Osteogenic Potential of Nano-Hydroxyapatite and Strontium-Substituted Nano-Hydroxyapatite

被引:6
|
作者
Kontogianni, Georgia-Ioanna [1 ]
Coelho, Catarina [2 ]
Gauthier, Remy [3 ,4 ]
Fiorilli, Sonia [3 ]
Quadros, Paulo [2 ]
Vitale-Brovarone, Chiara [3 ]
Chatzinikolaidou, Maria [1 ,5 ]
机构
[1] Univ Crete, Dept Mat Sci & Technol, Iraklion 70013, Greece
[2] FLUIDINOVA SA, P-4475188 Maia, Portugal
[3] Politecn Torino, Dept Appl Sci & Technol, I-10129 Turin, Italy
[4] Univ Claude Bernard Lyon 1, CNRS, INSA Lyon, UMR 5510,MATEIS, F-69621 Villeurbanne, France
[5] Fdn Res & Technol Hellas FORTH, Inst Elect Struct & Laser IESL, Iraklion 70013, Greece
关键词
bone regeneration; osteoinduction; cytotoxicity; osteogenic differentiation; pre-osteoblasts; RT-qPCR; IN-VITRO; BONE; DIFFERENTIATION; RANELATE; RESORPTION; CALCIUM; MINERALIZATION; NANOPARTICLES; PROLIFERATION; STIMULATION;
D O I
10.3390/nano13121881
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nanohydroxyapatite (nanoHA) is the major mineral component of bone. It is highly biocompatible, osteoconductive, and forms strong bonds with native bone, making it an excellent material for bone regeneration. However, enhanced mechanical properties and biological activity for nanoHA can be achieved through enrichment with strontium ions. Here, nanoHA and nanoHA with a substitution degree of 50 and 100% of calcium with strontium ions (Sr-nanoHA_50 and Sr-nanoHA_100, respectively) were produced via wet chemical precipitation using calcium, strontium, and phosphorous salts as starting materials. The materials were evaluated for their cytotoxicity and osteogenic potential in direct contact with MC3T3-E1 pre-osteoblastic cells. All three nanoHA-based materials were cytocompatible, featured needle-shaped nanocrystals, and had enhanced osteogenic activity in vitro. The Sr-nanoHA_100 indicated a significant increase in the alkaline phosphatase activity at day 14 compared to the control. All three compositions revealed significantly higher calcium and collagen production up to 21 days in culture compared to the control. Gene expression analysis exhibited, for all three nanoHA compositions, a significant upregulation of osteonectin and osteocalcin on day 14 and of osteopontin on day 7 compared to the control. The highest osteocalcin levels were found for both Sr-substituted compounds on day 14. These results demonstrate the great osteoinductive potential of the produced compounds, which can be exploited to treat bone disease.
引用
收藏
页数:17
相关论文
共 50 条
  • [1] BIOCOMPATIBILITY ASSESSMENT OF PURE AND STRONTIUM-SUBSTITUTED NANO-HYDROXYAPATITE FOR BONE REGENERATION
    Chatzinikolaidou, Maria
    Kontogianni, Georgia-Ioanna
    Kavasi, Rafaela-Maria
    Azevedo, Antonio
    Quadros, Paulo
    Montalbano, Giorgia
    Fiorilli, Sonia
    Brovarone, Chiara Vitale
    TISSUE ENGINEERING PART A, 2022, 28 : S375 - S376
  • [2] Promotion of In Vitro Osteogenic Activity by Melt Extrusion-Based PLLA/PCL/PHBV Scaffolds Enriched with Nano-Hydroxyapatite and Strontium Substituted Nano-Hydroxyapatite
    Kontogianni, Georgia-Ioanna
    Bonatti, Amedeo Franco
    De Maria, Carmelo
    Naseem, Raasti
    Melo, Priscila
    Coelho, Catarina
    Vozzi, Giovanni
    Dalgarno, Kenneth
    Quadros, Paulo
    Vitale-Brovarone, Chiara
    Chatzinikolaidou, Maria
    POLYMERS, 2023, 15 (04)
  • [3] The osteogenic effects of sponges synthesized with biomaterials and nano-hydroxyapatite
    Lee, Woong Jin
    Cho, Kyoungjoo
    Jung, Gunwoo
    Kim, Aaron Youngjae
    Kim, Gyung Whan
    BIOMEDICAL PHYSICS & ENGINEERING EXPRESS, 2023, 9 (04)
  • [4] Polyurethane/nano-hydroxyapatite composite films as osteogenic platforms
    Jackson, Bailey K.
    Bow, Austin J.
    Kannarpady, Ganesh
    Biris, Alexandru S.
    Anderson, David E.
    Dhar, Madhu
    Bourdo, Shawn E.
    JOURNAL OF BIOMATERIALS SCIENCE-POLYMER EDITION, 2018, 29 (12) : 1426 - 1443
  • [5] Nano-hydroxyapatite and nano-hydroxyapatite/zinc oxide scaffold for bone tissue engineering application
    Heidari, Fatemeh
    Bazargan-Lari, Reza
    Razavi, Mehdi
    Fahimipour, Farahnaz
    Vashaee, Daryoosh
    Tayebi, Lobat
    INTERNATIONAL JOURNAL OF APPLIED CERAMIC TECHNOLOGY, 2020, 17 (06) : 2752 - 2761
  • [6] Dielectric properties of Pure and Strontium doped Nano-Hydroxyapatite
    Tank, Kashmira P.
    Jogiya, Bhoomika V.
    Kanchan, D. K.
    Joshi, M. J.
    ADVANCES IN MATERIALS SCIENCE AND TECHNOLOGY (AMST), 2014, 209 : 151 - +
  • [7] Osteogenesis of bone marrow mesenchymal stem cells on strontium-substituted nano-hydroxyapatite coated roughened titanium surfaces
    Yang, Hua-Wei
    Lin, Mao-Han
    Xu, Yuan-Zhi
    Shang, Guang-Wei
    Wang, Rao-Rao
    Chen, Kai
    INTERNATIONAL JOURNAL OF CLINICAL AND EXPERIMENTAL MEDICINE, 2015, 8 (01): : 257 - 264
  • [8] Interplay between surface chemistry and osteogenic behaviour of sulphate substituted nano-hydroxyapatite
    Radha, G.
    Venkatesan, Balaji
    Jaisankar, Sellamuthu N.
    Rajashree, P.
    Balakumar, S.
    MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2021, 120
  • [9] Electrospraying of a nano-hydroxyapatite suspension
    Huang, J
    Jayasinghe, SN
    Best, SM
    Edirisinghe, MJ
    Brooks, RA
    Bonfield, W
    JOURNAL OF MATERIALS SCIENCE, 2004, 39 (03) : 1029 - 1032
  • [10] Electrospraying of a nano-hydroxyapatite suspension
    J. Huang
    S.N. Jayasinghe
    S. M. Best
    M.J. Edirisinghe
    R. A. Brooks
    W. Bonfield
    Journal of Materials Science, 2004, 39 : 1029 - 1032