An Overview of RNA-Based Scaffolds for Osteogenesis

被引:28
作者
Damiati, Laila A. [1 ]
El-Messeiry, Sarah [2 ]
机构
[1] Univ Jeddah, Coll Sci, Dept Biol, Jeddah, Saudi Arabia
[2] Alexandria Univ, Dept Genet, Fac Agr, Alexandria, Egypt
关键词
bone osteogenesis; RNA; tissue engineering; gene therapy; CRISPR; MESENCHYMAL STEM-CELLS; MODIFIED MESSENGER-RNA; OF-THE-ART; IN-VIVO; OSTEOBLAST DIFFERENTIATION; COLLAGEN SCAFFOLDS; MAMMALIAN-CELLS; ENCODING BMP-2; SIRNA DELIVERY; GENE DELIVERY;
D O I
10.3389/fmolb.2021.682581
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Tissue engineering provides new hope for the combination of cells, scaffolds, and bifactors for bone osteogenesis. This is achieved by mimicking the bone's natural behavior in recruiting the cell's molecular machinery for our use. Many researchers have focused on developing an ideal scaffold with specific features, such as good cellular adhesion, cell proliferation, differentiation, host integration, and load bearing. Various types of coating materials (organic and non-organic) have been used to enhance bone osteogenesis. In the last few years, RNA-mediated gene therapy has captured attention as a new tool for bone regeneration. In this review, we discuss the use of RNA molecules in coating and delivery, including messenger RNA (mRNA), RNA interference (RNAi), and long non-coding RNA (lncRNA) on different types of scaffolds (such as polymers, ceramics, and metals) in osteogenesis research. In addition, the effect of using gene-editing tools-particularly CRISPR systems-to guide RNA scaffolds in bone regeneration is also discussed. Given existing knowledge about various RNAs coating/expression may help to understand the process of bone formation on the scaffolds during osseointegration.
引用
收藏
页数:15
相关论文
共 135 条
[41]   Nanoscale Topography on Black Titanium Imparts Multi-biofunctional Properties for Orthopedic Applications [J].
Hasan, Jafar ;
Jain, Shubham ;
Chatterjee, Kaushik .
SCIENTIFIC REPORTS, 2017, 7
[42]   A network connecting Runx2, SATB2, and the miR-23a∼27a∼24-2 cluster regulates the osteoblast differentiation program [J].
Hassan, Mohammad Q. ;
Gordon, Jonathan A. R. ;
Beloti, Marcio M. ;
Croce, Carlo M. ;
van Wijnen, Andre J. ;
Stein, Janet L. ;
Stein, Gary S. ;
Lian, Jane B. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2010, 107 (46) :19879-19884
[43]   The effect of dehydrothermal treatment on the mechanical and structural properties of collagen-GAG scaffolds [J].
Haugh, Matthew G. ;
Jaasma, Michael J. ;
O'Brien, Fergal J. .
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A, 2009, 89A (02) :363-369
[44]   A FRINGED FIBRIL THEORY OF STRUCTURE IN CRYSTALLINE POLYMERS [J].
HEARLE, JWS .
JOURNAL OF POLYMER SCIENCE, 1958, 28 (117) :432-435
[45]   A synergistic approach to the design, fabrication and evaluation of 3D printed micro and nano featured scaffolds for vascularized bone tissue repair [J].
Holmes, Benjamin ;
Bulusu, Kartik ;
Plesniak, Michael ;
Zhang, Lijie Grace .
NANOTECHNOLOGY, 2016, 27 (06)
[46]   CRISPR interference-mediated noggin knockdown promotes BMP2-induced osteogenesis and calvarial bone healing [J].
Hsu, Mu-Nung ;
Yu, Fu-Jen ;
Chang, Yu-Han ;
Huang, Kai-Lun ;
Nam Ngoc Pham ;
Vu Anh Truong ;
Lin, Mei-Wei ;
Nuong Thi Kieu Nguyen ;
Hwang, Shiaw-Min ;
Hu, Yu-Chen .
BIOMATERIALS, 2020, 252
[47]   Coactivation of Endogenous Wnt10b and Foxc2 by CRISPR Activation Enhances BMSC Osteogenesis and Promotes Calvarial Bone Regeneration [J].
Hsu, Mu-Nung ;
Huang, Kai-Lun ;
Yu, Fu-Jen ;
Lai, Po-Liang ;
Anh Vu Truong ;
Lin, Mei-Wei ;
Nuong Thi Kieu Nguyen ;
Shen, Chih-Che ;
Hwang, Shiaw-Min ;
Chang, Yu-Han ;
Hu, Yu-Chen .
MOLECULAR THERAPY, 2020, 28 (02) :441-451
[48]   A Runx2/miR-3960/miR-2861 Regulatory Feedback Loop during Mouse Osteoblast Differentiation [J].
Hu, Rong ;
Liu, Wei ;
Li, Hui ;
Yang, Li ;
Chen, Chao ;
Xia, Zhu-Ying ;
Guo, Li-Juan ;
Xie, Hui ;
Zhou, Hou-De ;
Wu, Xian-Ping ;
Luo, Xiang-Hang .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2011, 286 (14) :12328-12339
[49]   Upregulation of miR-22 Promotes Osteogenic Differentiation and Inhibits Adipogenic Differentiation of Human Adipose Tissue-Derived Mesenchymal Stem Cells by Repressing HDAC6 Protein Expression [J].
Huang, Shan ;
Wang, Shihua ;
Bian, Chunjing ;
Yang, Zhuo ;
Zhou, Hong ;
Zeng, Yang ;
Li, Hongling ;
Han, Qin ;
Zhao, Robert Chunhua .
STEM CELLS AND DEVELOPMENT, 2012, 21 (13) :2531-2540
[50]   Antimicrobial and Osseointegration Properties of Nanostructured Titanium Orthopaedic Implants [J].
Jaeger, Marcus ;
Jennissen, Herbert P. ;
Dittrich, Florian ;
Fischer, Alfons ;
Koehling, Hedda Luise .
MATERIALS, 2017, 10 (11)