Related Experiment Video
Updated: Aug 7, 2026

A Semi-Automated and Reproducible Biological-Based Method to Quantify Calcium Deposition In Vitro
Published on: June 2, 2022
Calcium phosphate metabolism and bone mineral density with nocturnal hemodialysis
Nigel Toussaint1, Janeane Boddington, Rosemary Simmonds
1Department of Renal Medicine, The Geelong Hospital, Barwon Health, Geelong, Vic., Australia. nigel2saint@hotmail.com
Insights
Nocturnal hemodialysis (NHD) improves phosphate control and reduces calcium x phosphate product, lowering vascular calcification risk. Higher dialysate calcium prevents osteopenia, but optimal levels for cardiovascular health require further study.
Area of Science:
- Nephrology
- Cardiovascular Health
- Mineral Metabolism
Background:
- Elevated calcium x phosphate (Ca x P) product is a risk factor for vascular calcification and cardiovascular death in dialysis patients.
- Nocturnal hemodialysis (NHD) offers biochemical advantages over conventional hemodialysis (CHD), including superior phosphate control.
- Concerns exist that higher dialysate calcium may increase serum calcium and Ca x P, potentially worsening vascular disease.
Purpose of the Study:
- To analyze calcium and phosphate metabolism in patients undergoing NHD.
- To evaluate the impact of low-flux (LF) and high-flux (HF) NHD on bone mineral density (BMD) and mineral levels.
- To determine if increased dialysate calcium concentration in HF NHD prevents osteopenia without raising Ca x P.
Main Methods:
- Retrospective analysis of 11 patients on NHD for at least 12 months.
- Comparison of predialysis serum albumin, parathyroid hormone, phosphate, calcium, and Ca x P between CHD, LF NHD, and HF NHD.
- Prospective measurement of BMD using DEXA scans at baseline and yearly intervals.
Main Results:
- Mean predialysis phosphate levels were significantly lower on LF NHD and HF NHD compared to CHD.
- Predialysis calcium levels decreased upon conversion from CHD to LF NHD.
- Mean Ca x P was significantly reduced on both LF NHD and HF NHD compared to CHD, despite higher dialysate calcium in HF NHD.
Conclusions:
- Elevated dialysate calcium concentration is necessary to prevent osteopenia in NHD patients.
- NHD provides superior phosphate control, leading to a reduced Ca x P product and lower risk of vascular calcification.
- The optimal dialysate calcium concentration remains undetermined due to concerns about cardiovascular mortality.
Abstract:
An elevated calcium x phosphate product (Ca x P) is an independent risk factor for vascular calcification and cardiovascular death in dialysis patients. More physiological dialysis in patients undergoing nocturnal hemodialysis (NHD) has been shown to produce biochemical advantages compared with conventional hemodialysis (CHD) including superior phosphate (P) control. Benefits of dialysate with greater calcium (Ca) concentration are also reported in NHD to prevent Ca depletion and subsequent hyperparathyroidism, but there are concerns that a higher dialysate Ca concentration may contribute to raised serum Ca levels and greater Ca x P and vascular disease. The NHD program at our unit has been established for 4 years, and we retrospectively analyzed Ca and P metabolism in patients undergoing NHD (8-9 h/night, 6 nights/week). Our cohort consists of 11 patients, mean age 49.3 years, who had been on NHD for a minimum of 12 months, mean 34.3 months. Commencement was with low-flux (LF) NHD and 1.5 mmol/L Ca dialysate concentration, with conversion to high-flux (HF) dialyzers after a period (mean duration 18.7 months). We compared predialysis serum albumin, intact parathyroid hormone, P, total corrected Ca, and Ca x P at baseline on CHD, after conversion to LF NHD and during HF NHD. We also prospectively measured bone mineral density (BMD) on all patients entering the NHD program. Bone densitometry (DEXA) scans were performed at baseline (on CHD) and yearly after commencement of NHD. With the introduction of HF dialyzers, the Ca dialysate concentration was concurrently raised to 1.75 mmol/L after demonstration on DEXA scans of worsening osteopenia. Analysis of BMD, for all parameters, revealed a decrease over the first 12 to 24 months (N = 11). When the dialysate Ca bath was increased, the median T and Z scores subsequently increased (data at 3 years, N = 6). The mean predialysis P levels were significantly lower on LF NHD vs. CHD (1.51 vs. 1.77 mmol/L, p = 0.014), while on HF NHD P was lower again (1.33 mmol/L, p = 0.001 vs. CHD). Predialysis Ca levels decreased with conversion from CHD to LF NHD (2.58 vs. 2.47 mmol/L, p = 0.018) using a 1.5 mmol/L dialysate Ca concentration. The mean Ca x P on CHD was 4.56 compared with a significant reduction of 3.74 on LF NHD (p = 0.006) and 3.28 on HF NHD (p = 0.001 vs. CHD), despite the higher dialysate Ca in the latter. We conclude that an elevated dialysate Ca concentration is required to prevent osteopenia. With concerns that prolonged higher Ca levels contribute to increased cardiovascular mortality, the optimal Ca dialysate bath is still unknown. Better P control on NHD, however, reduces the overall Ca x P, despite the increased Ca concentration, therefore reducing the risk of vascular calcification.
Related Concept Videos
Skeleton and Calcium Homeostasis
Roles of Electrolytes: Calcium and Phosphate
The calcium concentration in blood plasma is primarily regulated...
Bone Remodeling
Hormones and Bone Tissue
Hormones That Influence Osteoblasts and/or Maintain the Matrix
Several hormones are necessary for controlling bone growth and maintaining the bone matrix. The pituitary gland secretes growth hormone (GH), which, as its name implies, controls bone growth. This happens in several ways: first, it triggers chondrocyte...
Bone Disorders
Bone deposition is also affected by the levels of sex hormones like estrogen and testosterone that promote osteoblast activity and bone matrix synthesis. When the level of these hormones decreases due to aging, it causes a reduction in bone deposition. As a result, bone resorption by osteoclasts...
What is the Skeletal System?
