Effects of Vitamin A (Retinol) Release from Calcium Phosphate Matrices and Porous 3D Printed Scaffolds on Bone Cell Proliferation and Maturation

被引:13
|
作者
Vu, Ashley A. [1 ]
Kushram, Priya [1 ]
Bose, Susmita [1 ]
机构
[1] Washington State Univ, Sch Mech & Mat Engn, WM Keck Biomed Mat Res Lab, Pullman, WA 99164 USA
基金
美国国家卫生研究院;
关键词
retinol; vitamin A; PCL; PEG; bone scaffold; tricalcium phosphate; 3D printing; TRICALCIUM PHOSPHATE; OSTEOCLAST ACTIVITY; RESORPTION; OSTEOBLAST; STRONTIUM; POLYMERS; BIOLOGY;
D O I
10.1021/acsabm.1c01181
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Vitamin A is a fat-soluble compound widely known for vision health. Highly variable reports on its effects on bone health have necessitated further research to truly understand its role on bone cell proliferation. Retinol, one bioactive form of vitamin A, is incorporated into synthetic bone graft scaffolds for low load-bearing clinical bone treatment. The objective of this work is to understand the effects of retinol on osteoblast and osteoclast cells when embedded within calcium phosphate matrices, including interconnected porous 3D printed tricalcium phosphate scaffolds. Results show that hydrophobic retinol can be released from bone scaffolds when a combination of biodegradable polymers, polycaprolactone and polyethylene glycol, are employed as drug carriers. The release of retinol in vitro can support a 20 +/- 1% increase in osteoblast (bone-forming) cell proliferation with proper cell adhesion and filopodial extensions. Osteoclast cell morphology is necrosed and torn with a reduction in proliferation at approximately 6 +/- 1% when retinol is present. In addition, inhibition of osteoclastic resorption pit bays is noted using scanning electron microscopy. With the scaffolds' round pore interconnectivity facilitating retinol release, this system can provide an alternative to traditional bone grafts while additionally supporting bone healing through enhanced osteoblast cell proliferation and inhibition of osteoclast resorption activity.
引用
收藏
页码:1120 / 1129
页数:10
相关论文
共 50 条
  • [31] Controlled release of soy isoflavones from multifunctional 3D printed bone tissue engineering scaffolds
    Sarkar, Naboneeta
    Bose, Susmita
    ACTA BIOMATERIALIA, 2020, 114 (114) : 407 - 420
  • [32] Fabrication and characterisation of 3D printed MWCNT composite porous scaffolds for bone regeneration
    Huang, Boyang
    Vyas, Cian
    Roberts, Iwan
    Poutrel, Quentin-Arthur
    Chiang, Wei-Hung
    Blaker, Jonny J.
    Huang, Zhucheng
    Bartolo, Paulo
    MATERIALS SCIENCE AND ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2019, 98 : 266 - 278
  • [33] Fabrication and characterization of porous 3D whisker-covered calcium phosphate scaffolds
    Ye, Xingjiang
    Zhou, Changchun
    Xiao, Zhanwen
    Fan, Yujiang
    Zhu, Xiangdong
    Sun, Yong
    Zhang, Xingdong
    MATERIALS LETTERS, 2014, 128 : 179 - 182
  • [34] Cell-Laden 3D Printed Scaffolds for Bone Tissue Engineering
    Piard C.M.
    Chen Y.
    Fisher J.P.
    Clinical Reviews in Bone and Mineral Metabolism, 2015, 13 (4): : 245 - 255
  • [35] Fabrication of 3D gel-printed β-tricalcium phosphate/titanium dioxide porous scaffolds for cancellous bone tissue engineering
    Hu, Xulin
    Li, Hu
    Qiao, Liang
    Yang, Shuhao
    Wu, Haoming
    Peng, Chao
    Zhang, Yamei
    Lan, Hai
    Yang, Hua
    Li, Kainan
    INTERNATIONAL JOURNAL OF BIOPRINTING, 2023, 9 (02) : 369 - 379
  • [36] INFLUENCE OF MN DOPED CALCIUM PHOSPHATE 3D PRINTED SCAFFOLDS FOR OSTEOCHONDRAL TISSUE REGENERATION
    Kamaraj, Meenakshi
    Roopavath, Uday Kiron
    Rath, Subha Narayan
    TISSUE ENGINEERING PART A, 2022, 28 : S546 - S546
  • [37] Gene-activation of surface-modified 3D printed calcium phosphate scaffolds
    Laird, Noah Z.
    Phruttiwanichakun, Pornpoj
    Mohamed, Esraa
    Acri, Timothy M.
    Jaidev, Leela R.
    Salem, Aliasger K.
    BMC CHEMISTRY, 2025, 19 (01)
  • [38] In vitro-Osteoclastic Activity Studies on Surfaces of 3D Printed Calcium Phosphate Scaffolds
    Detsch, Rainer
    Schaefer, Susannne
    Deisinger, Ulrike
    Ziegler, Guenter
    Seitz, Hermann
    Leukers, Barbara
    JOURNAL OF BIOMATERIALS APPLICATIONS, 2011, 26 (03) : 359 - 380
  • [39] Design of bone scaffolds with calcium phosphate and its derivatives by 3D printing: A review
    Darghiasi, Seyedeh Farnaz
    Farazin, Ashkan
    Ghazali, Hanieh Sadat
    JOURNAL OF THE MECHANICAL BEHAVIOR OF BIOMEDICAL MATERIALS, 2024, 151
  • [40] Control of Nanoparticle Release Kinetics from 3D Printed Hydrogel Scaffolds
    Baumann, Bernhard
    Jungst, Tomasz
    Stichler, Simone
    Feineis, Susanne
    Wiltschka, Oliver
    Kuhlmann, Matthias
    Linden, Mika
    Groll, Juergen
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2017, 56 (16) : 4623 - 4628