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Published on: October 28, 2014
Calcimimetic and Calcilytic Drugs: Feats, Flops, and Futures
1MetisMedica, 13 Poplar Plains Road, Toronto, ON, M4V 2M7, Canada. nemeth.ed@gmail.com.
Abstract:
The actions of extracellular Ca(2+) in regulating parathyroid gland and kidney functions are mediated by the extracellular calcium receptor (CaR), a G protein-coupled receptor. The CaR is one of the essential molecules maintaining systemic Ca(2+) homeostasis and is a molecular target for drugs useful in treating bone and mineral disorders. Ligands that activate the CaR are termed calcimimetics and are classified as either agonists (type I) or positive allosteric modulators (type II); calcimimetics inhibit the secretion of parathyroid hormone (PTH). Cinacalcet is a type II calcimimetic that is used to treat secondary hyperparathyroidism in patients receiving dialysis and to treat hypercalcemia in some forms of primary hyperparathyroidism. The use of cinacalcet among patients with secondary hyperparathyroidism who are managed with dialysis effectively lowers circulating PTH levels, reduces serum phosphorus and FGF23 concentrations, improves bone histopathology, and may diminish skeletal fracture rates and the need for parathyroidectomy. A second generation type II calcimimetic (AMG 416) is currently under regulatory review. Calcilytics are CaR antagonists that stimulate the secretion of PTH. Several calcilytic compounds have been evaluated as orally active anabolic therapies for postmenopausal osteoporosis but clinical development of all of them has been abandoned because they lacked clinical efficacy. Calcilytics might be repurposed for new indications like autosomal dominant hypocalcemia or other disorders beyond those involving systemic Ca(2+) homeostasis.
Insights
Calcimimetics, like cinacalcet, effectively manage secondary hyperparathyroidism by lowering parathyroid hormone (PTH) and improving bone health in dialysis patients. Calcilytics, CaR antagonists, show potential for other conditions beyond osteoporosis.
Area of Science:
- Endocrinology
- Nephrology
- Pharmacology
Background:
- The extracellular calcium-sensing receptor (CaR) regulates parathyroid and kidney functions, crucial for calcium homeostasis.
- CaR is a key target for treating bone and mineral disorders.
Purpose of the Study:
- To review the role of calcimimetics and calcilytics in managing conditions related to CaR signaling.
- To highlight the clinical utility of cinacalcet and potential of calcilytics.
Main Methods:
- Literature review of calcimimetics (type I and II) and calcilytics.
- Analysis of clinical outcomes associated with cinacalcet use in secondary hyperparathyroidism.
- Evaluation of calcilytic development for osteoporosis and potential new indications.
Main Results:
- Type II calcimimetics, such as cinacalcet, effectively reduce PTH, phosphorus, and FGF23 in dialysis patients with secondary hyperparathyroidism.
- Cinacalcet improves bone histopathology and may reduce fracture risk and parathyroidectomy necessity.
- Second-generation calcimimetics are under review; calcilytics failed in osteoporosis trials but may be repurposed.
Conclusions:
- Calcimimetics are valuable therapeutic agents for disorders of mineral metabolism.
- Calcilytics, despite past failures, may offer future therapeutic potential for other CaR-related conditions.
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