Published September 2018 | Version v1
Journal article

Assessment of the degradation rates and effectiveness of different coated Mg-Zn-Ca alloy scaffolds for in vivo repair of critical-size bone defects

  • 1. The Second Affiliated Hospital of Harbin Medical University (China)
  • 2. The Affiliated Zhongshan hospital of Dalian University (China)
  • 3. The Second Affiliated Hospital of Qiqihar Medical College (China)
  • 4. Harbin Institute of Technology (China)
  • 5. Qiqihar Medical College (China)

Description

Surgical repair of bone defects remains challenging, and the search for alternative procedures is ongoing. Devices made of Mg for bone repair have received much attention owing to their good biocompatibility and mechanical properties. We developed a new type of scaffold made of a Mg-Zn-Ca alloy with a shape that mimics cortical bone and can be filled with morselized bone. We evaluated its durability and efficacy in a rabbit ulna-defect model. Three types of scaffold-surface coating were evaluated: group A, no coating; group B, a 10-μm microarc oxidation coating; group C, a hydrothermal duplex composite coating; and group D, an empty-defect control. X-ray and micro-computed tomography(micro-CT) images were acquired over 12 weeks to assess ulnar repair. A mechanical stress test indicated that bone repair within each group improved significantly over time (P < 0.01). The degradation behavior of the different scaffolds was assessed by micro-CT and quantified according to the amount of hydrogen gas generated; these measurements indicated that the group C scaffold better resisted corrosion than did the other scaffold types (P < 0.05). Calcein fluorescence and histology revealed that greater mineral densities and better bone responses were achieved for groups B and C than for group A, with group C providing the best response. In conclusion, our Mg-Zn-Ca-alloy scaffold effectively aided bone repair. The group C scaffold exhibited the best corrosion resistance and osteogenesis properties, making it a candidate scaffold for repair of bone defects.

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Materials Science. Materials in Medicine
Journal Volume
29
Journal Issue
9
Journal Page Range
p. 1-11
ISSN
0957-4530
CODEN
JSMMEL

INIS

Country of Publication
United Kingdom
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
51021316
Subject category
S60: APPLIED LIFE SCIENCES;
Descriptors DEI
ALLOYS; COATINGS; COMPUTERIZED TOMOGRAPHY; CORROSION; CORROSION RESISTANCE; DENSITY; HARDNESS; IN VIVO; RABBITS; SKELETON; WEAR RESISTANCE
Descriptors DEC
ANIMALS; BODY; CHEMICAL REACTIONS; DIAGNOSTIC TECHNIQUES; MAMMALS; MECHANICAL PROPERTIES; ORGANS; PHYSICAL PROPERTIES; TOMOGRAPHY; VERTEBRATES

Optional Information

Copyright
Copyright (c) 2018 The Author(s)
Notes
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