4.8 Article

Fabrication of customized Ti6AI4V heterogeneous scaffolds with selective laser melting: Optimization of the architecture for orthopedic implant applications

期刊

ACTA BIOMATERIALIA
卷 126, 期 -, 页码 485-495

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.actbio.2021.03.040

关键词

Selected laser melting; Titanium alloy implants; Heterogeneous scaffold; Hydroxyapatite coating; Bone regeneration

资金

  1. National Key Research and Development Program of China [2018YFC1106800, 2018YFB1105600]
  2. National Natural Science Foundation of China [31971251]
  3. Sichuan Province Science & Technology Department Projects [2016CZYD0004, 2019JDTD0008, 2019YFH0079, 2017SZ0195]
  4. 111 Project [B16033]

向作者/读者索取更多资源

This study introduces a novel method for manufacturing heterogeneous porous titanium implants with three-level structures, which enhances in vitro cell proliferation and osteogenic behaviors. The porous structures at macro-/micro-/nanoscale were designed using CAD and laser power regulation, with a nano hydroxyapatite coating applied via a hydrothermal process. This research offers insights into the potential cyto-implant interaction mechanism and can contribute to the development of bone implants with accelerated osteointegration.
Orthopedic implants with heterogeneous porous structures were known as ideal bone osteointegration. This research introduced the selective laser melting (SLM), finite element analysis (FEA), and a hydrothermal process (HT) for manufacturing a three-level heterogeneous porous structure. The macroporous structure was designed via CAD and micropores were tuned via laser power regulation. A nano-size layer of hydroxyapatite crystals was coated by an HT process. The mechanical properties were reinforced via a core-shell structure with core reinforcement. The existence of micropores and nano-hydroxyapatite coating enhanced the in vitro proliferation of preosteoblasts and osteogenic cellular behaviors of rBMSCs. Thus, the three-level heterogeneous porous titanium implants could inspire researchers with potential clue of cyto-implant interaction mechanism, therefore building ideal orthopedic implants with accelerated osteointegration. Statement of significance Porous structures of titanium implants play an important role in bone tissue regeneration; The geometrical environment influence cell behaviour and bone tissue ingrowth in all macro-/micro-/nanoscale. In this study, a novel method to fabricate heterogeneous scaffolds and its macro-/micro-/nanoscopic structures were studied. A CAD model was used to obtain the macroscopic structure and the insufficient laser power was introduced for porous microstructure. Therefore, a layer of nano hydroxyapatite was coated via hydrothermal process. Cytoproliferation and cytodifferentiation results indicated that a integrity of regular/irregular, macro-/micro-/nanoscale porous structure had advance in recruiting stem cells and promoting differentiation. This research is beneficial to the development of bone implants with better bone regeneration ability. (c) 2021 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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