Effect of Initial Dissolution Behavior on Cellular Response in Uncoated and Calcium Phosphate-Coated Magnesium Alloy

Abstract Biodegradable magnesium (Mg) alloys offer a promising alternative to permanent orthopedic implants due to their bone-like mechanical properties, biocompatibility, and complete degradation in vivo. However, the rapid dissolution that occurs during the early stages of immersion remains a critical challenge in their feasibility as a resorbable implant. In this work, RF magnetron-sputtered calcium phosphate (CaP) coatings of ∼0.5 μm and ∼1 μm thickness corresponding to 15- and 30-hour deposition times, respectively, were applied to a WE22 alloy. The effect on initial dissolution behavior, ion release, and cellular responses was evaluated when immersed for 1, 7, and 24 h. Uncoated WE22 exhibited rapid dissolution with substantial Mg2+ release (∼18 mg/L at 24 h) and raised pH levels from ∼7 to ∼8.8. While ∼0.5 μm CaP coatings reduced these effects, they showed greater mass gain and protein adhesion, suggesting potential coating inhomogeneity or nano-defects trapping corrosion constituents. The ∼1 μm coating provided notable corrosion resistance and maintained a dissolution environment most comparable to physiological conditions. U-2 OS cell viability assessments, including RR assay, DAPI staining, and SEM study, determined that cytotoxicity was concentration-dependent across all time points (p < 0.001), with 100% corrosion medium and uncoated WE22 most detrimental to viability. These findings demonstrate the potential for CaP coatings to effectively delay or control the initial corrosion of WE22 while providing enhanced biocompatibility compared to the uncoated substrate.

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Publication Details

Journal
ACS Omega
Published
2026-09-30
DOI
https://doi.org/10.1021/acsomega.6c04124
Primary Topic
Magnesium Alloys: Properties and Applications
Type
article
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article

Effect of Initial Dissolution Behavior on Cellular Response in Uncoated and Calcium Phosphate-Coated Magnesium Alloy

Aoife McFerran, Jonathan G. Acheson, Ellamay McIlhatton, Joanna Ward et al.
ACS Omega
Magnesium Alloys: Properties and Applications
article

Effect of Initial Dissolution Behavior on Cellular Response in Uncoated and Calcium Phosphate-Coated Magnesium Alloy

Aoife McFerran, Jonathan G. Acheson, Ellamay McIlhatton, Joanna Ward, John O’Connor, Jeremy Schaffer, Adam Griebel
article en

Abstract

Abstract Biodegradable magnesium (Mg) alloys offer a promising alternative to permanent orthopedic implants due to their bone-like mechanical properties, biocompatibility, and complete degradation in vivo. However, the rapid dissolution that occurs during the early stages of immersion remains a critical challenge in their feasibility as a resorbable implant. In this work, RF magnetron-sputtered calcium phosphate (CaP) coatings of ∼0.5 μm and ∼1 μm thickness corresponding to 15- and 30-hour deposition times, respectively, were applied to a WE22 alloy. The effect on initial dissolution behavior, ion release, and cellular responses was evaluated when immersed for 1, 7, and 24 h. Uncoated WE22 exhibited rapid dissolution with substantial Mg2+ release (∼18 mg/L at 24 h) and raised pH levels from ∼7 to ∼8.8. While ∼0.5 μm CaP coatings reduced these effects, they showed greater mass gain and protein adhesion, suggesting potential coating inhomogeneity or nano-defects trapping corrosion constituents. The ∼1 μm coating provided notable corrosion resistance and maintained a dissolution environment most comparable to physiological conditions. U-2 OS cell viability assessments, including RR assay, DAPI staining, and SEM study, determined that cytotoxicity was concentration-dependent across all time points (p < 0.001), with 100% corrosion medium and uncoated WE22 most detrimental to viability. These findings demonstrate the potential for CaP coatings to effectively delay or control the initial corrosion of WE22 while providing enhanced biocompatibility compared to the uncoated substrate.

ACS Omega
University of Ulster (GB)
Clean water and sanitation
Openalex Percentile: Top 23%
Magnesium Alloys: Properties and Applications
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Effect of Initial Dissolution Behavior on Cellular Response in Uncoated and Calcium Phosphate-Coated Magnesium Alloy — Aoife McFerran, Jonathan G. Acheson, et al. · ACS Omega (2026) | TGRS Research Map | TGRS