV), mineral content (Ct.BMC) and strength parameters (BSPs). In ovaries-intact and ovariectomized rats, oral administration of KY-273 (10 mg/kg/d) for 6 weeks increased metaphyseal and diaphyseal Ct.BV, Ct.BMC, and BSPs without affecting medullary volume (Med.V), but did not affect Tb.BV and Tb.BMC. In ovariectomized rats, alendronate (3 mg/kg/d) caused marked restoration of Tb.BV, Tb.BMC and structural parameters after ovariectomy, and increased metaphyseal but not diaphyseal Ct.BV, Ct.BMC, and BSPs. In ovaries-intact and ovariectomized rats, by the last week, KY-273 increased bone formation rate/bone surface at the periosteal but not the endocortical side. These findings indicate that KY-273 causes osteogenesis in cortical bone at the periosteal side without reducing Med.V. In conclusion, KY-273 has cortical-bone-selective osteogenic effects by osteoblastogenesis via CDK8/19 inhibition in ovaries-intact and ovariectomized rats, and is an orally active drug candidate for bone diseases such as osteoporosis in monotherapy and combination therapy.
Insights
The novel compound KY-273 promotes osteoblastogenesis by inhibiting CDK8/19, leading to increased cortical bone formation. This drug candidate shows promise for treating osteoporosis and other bone diseases.
Area of Science:
- Pharmacology
- Bone Biology
- Drug Discovery
Background:
- Osteoporosis results from an imbalance between bone formation and resorption.
- Current treatments include osteogenic drugs and resorption inhibitors.
- Diphenyl ether derivatives represent a potential class of therapeutic agents.
Purpose of the Study:
- To investigate the effects of (R)-4-(1-hydroxyethyl)-3-{4-[2-(tetrahydropyran-4-yloxy)ethoxy]phenoxy}benzamide (KY-273) on CDK8/19 activity.
- To evaluate KY-273's impact on osteoblast differentiation and bone parameters in a rat model.
- To explore KY-273 as a potential therapeutic for osteoporosis.
Main Methods:
- Assessed CDK8/19 inhibition by KY-273.
- Examined osteoblast differentiation in mesenchymal stem cells (ST2 cells).
- Utilized micro-computed tomography to analyze femoral bone in ovariectomized and intact female rats.
Main Results:
- KY-273 potently inhibited CDK8/19 activity and promoted osteoblast differentiation.
- Oral administration of KY-273 increased cortical bone volume and strength in rat femurs.
- KY-273 demonstrated osteogenic effects on periosteal bone without affecting medullary volume.
Conclusions:
- KY-273 exhibits cortical-bone-selective osteogenic effects via CDK8/19 inhibition and osteoblastogenesis.
- KY-273 is an orally active drug candidate for osteoporosis and related bone diseases.
- Potential for monotherapy or combination therapy in treating bone disorders.
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