Phosphocitrate Is Superior to Pyrophosphate in Preventing Soft Connective Tissue Calcification in a Mouse Model of Pseudoxanthoma Elasticum
Rajpar, I.; Shao, C.; Ng, C.; Niaziorimi, F.; Beiriger, J.; Turhanen, P.; van de Wetering, K.
Show abstract
Pseudoxanthoma elasticum (PXE) is a rare inherited disorder characterized by progressive ectopic calcification of soft connective tissues, including skin, arteries, and eyes, leading to significant morbidity. PXE results from loss of functional ABCC6, a liver specific ATP efflux conduit. Reduced ATP release into the circulation limits its conversion into AMP and the mineralization inhibitor pyrophosphate (PPi). Consequently, low plasma PPi levels drive ectopic calcification in PXE. Although oral PPi supplementation can inhibit ectopic calcification in Abcc6-/- mice, impractically high doses are needed, due to its rapid hydrolysis in the gastrointestinal tract. Here, we evaluated phosphocitrate, an exceedingly more potent mineralization inhibitor, in vitro and in Abcc6-/- mice. In ATDC5 cells, 1 {micro}M phosphocitrate significantly inhibited mineralization following induction, comparable to approximately tenfold higher concentrations of PPi. In vivo, daily intraperitoneal administration of phosphocitrate (4.7 {micro}mol/kg bw) markedly reduced calcification in muzzle skin and kidneys, whereas an at least fivefold higher dose of PPi was needed to achieve a similar effect. Oral administration required substantially higher doses of both compounds ([~]2.4 mmol/kg bw), but PC remained more effective than PPi at inhibiting soft tissue calcification in Abcc6-/- mice. Importantly, unlike PPi, oral phosphocitrate did not adversely affect skeletal strength or stiffness, even at supraphysiological doses. In summary, phosphocitrate is a more potent inhibitor of ectopic calcification than PPi in Abcc6-/- mice. While optimization of oral delivery remains necessary, its increased potency supports the potential of alternative administration routes, including subcutaneous delivery, as a practical therapeutic strategy for PXE.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Propranolol promotes bone formation and limits resorption through novel mechanisms during anabolic parathyroid hormone treatment in female C57BL/6J mice 95%
- Control of alveolar bone development, homeostasis, and socket healing by salt inducible kinases 95%
- Osteomacs support osteoclast-mediated resorption and contribute to bone pathology in a postmenopausal osteoporosis mouse model 94%
Similar papers in this journal
Similar papers in this journal
- Dimeric R25CPTH(1-34) Activates the Parathyroid Hormone-1 Receptor in vitro and Stimulates Bone Formation in Osteoporotic Female Mice 94%
- Irisin directly stimulates osteoclastogenesis and bone resorption in vitro and in vivo 94%
- Sclerostin Small Molecule Inhibitors Promote Osteogenesis by Activating Canonical Wnt and BMP Pathways 94%
Similar papers in this journal
Similar papers in this journal
- Soluble RANKL exaggerates hindlimb suspension-induced osteopeniabut not muscle protein balance 95%
- Disease Modifying Osteoarthritis Drug Discovery Using A Temporal Phenotypic Reporter In Primary Human Chondrocytes 90%
- Circulating miRNAs associated with bone mineral density in healthy adult baboons. 90%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.