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Treatment of Autosomal Dominant Hypocalcemia Type 1 With the Calcilytic NPSP795 (SHP635)
Mary Scott Roberts1, Rachel I Gafni1, Beth Brillante1
1Skeletal Disorders and Mineral Homeostasis Section, National Institute of Dental and Craniofacial Research (NIDCR), National Institutes of Health (NIH), Bethesda, MD, USA.
Abstract:
Autosomal dominant hypocalcemia type 1 (ADH1) is a rare form of hypoparathyroidism caused by heterozygous, gain-of-function mutations of the calcium-sensing receptor gene (CAR). Individuals are hypocalcemic with inappropriately low parathyroid hormone (PTH) secretion and relative hypercalciuria. Calcilytics are negative allosteric modulators of the extracellular calcium receptor (CaR) and therefore may have therapeutic benefits in ADH1. Five adults with ADH1 due to four distinct CAR mutations received escalating doses of the calcilytic compound NPSP795 (SHP635) on 3 consecutive days. Pharmacokinetics, pharmacodynamics, efficacy, and safety were assessed. Parallel in vitro testing with subject CaR mutations assessed the effects of NPSP795 on cytoplasmic calcium concentrations (Ca2+i ), and ERK and p38MAPK phosphorylation. These effects were correlated with clinical responses to administration of NPSP795. NPSP795 increased plasma PTH levels in a concentration-dependent manner up to 129% above baseline (p = 0.013) at the highest exposure levels. Fractional excretion of calcium (FECa) trended down but not significantly so. Blood ionized calcium levels remained stable during NPSP795 infusion despite fasting, no calcitriol supplementation, and little calcium supplementation. NPSP795 was generally safe and well-tolerated. There was significant variability in response clinically across genotypes. In vitro, all mutant CaRs were half-maximally activated (EC50 ) at lower concentrations of extracellular calcium (Ca2+o ) compared to wild-type (WT) CaR; NPSP795 exposure increased the EC50 for all CaR activity readouts. However, the in vitro responses to NPSP795 did not correlate with any clinical parameters. NPSP795 increased plasma PTH levels in subjects with ADH1 in a dose-dependent manner, and thus, serves as proof-of-concept that calcilytics could be an effective treatment for ADH1. Albeit all mutations appear to be activating at the CaR, in vitro observations were not predictive of the in vivo phenotype or the response to calcilytics, suggesting that other parameters impact the response to the drug. © 2019 American Society for Bone and Mineral Research.
Insights
Calcilytics, like NPSP795, show promise for treating autosomal dominant hypocalcemia type 1 (ADH1) by increasing parathyroid hormone (PTH) levels. This study provides proof-of-concept for calcilytic therapy in ADH1, despite variable patient responses.
Area of Science:
- Endocrinology and Metabolism
- Genetics and Molecular Biology
- Pharmacology
Background:
- Autosomal dominant hypocalcemia type 1 (ADH1) is a rare disorder characterized by low calcium levels and inappropriately low parathyroid hormone (PTH) secretion, often due to gain-of-function mutations in the calcium-sensing receptor gene (CASR).
- Calcilytics, negative allosteric modulators of the calcium-sensing receptor (CaR), are being investigated as a potential therapeutic strategy for ADH1.
Purpose of the Study:
- To evaluate the safety, tolerability, pharmacokinetics, and efficacy of the calcilytic compound NPSP795 (SHP635) in adult patients with ADH1.
- To assess the in vitro effects of NPSP795 on mutant calcium-sensing receptors (CaR) and correlate these findings with clinical responses.
Main Methods:
- Five adult patients with ADH1 received escalating doses of NPSP795 over three consecutive days.
- Pharmacokinetic and pharmacodynamic parameters, including plasma PTH levels and fractional calcium excretion, were monitored.
- In vitro studies assessed NPSP795's impact on cytoplasmic calcium and signaling pathways in cells expressing mutant CaRs.
Main Results:
- NPSP795 administration led to a dose-dependent increase in plasma PTH levels, reaching up to 129% above baseline at the highest exposure.
- While fractional calcium excretion showed a downward trend, blood ionized calcium levels remained stable during treatment.
- NPSP795 was generally safe and well-tolerated, although significant variability in clinical response was observed among patients with different CASR mutations.
Conclusions:
- NPSP795 effectively increased plasma PTH levels in patients with ADH1, establishing proof-of-concept for calcilytic therapy in this condition.
- In vitro CaR activity did not consistently predict in vivo clinical response to NPSP795, suggesting other factors influence therapeutic outcomes.
- Further research is needed to understand the genotype-phenotype correlations and optimize calcilytic treatment strategies for ADH1.
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