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Calcium and Phosphate Solubility Curve Equation for Determining Precipitation Limits in Compounding Parenteral
Collin Anderson1, Larry Eggert2, Kristie Fitzgerald3
1Primary Children's Hospital, Salt Lake City, UT, USA.
Insights
This study presents new equations for determining safe calcium and phosphate limits in parenteral nutrition (PN), crucial for preventing precipitation in neonatal intensive care units (NICUs). These equations improve PN safety and efficacy.
Area of Science:
- Parenteral Nutrition
- Clinical Pharmacy
- Neonatal Medicine
Background:
- Calcium and phosphate solubility in parenteral nutrition (PN) has been studied for over 40 years, driven by neonatal rickets and osteomalacia.
- Early research established precipitation curves to guide PN formulation, but custom PN orders often differ from tested conditions.
- Failure to manage PN solubility can result in severe patient harm.
Observation:
- Existing PN solubility data are based on a limited number of conditions, while actual PN formulations vary widely.
- Commercial software aids pharmacists in assessing PN precipitation risk, using graphical comparisons or proprietary algorithms.
- This work introduces novel equations developed and validated over two decades within a network of neonatal intensive care units.
Findings:
- The presented equations accurately predict calcium and phosphate solubility across a wide range of PN admixture conditions.
- These equations have been successfully used for over 20 years in a regional NICU network.
- The equations integrate seamlessly with electronic PN prescribing programs.
Implications:
- Implementing these equations can enhance the safety and efficacy of PN therapy, particularly in vulnerable neonatal populations.
- Standardizing PN formulation through reliable solubility prediction reduces the risk of precipitation-related complications.
- This research provides a valuable tool for clinicians and pharmacists to optimize PN prescribing and compounding practices.
Abstract:
Clinicians have published research and reports on calcium and phosphate solubility within parenteral nutrition (PN) for over 40 years. Foundational empirical laboratory investigation in the 1980s motivated by the prevalence of neonatal rickets and osteomalacia in the Neonatal Intensive Care Unit (NICU) population led to precipitation curves that have guided PN prescribing and compounding. Over subsequent decades, numerous publications have expanded the knowledge of factors influencing calcium and phosphate solubility in formulating optimal and safe PN admixtures. Failure to adhere to known principles has led to serious injury and death. Known solubility curves are derived from empiric analysis of a finite number of conditions and concentrations, whereas custom PN orders vary widely and rarely match the admixture composition in the data set used to derive the published precipitation curves. Various commercial platforms have been developed to aid the pharmacist in assessing the potential for precipitation when evaluating a PN order. Some applications plot the calcium and phosphate concentrations of the prescribed PN against known published graphs most similar to the order, allowing the pharmacist to judge the risk of precipitation. Other approaches use intellectually protected trade secret algorithms to determine calcium and phosphate solubility across a continuum of conditions. This publication reports equations that have been used successfully for over 2 decades in our regional network of NICUs and shared with others to determine safe prescribing limits for calcium and phosphate concentrations using an electronic PN prescribing program.
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