Javascript must be enabled to continue!
Strontium‐containing mineralized phospholipid coatings improve osseointegration in osteoporotic rats
View through CrossRef
AbstractSurface treatments play an important role in enhancing the osseointegration of Titanium (Ti) and its alloys. This study introduces a method employing biomimetic hydroxyapatite (Hap) deposition guided by molecularly organized phospholipids, affixed to the metal implant surface. Using the Langmuir–Blodgett technique, phospholipids were deposited onto Ti‐screws by using CaCl2 or CaCl2/SrCl2 aqueous solution in the subphase of a Langmuir trough in the target proportion (i.e. 10 and 90 mol% of Sr2+ in relation of Ca2+) followed by immersion in phosphate buffer and in supersaturated simulated body fluid. Coating composition and morphology were evaluated using infrared spectroscopy and scanning electron microscopy, respectively, while contact angle measurements assessed coating wettability and surface energy. Randomized screws were then implanted into the tibias of healthy and osteoporotic female rats (G1: Control‐Machined, G2: Hap, G3: HapSr10, G4: HapSr90). Osseointegration, assessed 60 days post‐implantation, included reverse torque, fluorochrome area, bone tissue‐screw contact area, and linear extent of bone‐screw contact. Results, grouped by surface treatment (Machined, Hap, HapSr10, HapSr90), revealed that the deposition of Hap, HapSr10, and HapSr90 resulted in thin and rough coatings composed of hydroxyapatite (Hap) on the screw surface with nanoscale pores. The coatings resulted in increased wettability and surface energy of Ti surfaces. The minerals are chemically similar to natural bone apatite as revealed by FTIR analysis. In vivo analyses indicated higher torque values for strontium‐containing surfaces in the osteoporotic group (p = 0.02) and, in the control group superior torque for screw removal on the Hap surface (p = 0.023). Hydroxyapatite‐treated surfaces enhance morphology, composition, and reactivity, promoting screw osseointegration in healthy and osteoporotic female rats. The incorporation of strontium into the mineral phase has been proposed to not only stimulate osteoblast activity but also reduce osteoclastic resorption, which may explain the improved outcomes observed here in experimental osteoporotic conditions.
Title: Strontium‐containing mineralized phospholipid coatings improve osseointegration in osteoporotic rats
Description:
AbstractSurface treatments play an important role in enhancing the osseointegration of Titanium (Ti) and its alloys.
This study introduces a method employing biomimetic hydroxyapatite (Hap) deposition guided by molecularly organized phospholipids, affixed to the metal implant surface.
Using the Langmuir–Blodgett technique, phospholipids were deposited onto Ti‐screws by using CaCl2 or CaCl2/SrCl2 aqueous solution in the subphase of a Langmuir trough in the target proportion (i.
e.
10 and 90 mol% of Sr2+ in relation of Ca2+) followed by immersion in phosphate buffer and in supersaturated simulated body fluid.
Coating composition and morphology were evaluated using infrared spectroscopy and scanning electron microscopy, respectively, while contact angle measurements assessed coating wettability and surface energy.
Randomized screws were then implanted into the tibias of healthy and osteoporotic female rats (G1: Control‐Machined, G2: Hap, G3: HapSr10, G4: HapSr90).
Osseointegration, assessed 60 days post‐implantation, included reverse torque, fluorochrome area, bone tissue‐screw contact area, and linear extent of bone‐screw contact.
Results, grouped by surface treatment (Machined, Hap, HapSr10, HapSr90), revealed that the deposition of Hap, HapSr10, and HapSr90 resulted in thin and rough coatings composed of hydroxyapatite (Hap) on the screw surface with nanoscale pores.
The coatings resulted in increased wettability and surface energy of Ti surfaces.
The minerals are chemically similar to natural bone apatite as revealed by FTIR analysis.
In vivo analyses indicated higher torque values for strontium‐containing surfaces in the osteoporotic group (p = 0.
02) and, in the control group superior torque for screw removal on the Hap surface (p = 0.
023).
Hydroxyapatite‐treated surfaces enhance morphology, composition, and reactivity, promoting screw osseointegration in healthy and osteoporotic female rats.
The incorporation of strontium into the mineral phase has been proposed to not only stimulate osteoblast activity but also reduce osteoclastic resorption, which may explain the improved outcomes observed here in experimental osteoporotic conditions.
Related Results
Techniques to Remove Press-Fit Osseointegration Implants
Techniques to Remove Press-Fit Osseointegration Implants
Background:
Transcutaneous osseointegration for amputees (TOFA) has proven to consistently, significantly improve the quality of life and...
Improved organic coating delamination resistance using physical vapour deposited Zn-Mg layers on strip steel
Improved organic coating delamination resistance using physical vapour deposited Zn-Mg layers on strip steel
Physical vapour deposition (PVD) of zinc alloy coatings was investigated as a potential substitute process for commercially available hot dip galvanising (HDG) of strip steel. Ther...
ENHANCED FIXATION STABILITY IN MEDIAL MALLEOLAR FRACTURES: COMPARISON OF SINGLE VERSUS DOUBLE BICORTICAL SCREWS IN HEALTHY AND OSTEOPOROTIC BONE MODELS
ENHANCED FIXATION STABILITY IN MEDIAL MALLEOLAR FRACTURES: COMPARISON OF SINGLE VERSUS DOUBLE BICORTICAL SCREWS IN HEALTHY AND OSTEOPOROTIC BONE MODELS
Medial malleolar fractures are common orthopaedic injuries, particularly in osteoporotic populations, and present unique challenges due to reduced bone density and an increased ris...
Dental implants osseointegration in patients with osteoporosis
Dental implants osseointegration in patients with osteoporosis
The successful use of surgical and medical methods of jaw bone tissue restoration has been convincingly confirmed in clinical practice. At the same time, technologies are being dev...
Abnormal variations of the four factors in osteoporotic fractures
Abnormal variations of the four factors in osteoporotic fractures
Abstract
Objective: The classical osteoporotic signaling pathways include the four key factors (LRP5, Runx2, Osterix, and RANKL) influencing the regulation of osteogenesis ...
Abnormal variations of the four factors in osteoporotic fractures
Abnormal variations of the four factors in osteoporotic fractures
Abstract
Objective:
The classical osteoporotic signaling pathways include the four key factors (LRP5, Runx2, Osterix, and RANKL...
Non-radioactive strontium as a supplement to enhance osseointegration
Non-radioactive strontium as a supplement to enhance osseointegration
Abstract Introduction Due to its positive results on bone tissue, strontium also began to be used as an adjuvant in bone neoformation processes, mainly maxillofacial surgical proc...

